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<front>
<journal-meta>
<journal-id journal-id-type="publisher-id">Front. Cardiovasc. Med.</journal-id>
<journal-title>Frontiers in Cardiovascular Medicine</journal-title>
<abbrev-journal-title abbrev-type="pubmed">Front. Cardiovasc. Med.</abbrev-journal-title>
<issn pub-type="epub">2297-055X</issn>
<publisher>
<publisher-name>Frontiers Media S.A.</publisher-name>
</publisher>
</journal-meta>
<article-meta>
<article-id pub-id-type="doi">10.3389/fcvm.2021.774109</article-id>
<article-categories>
<subj-group subj-group-type="heading">
<subject>Cardiovascular Medicine</subject>
<subj-group>
<subject>Systematic Review</subject>
</subj-group>
</subj-group>
</article-categories>
<title-group>
<article-title>Efficacy and Safety of Non-recommended Dose of New Oral Anticoagulants in Patients With Atrial Fibrillation: A Systematic Review and Meta-Analysis</article-title>
</title-group>
<contrib-group>
<contrib contrib-type="author">
<name><surname>Kong</surname> <given-names>Xiangyun</given-names></name>
<xref ref-type="aff" rid="aff1"><sup>1</sup></xref>
<uri xlink:href="http://loop.frontiersin.org/people/1460586/overview"/>
</contrib>
<contrib contrib-type="author">
<name><surname>Zhu</surname> <given-names>Yong</given-names></name>
<xref ref-type="aff" rid="aff2"><sup>2</sup></xref>
<uri xlink:href="http://loop.frontiersin.org/people/1311976/overview"/>
</contrib>
<contrib contrib-type="author">
<name><surname>Pu</surname> <given-names>Lianmei</given-names></name>
<xref ref-type="aff" rid="aff2"><sup>2</sup></xref>
<uri xlink:href="http://loop.frontiersin.org/people/1579019/overview"/>
</contrib>
<contrib contrib-type="author">
<name><surname>Meng</surname> <given-names>Shuai</given-names></name>
<xref ref-type="aff" rid="aff3"><sup>3</sup></xref>
</contrib>
<contrib contrib-type="author">
<name><surname>Zhao</surname> <given-names>Lihan</given-names></name>
<xref ref-type="aff" rid="aff1"><sup>1</sup></xref>
</contrib>
<contrib contrib-type="author">
<name><surname>Zeng</surname> <given-names>Wei</given-names></name>
<xref ref-type="aff" rid="aff1"><sup>1</sup></xref>
</contrib>
<contrib contrib-type="author">
<name><surname>Sun</surname> <given-names>Weiyan</given-names></name>
<xref ref-type="aff" rid="aff1"><sup>1</sup></xref>
</contrib>
<contrib contrib-type="author">
<name><surname>Wu</surname> <given-names>Guangming</given-names></name>
<xref ref-type="aff" rid="aff1"><sup>1</sup></xref>
</contrib>
<contrib contrib-type="author" corresp="yes">
<name><surname>Li</surname> <given-names>Hong</given-names></name>
<xref ref-type="aff" rid="aff2"><sup>2</sup></xref>
<xref ref-type="corresp" rid="c001"><sup>&#x0002A;</sup></xref>
</contrib>
</contrib-group>
<aff id="aff1"><sup>1</sup><institution>Department of General Medicine, Beijing Luhe Hospital, Capital Medical University</institution>, <addr-line>Beijing</addr-line>, <country>China</country></aff>
<aff id="aff2"><sup>2</sup><institution>Department of Cardiology, Beijing Anzhen Hospital, Capital Medical University</institution>, <addr-line>Beijing</addr-line>, <country>China</country></aff>
<aff id="aff3"><sup>3</sup><institution>Department of Cardiology and Macrovascular Disease, Beijing Tiantan Hospital, Capital Medical University</institution>, <addr-line>Beijing</addr-line>, <country>China</country></aff>
<author-notes>
<fn fn-type="edited-by"><p>Edited by: Xiaofeng Yang, Temple University, United States</p></fn>
<fn fn-type="edited-by"><p>Reviewed by: Christopher J. Boos, Poole Hospital NHS Foundation Trust, United Kingdom; Yajing Wang, Thomas Jefferson University, United States</p></fn>
<corresp id="c001">&#x0002A;Correspondence: Hong Li <email>dr_lihong&#x00040;sina.com</email></corresp>
<fn fn-type="other" id="fn001"><p>This article was submitted to Cardiovascular Therapeutics, a section of the journal Frontiers in Cardiovascular Medicine</p></fn></author-notes>
<pub-date pub-type="epub">
<day>23</day>
<month>12</month>
<year>2021</year>
</pub-date>
<pub-date pub-type="collection">
<year>2021</year>
</pub-date>
<volume>8</volume>
<elocation-id>774109</elocation-id>
<history>
<date date-type="received">
<day>11</day>
<month>09</month>
<year>2021</year>
</date>
<date date-type="accepted">
<day>29</day>
<month>11</month>
<year>2021</year>
</date>
</history>
<permissions>
<copyright-statement>Copyright &#x000A9; 2021 Kong, Zhu, Pu, Meng, Zhao, Zeng, Sun, Wu and Li.</copyright-statement>
<copyright-year>2021</copyright-year>
<copyright-holder>Kong, Zhu, Pu, Meng, Zhao, Zeng, Sun, Wu and Li</copyright-holder>
<license xlink:href="http://creativecommons.org/licenses/by/4.0/"><p>This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.</p></license> 
</permissions>
<abstract><p><bold>Introduction:</bold> The real-world treatment of atrial fibrillation (AF) often involves the prescription of new oral anticoagulants (NOACs) using dosing both lower and higher than recommended guidelines. Our study aimed to evaluate the efficacy and safety of non-recommended dosage of NOACs in AF patients.</p>
<p><bold>Methods:</bold> A systematic search was performed for relevant studies across multiple electronic databases (PubMed, Embase, Cochrane Library, Clinical Trials Registry) from inception to May 1, 2021. Multicenter randomized trials and observational studies were selected with key reporting measures for inclusion involved efficacy outcomes including stroke or systemic thromboembolism along with safety endpoints assessing major or clinically relevant bleeding events.</p>
<p><bold>Results:</bold> A total of 11 eligible studies were included involving 48,648 patients receiving recommended dose of NOACs and 50,116 patients receiving non-recommended dosage. Compared to AF patients treated with recommended dose regimens, administration of low dose of NOACs was associated with higher risk of stroke/systemic embolism (RR = 1.24, 95% CI 1.14&#x02013;1.35, <italic>P</italic> &#x0003C; 0.00001), but without reducing bleeding risk (RR = 1.18, 95% CI 0.91&#x02013;1.53, <italic>P</italic> = 0.21) and a higher risk of all-cause mortality (RR = 1.58, 95% CI 1.25&#x02013;1.99, <italic>P</italic> = 0.0001). Moreover, high dose of NOACs was associated with higher risk of stroke and systemic embolism efficacy (RR = 1.71, 95% CI 1.06&#x02013;2.76, <italic>P</italic> = 0.03) and a non-significant trend to a greater risk of major or clinically relevant bleeding (RR = 1.57, 95% CI 0.96&#x02013;2.58, <italic>P</italic> = 0.07).</p>
<p><bold>Conclusions:</bold> AF patients treated with low dose of NOACs showed equivalent safety but with worse efficacy compared with recommended dose. High dose of NOACs was not superior to recommended dose regimens in preventing stroke/systemic embolism outcomes in AF patients.</p></abstract>
<kwd-group>
<kwd>atrial fibrillation</kwd>
<kwd>new oral anticoagulants</kwd>
<kwd>non-recommended dose</kwd>
<kwd>bleeding</kwd>
<kwd>stroke</kwd>
<kwd>meta-analysis</kwd>
</kwd-group>
<counts>
<fig-count count="5"/>
<table-count count="8"/>
<equation-count count="0"/>
<ref-count count="29"/>
<page-count count="12"/>
<word-count count="6721"/>
</counts>
</article-meta>
</front>
<body>
<sec sec-type="intro" id="s1">
<title>Introduction</title>
<p>The past two decades have witnessed the gradual implementation of four new oral anticoagulants (dabigatran, rivaroxaban, apixaban, edoxaban) to prevent stroke in patients with non-valvular AF. These agents have shown greater efficacy and safety compared with vitamin K antagonists (VKAs) (<xref ref-type="bibr" rid="B1">1</xref>) and have been widely approved by regulatory bodies including the European Medicines Agency (EMA) (<xref ref-type="bibr" rid="B2">2</xref>), the U.S. Food and Drug Administration (FDA) (<xref ref-type="bibr" rid="B3">3</xref>), and the Japanese Pharmaceuticals and Medical Devices Agency (PMDA) (<xref ref-type="bibr" rid="B4">4</xref>). Nevertheless, in real-world clinical practice, safety concerns among physicians have led to prescribing habits of lower dose of NOACs in patients with high HAS-BLED scores, along with considerations of age, body mass index (BMI), creatinine clearance (CrCl), hepatic function, as well as concomitant disease states (<xref ref-type="bibr" rid="B5">5</xref>). Alternatively, patients with significantly high CHA2DS2-VASc scores might be given higher dose of NOACs (<xref ref-type="bibr" rid="B6">6</xref>). These scenarios provide concerns that the efficacy and safety of NOACs may be compromised. At present, there are no universal rules for determining the dose regimens in high-risk patients, and no clear risk-benefit analysis was performed to help to adjust NOAC dose regimens. In this study, we performed a meta-analysis of multicenter randomized trials and observational studies to evaluate the efficacy and safety of non-recommended dose compared with recommended dose of NOACs in patients with AF.</p>
</sec>
<sec sec-type="materials and methods" id="s2">
<title>Materials and Methods</title>
<p>This systematic review and meta-analysis were performed following the recommendations of the Cochrane Handbook for Systematic Reviews of Interventions and Preferred Reporting Items for Systematic Reviews and Meta-Analysis statement (PRISMA).</p>
<sec>
<title>Search Strategy</title>
<p>Two investigators independently performed comprehensive searches for all relevant articles against the following databases: PubMed, Embase, Cochrane Library databases and Clinical Trials Registry (<ext-link ext-link-type="uri" xlink:href="http://www.clinicaltrials.gov">www.clinicaltrials.gov</ext-link>). English language articles were searched from inception to May 1, 2021. The search terms keywords used were as follows: atrial fibrillation; new oral anticoagulants, non-vitamin K antagonist, NOAC, oral thrombin inhibitors, factor Xa inhibitors, apixaban, rivaroxaban, edoxaban, dabigatran; non-recommended dose, off-label dose, low-dose, reduced-dose, underdosing, high dose, overdose; stroke; bleeding. Additionally, the reference lists of related review articles were also reviewed to source additional publications of relevance.</p>
</sec>
<sec>
<title>Inclusion and Exclusion Criteria</title>
<p>Manually selected studies with the assistance of EndNote software according to the prespecified PICOS criteria. Studies that met the following criteria were selected for inclusion involved: (1) P: patients with atrial fibrillation; (2) Intervention: treated with non-recommended dose (low or high dose) of new oral anticoagulants (NOACs: dabigatran, rivaroxaban, apixaban, edoxaban); (3) Comparison: with recommended dose of NOACs; (4) Outcomes: reported at least one of the following adverse outcomes: stroke/systemic embolism, major bleeding, all-cause mortality, cardiovascular cause of death by dose subgroups; (5) Study design: RCTs and observational studies published as full articles.</p>
<p>The exclusion criteria were as follows: (1) Compared anticoagulation strategies using NOACs vs. warfarin; (2) Other types of studies, including case reports, animal experiments, meta-analysis, reviews, comments, editorials, and conference abstracts; (3) Reported exposure or endpoints not suitable for our analysis.</p>
</sec>
<sec>
<title>Data Extraction and Quality Assessment</title>
<p>Two investigators independently extracted data from the eligible studies. Baseline characteristics of the patients (age, sex, creatinine clearance, BMI, CHADS2/CHA2DS2-VASc score, HAS-BLED score), study design, follow-up periods and the prespecified adverse outcomes were retrieved. In addition, they also assessed the quality of the RCTs and observational studies using the Revised Jadad&#x00027;s Scale and Newcastle-Ottawa Scale (NOS), respectively. Any disagreements or uncertainties between the two reviewers in the processes of study selection, data extraction and quality assessment were resolved by discussion with the senior investigator (HL).</p>
</sec>
<sec>
<title>Definitions and Outcomes</title>
<p>The criteria of standard dose approved by guidelines lately as well as the definitions of recommended/low/high dose of NOACs in our selected studies are listed in <xref ref-type="table" rid="T1">Table 1</xref> (<xref ref-type="bibr" rid="B5">5</xref>, <xref ref-type="bibr" rid="B7">7</xref>&#x02013;<xref ref-type="bibr" rid="B19">19</xref>). The primary efficacy outcomes were stroke or systemic embolism (SE) and the primary safety outcomes were major or clinically relevant bleeding. For trials reporting only major bleeding, the same data were used for major or clinically relevant bleeding. The definition of major bleeding was in accordance with the International Society on Thrombosis and Hemostasis (ISTH) criteria (<xref ref-type="bibr" rid="B10">10</xref>, <xref ref-type="bibr" rid="B20">20</xref>). The secondary outcomes included all-cause mortality, cardiovascular cause of death, if reported data were available.</p>
<table-wrap position="float" id="T1">
<label>Table 1</label>
<caption><p>The definitions of recommended/low/high NOACs dosage.</p></caption>
<table frame="hsides" rules="groups">
<thead><tr>
<th valign="top" align="left"><bold>NOAC</bold></th>
<th valign="top" align="left"><bold>Standard dose<xref ref-type="table-fn" rid="TN1"><sup>&#x0002A;</sup></xref></bold></th>
<th valign="top" align="left"><bold>Recommended dose<xref ref-type="table-fn" rid="TN2"><sup>&#x00023;</sup></xref></bold></th>
<th valign="top" align="left"><bold>Low dose</bold></th>
<th valign="top" align="left"><bold>High dose</bold></th>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">Dabigatran</td>
<td valign="top" align="left">Standard dose: 150 mg bid; Dose-reduction criteria: 110 mg bid in patients with: (1) Age &#x02265;80 years; (2) Increased bleeding risk; (3) Concomitant use of verapamil (<xref ref-type="bibr" rid="B7">7</xref>).</td>
<td valign="top" align="left">Recommended dose:150 mg bid; 1. Dose-reduction criteria (<xref ref-type="bibr" rid="B11">11</xref>, <xref ref-type="bibr" rid="B13">13</xref>): 110 mg bid if any of 3 criteria was met: (1) Age &#x02265;80 y; (2) Age 75&#x02013;80 y with high risk of bleeding; (3) Concomitant use of verapamil.<break/> 2. Dose-reduction criteria (<xref ref-type="bibr" rid="B12">12</xref>): 110 mg bid if any of 3 criteria was met: (1) Age &#x02265;70 years; (2) CrCl: 30&#x02013;50 mL/min; (3) Prior gastro-intestinal bleeding, or concomitant use of oral P-glycoprotein inhibitors.<break/> 3. Dose-reduction criteria (<xref ref-type="bibr" rid="B13">13</xref>): 75 mg bid in patients with: (1) CrCl: 15&#x02013;30 mL/min (2) Concomitant dronedarone.</td>
<td valign="top" align="left">110 mg bid for patients without any dosage reduction criteria.</td>
<td valign="top" align="left">Dabigatran 150 mg bid if any dosage reduction criteria were met OR Use of dabigatran if CrCl &#x0003C;30 mL/min.</td>
</tr>
<tr>
<td valign="top" align="left">Rivaroxaban</td>
<td valign="top" align="left">Standard dose: 20 mg QD; Dose-reduction criteria: 15 mg QD if CrCl &#x02264; 15&#x02013;49 mL/min (<xref ref-type="bibr" rid="B7">7</xref>, <xref ref-type="bibr" rid="B8">8</xref>).</td>
<td valign="top" align="left">Recommended dose (ROCKET AF): 20 mg QD Dose-reduction criteria: 15 mg QD if CrCl &#x0003C;50 mL/min (<xref ref-type="bibr" rid="B5">5</xref>, <xref ref-type="bibr" rid="B9">9</xref>&#x02013;<xref ref-type="bibr" rid="B11">11</xref>). <break/> Recommended dose (J-ROCKET AF): 15 mg QD Dose-reduction criteria: 10 mg QD if CrCl &#x0003C;50 mL/min (<xref ref-type="bibr" rid="B12">12</xref>).</td>
<td valign="top" align="left">Rivaroxaban 15 mg/10 mg QD if CrCl &#x02265;50 mL/min</td>
<td valign="top" align="left">Rivaroxaban 20 mg QD if CrCl &#x0003C;50 mL/min OR use of rivaroxaban if CrCl &#x0003C;15 mL/min.</td>
</tr>
<tr>
<td valign="top" align="left">Apixaban</td>
<td valign="top" align="left">Standard dose: 5 mg bid; Dose-reduction criteria:2.5 mg bid if 2 out of 3 fulfilled: (1) Age &#x02265;80 years; (2) Weight &#x02264; 60 kg; (3) Serum creatinine &#x02265;133 mmol/L (1.5 mg/dL) (OR single criterion: if CrCl 15&#x02013;29 mL/min) (<xref ref-type="bibr" rid="B7">7</xref>, <xref ref-type="bibr" rid="B8">8</xref>).</td>
<td valign="top" align="left">Recommended dose:5 mg bid; Dose-reduction criteria: 2.5 mg bid if &#x02265;2 of 3 criteria were met: (1) Age &#x02265;80 y; (2) Body weight &#x02264; 60 kg; (3) Serum creatinine &#x02265;1.5 mg/dL (OR single criterion: if CrCl 15&#x02013;30 mL/min) (<xref ref-type="bibr" rid="B10">10</xref>).</td>
<td valign="top" align="left">Apixaban 2.5 mg bid if dosage reduction criteria were not met</td>
<td valign="top" align="left">Apixaban 5 mg bid for patients who met the dosage reduction criteria OR use of apixaban if CrCl &#x0003C;15 mL/min.</td>
</tr>
<tr>
<td valign="top" align="left">Edoxaban</td>
<td valign="top" align="left">Standard dose: 60 mg QD; Dose-reduction criteria: 30 mg QD if any of 3 criteria was met: (1) Body weight &#x02264; 60 kg; (2) CrCl 30&#x02013;50 mL/min; (3) Concomitant use of verapamil, quinidine, or dronedarone (<xref ref-type="bibr" rid="B7">7</xref>).</td>
<td valign="top" align="left">Recommended dose:60 mg QD; Dose-reduction criteria: 30 mg QD if any of 3 criteria was met: (1) Body weight &#x02264; 60 kg; (2) CrCl &#x0003C;50 mL/min; (3) Use of P-glycoprotein inhibitor (<xref ref-type="bibr" rid="B13">13</xref>&#x02013;<xref ref-type="bibr" rid="B15">15</xref>).</td>
<td valign="top" align="left">30 mg QD for patients who did not meet the dosage reduction criteria OR use of edoxaban 15 mg QD.</td>
<td valign="top" align="left">60 mg QD for patients who met the dosage reduction criteria OR use of edoxaban if CrCl &#x0003C;15 mL/min.</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<fn id="TN1">
<label>&#x0002A;</label>
<p><italic>Standard dose approved by guidelines</italic>;</p></fn> 
<fn id="TN2">
<label>&#x00023;</label>
<p><italic>Recommended dose of selected studies. CrCl, creatinine clearance</italic>.</p></fn>
</table-wrap-foot>
</table-wrap>
</sec>
<sec>
<title>Statistical Analysis</title>
<p>Comparison of the treatment effects of non-recommended dose of NOACs (low/high dose) vs. recommended dose of NOACs was performed used risk ratios (number of events or the incidence in each treatment group) and respective 95% confidence intervals. The heterogeneity across the studies was assessed by Cochran&#x00027;s <italic>Q</italic>-test (<italic>P</italic> &#x0003C; 0.1 was regarded as statistically significant) and <italic>I</italic><sup>2</sup> statistics, which estimate heterogeneity quantitatively (<italic>I</italic><sup>2</sup> value &#x0003C; 25% indicates no or mild heterogeneity, <italic>I</italic><sup>2</sup> &#x0003E; 75% indicates high heterogeneity). If <italic>I</italic><sup>2</sup> &#x02264; 50% and <italic>P</italic> &#x02265; 0.1, the fixed-effects model was used. If <italic>I</italic><sup>2</sup> &#x0003E; 50% or <italic>P</italic> &#x0003C; 0.1, data were pooled used random-effects, according to the Mantel-Haenszel model, and the cause of heterogeneity was sought. Publication bias assessment was made through visual inspection of the asymmetry in funnel plots. All statistical analyses were performed using Review Manager software (Rev- Man) version 5.3 (Cochrane Collaboration 2014, Nordic Cochrane Center, Copenhagen, Denmark). Two-tailed <italic>P</italic>-values &#x0003C; 0.05 were considered significant.</p>
</sec>
</sec>
<sec sec-type="results" id="s3">
<title>Results</title>
<sec>
<title>Study Selection and Characteristics of the Eligible Studies</title>
<p>Our search strategy identified 1,316 potentially relevant studies, of which 670 records were retrieved after duplicates were removed. After assessing titles and abstracts, a total of 36 full-text articles were eligible for further screening. Of these, 25 records were excluded for not meeting the eligibility criteria, leaving 11 articles for further consideration (<xref ref-type="bibr" rid="B5">5</xref>, <xref ref-type="bibr" rid="B9">9</xref>&#x02013;<xref ref-type="bibr" rid="B15">15</xref>, <xref ref-type="bibr" rid="B17">17</xref>&#x02013;<xref ref-type="bibr" rid="B19">19</xref>). The study selection flowchart is presented in <xref ref-type="fig" rid="F1">Figure 1</xref>.</p>
<fig id="F1" position="float">
<label>Figure 1</label>
<caption><p>The flow chart of study selection.</p></caption>
<graphic mimetype="image" mime-subtype="tiff" xlink:href="fcvm-08-774109-g0001.tif"/>
</fig>
<p>Overall assessment of the 11 eligible studies showed data for 100,131 total patients to be included in the meta-analysis. Of these, 48,648 received recommended dose of NOACs whereas 50,116 received non-recommended dose of NOACs. Among the latter group, 49,384 patients were prescribed lower than recommended dose while 732 patients were given higher dose. Articles were published from 2011 to 2021, and most of them were non-randomized, observational and comparative studies. Importantly, the 11 identified trials were rated good for methodological quality according to assessment by NOS and Revised Jadad&#x00027;s scales. The general features of the 11 studies are summarized in <xref ref-type="table" rid="T2">Table 2</xref> with corresponding reported endpoints and follow-up periods listed in <xref ref-type="table" rid="T3">Table 3</xref>.</p>
<table-wrap position="float" id="T2">
<label>Table 2</label>
<caption><p>General features of the eligible studies.</p></caption>
<table frame="hsides" rules="groups">
<thead><tr>
<th valign="top" align="left"><bold>References</bold></th>
<th valign="top" align="left"><bold>Study type</bold></th>
<th valign="top" align="left"><bold>Intervention (<italic>n</italic>)</bold></th>
<th valign="top" align="left"><bold>Recommended dose (<italic>n</italic>)</bold></th>
<th valign="top" align="left"><bold>Low dose (<italic>n</italic>)</bold></th>
<th valign="top" align="left"><bold>High dose (<italic>n</italic>)</bold></th>
<th valign="top" align="center"><bold>Study quality</bold></th>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">Benjamin et al. (<xref ref-type="bibr" rid="B10">10</xref>)</td>
<td valign="top" align="left">OC</td>
<td valign="top" align="left">4 DOACs (<italic>n</italic> = 7,925)</td>
<td valign="top" align="left">6,376</td>
<td valign="top" align="left">555</td>
<td valign="top" align="left">NA</td>
<td valign="top" align="center">8</td>
</tr>
<tr>
<td valign="top" align="left">Camm et al. (<xref ref-type="bibr" rid="B11">11</xref>)</td>
<td valign="top" align="left">OC</td>
<td valign="top" align="left">4 DOACs (<italic>n</italic> = 10,426)</td>
<td valign="top" align="left">7,603</td>
<td valign="top" align="left">2,423</td>
<td valign="top" align="left">400</td>
<td valign="top" align="center">8</td>
</tr>
<tr>
<td valign="top" align="left">Cho et al. (<xref ref-type="bibr" rid="B12">12</xref>)</td>
<td valign="top" align="left">OC</td>
<td valign="top" align="left">3 NOACs (<italic>n</italic> = 46,095): Dabigatran (<italic>n</italic> = 12,593) <break/> Rivaroxaban (<italic>n</italic> = 21,000) <break/> Apixaban (<italic>n</italic> = 12,502)</td>
<td valign="top" align="left">Dabigatran (<italic>n</italic> = 3,138) <break/> Rivaroxaban (<italic>n</italic> = 8,601) <break/> Apixaban (<italic>n</italic> = 4,661)</td>
<td valign="top" align="left">Dabigatran (<italic>n</italic> = 9,455) <break/> Rivaroxaban (<italic>n</italic> = 12,399) <break/> Apixaban (<italic>n</italic> = 7,841)</td>
<td valign="top" align="left">NA</td>
<td valign="top" align="center">7</td>
</tr>
<tr>
<td valign="top" align="left">Chung et al. (<xref ref-type="bibr" rid="B13">13</xref>)</td>
<td valign="top" align="left">RCT</td>
<td valign="top" align="left">Edoxaban (<italic>n</italic> = 159)</td>
<td valign="top" align="left">80</td>
<td valign="top" align="left">79</td>
<td valign="top" align="left">NA</td>
<td valign="top" align="center">5</td>
</tr>
<tr>
<td valign="top" align="left">Ezekowitz et al. (<xref ref-type="bibr" rid="B18">18</xref>)</td>
<td valign="top" align="left">OC</td>
<td valign="top" align="left">Dabigatran (<italic>n</italic> = 5,851)</td>
<td valign="top" align="left">2,937</td>
<td valign="top" align="left">2,914</td>
<td valign="top" align="left">NA</td>
<td valign="top" align="center">8</td>
</tr>
<tr>
<td valign="top" align="left">Fern&#x000E1;ndez et al. (<xref ref-type="bibr" rid="B9">9</xref>)</td>
<td valign="top" align="left">OC</td>
<td valign="top" align="left">Rivaroxaban (<italic>n</italic> = 1,421)</td>
<td valign="top" align="left">1,183</td>
<td valign="top" align="left">138</td>
<td valign="top" align="left">100</td>
<td valign="top" align="center">8</td>
</tr>
<tr>
<td valign="top" align="left">Huisman et al. (<xref ref-type="bibr" rid="B19">19</xref>)</td>
<td valign="top" align="left">OC</td>
<td valign="top" align="left">Dabigatran (<italic>n</italic> = 2,937)</td>
<td valign="top" align="left">1,748</td>
<td valign="top" align="left">1,106</td>
<td valign="top" align="left">NA</td>
<td valign="top" align="center">8</td>
</tr>
<tr>
<td valign="top" align="left">Inoue et al. (<xref ref-type="bibr" rid="B17">17</xref>)</td>
<td valign="top" align="left">OC</td>
<td valign="top" align="left">Dabigatran (<italic>n</italic> = 6,443)</td>
<td valign="top" align="left">1,571</td>
<td valign="top" align="left">4,759</td>
<td valign="top" align="left">NA</td>
<td valign="top" align="center">8</td>
</tr>
<tr>
<td valign="top" align="left">Pierre et al. (<xref ref-type="bibr" rid="B5">5</xref>)</td>
<td valign="top" align="left">OC</td>
<td valign="top" align="left">Rivaroxaban (<italic>n</italic> = 4,464)</td>
<td valign="top" align="left">3,608</td>
<td valign="top" align="left">583</td>
<td valign="top" align="left">232</td>
<td valign="top" align="center">8</td>
</tr>
<tr>
<td valign="top" align="left">Steffel et al. (<xref ref-type="bibr" rid="B15">15</xref>)</td>
<td valign="top" align="left">RCT</td>
<td valign="top" align="left">Edoxaban (<italic>n</italic> = 14,014)</td>
<td valign="top" align="left">7,012</td>
<td valign="top" align="left">7,002</td>
<td valign="top" align="left">NA</td>
<td valign="top" align="center">6</td>
</tr>
<tr>
<td valign="top" align="left">Yamashita et al. (<xref ref-type="bibr" rid="B14">14</xref>)</td>
<td valign="top" align="left">RCT</td>
<td valign="top" align="left">Edoxaban (<italic>n</italic> = 396)</td>
<td valign="top" align="left">130</td>
<td valign="top" align="left">130</td>
<td valign="top" align="left">NA</td>
<td valign="top" align="center">5</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<p><italic>OC, observational cohorts; RCT, randomized controlled trials; NOACs, new oral anticoagulants; NA, not available</italic>.</p>
</table-wrap-foot>
</table-wrap>
<table-wrap position="float" id="T3">
<label>Table 3</label>
<caption><p>Follow up periods and reported outcomes.</p></caption>
<table frame="hsides" rules="groups">
<thead><tr>
<th valign="top" align="left"><bold>Studies</bold></th>
<th valign="top" align="left"><bold>Enrollment period</bold></th>
<th valign="top" align="left"><bold>Follow-up periods</bold></th>
<th valign="top" align="left"><bold>Efficacy outcome</bold></th>
<th valign="top" align="left"><bold>Safety outcome</bold></th>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">Benjamin et al.</td>
<td valign="top" align="left">2013&#x02013;2016</td>
<td valign="top" align="left">1 year</td>
<td valign="top" align="left">Stroke or SE or TIA</td>
<td valign="top" align="left">Major bleeding (ISTH)</td>
</tr>
<tr>
<td valign="top" align="left">Camm et al.</td>
<td valign="top" align="left">2010&#x02013;2016</td>
<td valign="top" align="left">2 years</td>
<td valign="top" align="left">Stroke/SE</td>
<td valign="top" align="left">Major bleeding</td>
</tr>
<tr>
<td valign="top" align="left">Cho et al.</td>
<td valign="top" align="left">2015&#x02013;2016</td>
<td valign="top" align="left">15 months</td>
<td valign="top" align="left">Thromboembolic events (ischemic stroke or SE)</td>
<td valign="top" align="left">Major bleeding</td>
</tr>
<tr>
<td valign="top" align="left">Chung et al.</td>
<td valign="top" align="left">2007&#x02013;2008</td>
<td valign="top" align="left">3 months</td>
<td valign="top" align="left">All adverse event: MACE, consisting of stroke (ischemic or hemorrhagic), SE, MI, CV death and hospitalization for any other cardiac condition</td>
<td valign="top" align="left">All bleeding events (major, clinically relevant non-major and minor)</td>
</tr>
<tr>
<td valign="top" align="left">Ezekowitz et al.</td>
<td valign="top" align="left">2005&#x02013;2012</td>
<td valign="top" align="left">4.6 years</td>
<td valign="top" align="left">Stroke (ischemic, hemorrhagic, or unspecified), SE, MI, hospitalization, vascular mortality, and total mortality</td>
<td valign="top" align="left">Major, life threatening, GI, Intracranial, extra-cranial, minor, and fatal bleeding</td>
</tr>
<tr>
<td valign="top" align="left">Fern&#x000E1;ndez et al.</td>
<td valign="top" align="left">NA</td>
<td valign="top" align="left">2.5 years</td>
<td valign="top" align="left">Thromboembolic events (stroke, TIA, SE or MI)</td>
<td valign="top" align="left">Major bleeding (ISTH)</td>
</tr>
<tr>
<td valign="top" align="left">Huisman et al.</td>
<td valign="top" align="left">NA</td>
<td valign="top" align="left">24 months</td>
<td valign="top" align="left">Stroke (ischemic or hemorrhagic)</td>
<td valign="top" align="left">Major bleeding</td>
</tr>
<tr>
<td valign="top" align="left">Inoue et al.</td>
<td valign="top" align="left">2011&#x02013;2013</td>
<td valign="top" align="left">610 days</td>
<td valign="top" align="left">Stroke, TIA, SE</td>
<td valign="top" align="left">Any bleeding</td>
</tr>
<tr>
<td valign="top" align="left">Pierre et al.</td>
<td valign="top" align="left">2013&#x02013;2014</td>
<td valign="top" align="left">1 year</td>
<td valign="top" align="left">Thromboembolic events (stroke, TIA, non-CNS SE, or MI)</td>
<td valign="top" align="left">Major bleeding (ISTH)</td>
</tr>
<tr>
<td valign="top" align="left">Steffel et al.</td>
<td valign="top" align="left">NA</td>
<td valign="top" align="left">2.8 years</td>
<td valign="top" align="left">Stroke/systemic embolism (SE)</td>
<td valign="top" align="left">Major bleeding (ISTH)</td>
</tr>
<tr>
<td valign="top" align="left">Yamashita et al.</td>
<td valign="top" align="left">2007&#x02013;2008</td>
<td valign="top" align="left">8 weeks</td>
<td valign="top" align="left">Thromboembolic events</td>
<td valign="top" align="left">All bleeding events (major, clinically relevant non-major, and minor bleeds)</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<p><italic>NA, not available; SE, systemic embolism; MI, myocardial infarction; TIA, transient ischemic attack; CNS, central nervous system; CV, cardiovascular; GI, gastrointestinal; ISTH, International Society of Thrombosis and Hemostasis; MACE, major adverse cardiovascular events</italic>.</p>
</table-wrap-foot>
</table-wrap>
</sec>
<sec>
<title>Baseline Characteristics of Patients Enrolled in the Eligible Studies</title>
<p>The baseline demographic characteristics of AF patients treated with low/high dose of NOACs vs. recommended dose are presented in <xref ref-type="table" rid="T4">Tables 4</xref>, <xref ref-type="table" rid="T5">5</xref>, respectively. The patients receiving non-recommended dose tended to be elderly, more likely be female, have low body weight, and show high HAS-BLED or CHA2DS2-VASc scores.</p>
<table-wrap position="float" id="T4">
<label>Table 4</label>
<caption><p>Baseline characteristics of recommended dose and non-recommended low dose of NOACs.</p></caption>
<table frame="hsides" rules="groups">
<thead><tr>
<th valign="top" align="left"><bold>Studies</bold></th>
<th valign="top" align="center"><bold>Age, M &#x000B1; SD/(IQR) RD/LD</bold></th>
<th valign="top" align="center"><bold>Male, <italic>n</italic> (%) RD/LD</bold></th>
<th valign="top" align="center"><bold>BMI, M &#x000B1; SD/(IQR) RD/LD</bold></th>
<th valign="top" align="center"><bold>CrCl, M &#x000B1; SD/(IQR) RD/LD</bold></th>
<th valign="top" align="center"><bold>HAS-BLED score, M &#x000B1; SD/(IQR) RD/LD</bold></th>
<th valign="top" align="center"><bold>CHADS2 score, M&#x000B1;SD RD/LD</bold></th>
<th valign="top" align="center"><bold>CHA2DS2-VASc score, M&#x000B1;SD/(IQR), RD/LD</bold></th>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">Benjamin et al.</td>
<td valign="top" align="center">69.0 (62.0, 75.0)/<break/>84.0 (81.0, 88.0)</td>
<td valign="top" align="center">3975 (62.3%)/<break/>202 (36.4%)</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
</tr>
<tr>
<td valign="top" align="left">Camm et al.</td>
<td valign="top" align="center">70.0 (63.0, 77.0)/<break/>77.0 (69.0, 83.0)</td>
<td valign="top" align="center">4,435 (58.3%)/<break/>1,192 (49.2%)</td>
<td valign="top" align="center">27.4 (24.3, 31.2)/<break/>25.3 (22.8, 28.8)</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">1.0 (1.0, 2.0)/<break/>1.0 (1.0, 2.0)</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">3.0 (2.0, 4.0)/<break/> 4.0 (3.0, 5.0)</td>
</tr>
<tr>
<td valign="top" align="left">Cho et al.</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
</tr>
<tr>
<td valign="top" align="left">Chung et al.</td>
<td valign="top" align="center">65.9 &#x000B1; 7.7/<break/>64.9 &#x000B1; 9.1</td>
<td valign="top" align="center">55 (68.8%)/<break/>51 (64.6%)</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">1.9 &#x000B1; 1.0/<break/> 2.0 &#x000B1; 1.1</td>
<td valign="top" align="center">3.1 &#x000B1; 1.4/<break/> 3.2 &#x000B1; 1.4</td>
</tr>
<tr>
<td valign="top" align="left">Ezekowitz et al.</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
</tr>
<tr>
<td valign="top" align="left">Fern&#x000E1;ndez et al.</td>
<td valign="top" align="center">73.0 &#x000B1; 9.6/<break/>78.4 &#x000B1; 8.7</td>
<td valign="top" align="center">673 (56.9%)/<break/>74 (53.6%)</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">1.5 &#x000B1; 1.0/<break/>2.0 &#x000B1; 1.0</td>
<td valign="top" align="center">1.9 &#x000B1; 1.2/<break/> 2.4 &#x000B1; 1.4</td>
<td valign="top" align="center">3.4 &#x000B1; 1.5/<break/> 4.0 &#x000B1; 1.7</td>
</tr>
<tr>
<td valign="top" align="left">Huisman et al.</td>
<td valign="top" align="center">67.2 &#x000B1; 9.6/<break/>74.6 &#x000B1; 9.3</td>
<td valign="top" align="center">1,049 (60.0%)/<break/>544 (49.2%)</td>
<td valign="top" align="center">30.3 &#x000B1; 6.4/<break/>27.5 &#x000B1; 5.0</td>
<td valign="top" align="center">93.9 &#x000B1; 37.3/<break/>68.4 &#x000B1; 26.6</td>
<td valign="top" align="center">1.1 &#x000B1; 0.9/<break/>1.4 &#x000B1; 0.8</td>
<td valign="top" align="center">1.7 &#x000B1; 1.0/<break/> 2.2 &#x000B1; 1.1</td>
<td valign="top" align="center">2.9 &#x000B1; 1.3/<break/> 3.7 &#x000B1; 1.4</td>
</tr>
<tr>
<td valign="top" align="left">Inoue et al.</td>
<td valign="top" align="center">63.1 &#x000B1; 9.1/<break/>73.3 &#x000B1; 8.7</td>
<td valign="top" align="center">1,259 (80.1%)/<break/>2,990 (62.8%)</td>
<td valign="top" align="center">24.7 &#x000B1; 3.7/<break/>23.8 &#x000B1; 3.5</td>
<td valign="top" align="center">90.0 &#x000B1; 27.7/<break/>67.6 &#x000B1; 23.0</td>
<td valign="top" align="center">1.5 &#x000B1; 1.0/<break/>2.3 &#x000B1; 1.1</td>
<td valign="top" align="center">1.4 &#x000B1; 1.1/<break/> 2.0 &#x000B1; 1.3</td>
<td valign="top" align="center">2.1 &#x000B1; 1.5/<break/> 3.3 &#x000B1; 1.6</td>
</tr>
<tr>
<td valign="top" align="left">Pierre et al.</td>
<td valign="top" align="center">70.5 &#x000B1; 9.9/<break/>76.7 &#x000B1; 8.9</td>
<td valign="top" align="center">60.7%/55.2%</td>
<td valign="top" align="center">28.4 &#x000B1; 5.0/<break/>27.6&#x000B1; 4.6</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">2.0 &#x000B1; 1.0/<break/>2.3 &#x000B1; 1.1</td>
<td valign="top" align="center">1.9 &#x000B1; 1.3/<break/> 2.5 &#x000B1; 1.2</td>
<td valign="top" align="center">3.3 &#x000B1; 1.7/<break/> 4.1 &#x000B1; 1.5</td>
</tr>
<tr>
<td valign="top" align="left">Steffel et al.</td>
<td valign="top" align="center">72.0 (64.0, 78.0)/<break/>72.0 (64.0, 78.0)</td>
<td valign="top" align="center">4,353 (62.1%)/<break/>4,284 (61.2%)</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">70.4 (53.8, 92.4)/<break/>70.3 (53.8, 92.2)</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">4 (3.0, 5.0)/<break/> 4 (3.0, 5.0)</td>
</tr>
<tr>
<td valign="top" align="left">Yamashita et al.</td>
<td valign="top" align="center">68.4/<break/>69.4</td>
<td valign="top" align="center">107/<break/>110</td>
<td valign="top" align="center">24.7/<break/> 24.6</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">2.1/<break/>1.9</td>
<td valign="top" align="center">NA</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<p><italic>M &#x000B1; SD, mean &#x000B1; standard deviation (IQR interquartile range); RD, recommended dose; LD, low dose; NA, not available; BMI, body mass index; CrCl, creatinine clearance</italic>.</p>
</table-wrap-foot>
</table-wrap>
<table-wrap position="float" id="T5">
<label>Table 5</label>
<caption><p>Baseline characteristics of recommended dose and non-recommended high dose of NOACs.</p></caption>
<table frame="hsides" rules="groups">
<thead><tr>
<th valign="top" align="left"><bold>Studies</bold></th>
<th valign="top" align="center"><bold>Age, M &#x000B1; SD/(IQR) RD/HD</bold></th>
<th valign="top" align="center"><bold>Male, <italic>n</italic> (%) RD/HD</bold></th>
<th valign="top" align="center"><bold>BMI, M &#x000B1; SD/(IQR) RD/HD</bold></th>
<th valign="top" align="center"><bold>CrCl, RD/HD</bold></th>
<th valign="top" align="center"><bold>HAS-BLED score, M &#x000B1; SD/(IQR) RD/HD</bold></th>
<th valign="top" align="center"><bold>CHADS2 score, M &#x000B1; SD, RD/HD</bold></th>
<th valign="top" align="center"><bold>CHA2DS2-VASc score, M &#x000B1; SD/(IQR) RD/HD</bold></th>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">Camm et al.</td>
<td valign="top" align="center">70.0 (63.0, 77.0)/<break/>75.0 (68.0, 82.0)</td>
<td valign="top" align="center">4435 (58.3%)/<break/>206 (51.5%)</td>
<td valign="top" align="center">27.4 (24.3, 31.2)/<break/>27.4 (23.9, 32.0)</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">1.0 (1.0, 2.0)/<break/>2.0 (1.0, 2.0)</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">3.0 (2.0, 4.0)/<break/>4.0 (3.0, 5.0)</td>
</tr>
<tr>
<td valign="top" align="left">Fern&#x000E1;ndez et al.</td>
<td valign="top" align="center">73.0 &#x000B1; 9.6/<break/>82.3 &#x000B1; 5.6</td>
<td valign="top" align="center">673 (56.9%)/<break/>41 (41.0%)</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">1.5 &#x000B1; 1.0/<break/>1.9 &#x000B1; 0.9</td>
<td valign="top" align="center">1.9 &#x000B1; 1.2/<break/>2.3 &#x000B1; 1.1</td>
<td valign="top" align="center">3.4 &#x000B1; 1.5/<break/>4.2 &#x000B1; 1.3</td>
</tr>
<tr>
<td valign="top" align="left">Pierre et al.</td>
<td valign="top" align="center">70.5 &#x000B1; 9.9/<break/>76.3 &#x000B1;8.0</td>
<td valign="top" align="center">60.7%/<break/>40.1%</td>
<td valign="top" align="center">28.4 &#x000B1; 5.0/<break/>26.8 &#x000B1; 5.4</td>
<td valign="top" align="center">NA</td>
<td valign="top" align="center">2.0 &#x000B1; 1.0/<break/>2.4 &#x000B1; 1.0</td>
<td valign="top" align="center">1.9 &#x000B1; 1.3/<break/>2.5 &#x000B1; 1.3</td>
<td valign="top" align="center">3.3 &#x000B1; 1.7/<break/>4.4 &#x000B1; 1.6</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<p><italic>M &#x000B1; SD, mean &#x000B1; standard deviation (IQR interquartile range);RD, recommended dose; HD, high dose; NA, not available; BMI, body mass index; CrCl, creatinine clearance</italic>.</p>
</table-wrap-foot>
</table-wrap>
</sec>
<sec>
<title>Efficacy Outcomes</title>
<p>The results of our pooled indicated that the risk of stroke/systemic embolism in AF patients using non-recommended dose of NOACs was significantly higher than patients using the recommended dose (RR = 1.25, 95% CI 1.15&#x02013;1.36, <italic>P</italic> &#x0003C; 0.00001). Moreover, similar results were also observed when either low dose (RR = 1.24, 95% CI 1.14&#x02013;1.35, <italic>P</italic> &#x0003C; 0.00001) or high dose groups (RR = 1.71, 95% CI 1.06&#x02013;2.76, <italic>P</italic> = 0.03) were compared against the recommended dose group (<xref ref-type="fig" rid="F2">Figure 2</xref>).</p>
<fig id="F2" position="float">
<label>Figure 2</label>
<caption><p>Forest plot for stroke or systemic embolism in non-recommended dose compared to recommended dose of NOACs. NOACs, new oral anticoagulants.</p></caption>
<graphic mimetype="image" mime-subtype="tiff" xlink:href="fcvm-08-774109-g0002.tif"/>
</fig>
<p>We next conducted subgroup analyses comparing the individual NOAC agents separately between the non-recommended dose and recommend dose categories. Notably, we found that patients prescribed low dose of NOACs, no matter dabigatran, apixaban or edoxaban, showed a higher risk of stroke/systemic embolism than patients administered the recommended dose. In contrast, patients receiving non-recommended dose of rivaroxaban (low/high) were not at greater risk of stroke/systemic embolism than the standard dose (<xref ref-type="table" rid="T6">Table 6</xref>).</p>
<table-wrap position="float" id="T6">
<label>Table 6</label>
<caption><p>Stroke or systemic embolism of low/high dose of individual NOACs compared to recommended dose.</p></caption>
<table frame="hsides" rules="groups">
<thead><tr>
<th valign="top" align="left"><bold>Low dose vs. RD</bold></th>
<th valign="top" align="center"><bold>No. of studies</bold></th>
<th valign="top" align="center"><bold>No. of participants</bold></th>
<th valign="top" align="center"><bold>P for heterogeneity</bold></th>
<th valign="top" align="center"><bold><italic>I</italic><sup>2</sup></bold> <bold>(%)</bold></th>
<th valign="top" align="center"><bold>RR (95% CI)</bold></th>
<th valign="top" align="center"><bold>P for test</bold></th>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">Dabigatran</td>
<td valign="top" align="center">4</td>
<td valign="top" align="center">27,628</td>
<td valign="top" align="center">0.37</td>
<td valign="top" align="center">5%</td>
<td valign="top" align="center">1.34 (1.18, 1.52)</td>
<td valign="top" align="center">&#x0003C;0.00001</td>
</tr>
<tr>
<td valign="top" align="left">Rivaroxaban</td>
<td valign="top" align="center">3</td>
<td valign="top" align="center">26,512</td>
<td valign="top" align="center">0.53</td>
<td valign="top" align="center">0%</td>
<td valign="top" align="center">1.02 (0.89, 1.18)</td>
<td valign="top" align="center">0.78</td>
</tr>
<tr>
<td valign="top" align="left">Apixaban</td>
<td valign="top" align="center">1</td>
<td valign="top" align="center">12,502</td>
<td valign="top" align="center">&#x02013;</td>
<td valign="top" align="center">&#x02013;</td>
<td valign="top" align="center">1.46 (1.18, 1.82)</td>
<td valign="top" align="center">0.0006</td>
</tr>
<tr>
<td valign="top" align="left">Edoxaban</td>
<td valign="top" align="center">2</td>
<td valign="top" align="center">14,274</td>
<td valign="top" align="center">&#x02013;</td>
<td valign="top" align="center">&#x02013;</td>
<td valign="top" align="center">1.31 (1.13, 1.51)</td>
<td valign="top" align="center">0.0004</td>
</tr>
<tr>
<td valign="top" align="left"><bold>High dose vs. RD</bold></td>
<td valign="top" align="center"><bold>No. of studies</bold></td>
<td valign="top" align="center"><bold>No. of participants</bold></td>
<td valign="top" align="center"><bold>P for heterogeneity</bold></td>
<td valign="top" align="center"><bold><italic>I</italic><sup>2</sup></bold> <bold>(%)</bold></td>
<td valign="top" align="center"><bold>RR (95% CI)</bold></td>
<td valign="top" align="center"><bold>P for test</bold></td>
</tr>
<tr>
<td valign="top" align="left">Rivaroxaban</td>
<td valign="top" align="center">2</td>
<td valign="top" align="center">5,123</td>
<td valign="top" align="center">0.89</td>
<td valign="top" align="center">0%</td>
<td valign="top" align="center">1.55 (0.75, 3.18)</td>
<td valign="top" align="center">0.24</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<p><italic>RD, recommended dose; CI, confidence interval</italic>.</p>
</table-wrap-foot>
</table-wrap>
</sec>
<sec>
<title>Safety Outcomes</title>
<p>Patients administered non-recommended dose of NOACs did not experience more major or clinically relevant bleeding events than patients treated with recommended dose (RR = 1.22, 95% CI 0.95&#x02013;1.56, <italic>P</italic> = 0.12). Similarly, equal safety outcomes were found after dividing patients into either low or high dose groups relative to patients treated with recommended dose (<italic>I</italic><sup>2</sup> = 87%, RR = 1.18, 95% CI 0.91&#x02013;1.53, <italic>P</italic> = 0.21; <italic>I</italic><sup>2</sup> = 0%, RR = 1.57, 95% CI 0.96&#x02013;2.58, <italic>P</italic> = 0.07, respectively) (<xref ref-type="fig" rid="F3">Figure 3</xref>).</p>
<fig id="F3" position="float">
<label>Figure 3</label>
<caption><p>Forest plot for major or clinically relevant bleeding in non-recommended dose compared to recommended dose of NOACs. NOACs, new oral anticoagulants.</p></caption>
<graphic mimetype="image" mime-subtype="tiff" xlink:href="fcvm-08-774109-g0003.tif"/>
</fig>
<p>However, subgroup analyses revealed that patients receiving low dose rivaroxaban or apixaban, exhibited a significantly higher risk of bleeding compared to those on recommended dose (RR = 1.21, 95% CI 1.04&#x02013;1.41, <italic>P</italic> = 0.01; RR = 1.42, 95% CI 1.09&#x02013;1.85, <italic>P</italic> = 0.01, respectively). In contrast, superior safety was encountered in the low dose edoxaban group (RR = 0.67, 95% CI 0.58&#x02013;0.76, <italic>P</italic> &#x0003C; 0.00001) whereas there were no safety differences found between patients receiving low and recommended dose of dabigatran (<italic>I</italic><sup>2</sup> = 90%, RR = 1.21, 95% CI 0.81&#x02013;1.80, <italic>P</italic> = 0.36). Intriguingly, patients administered high dose rivaroxaban showed a non-significant trend toward increased major or clinically relevant bleeding above the standard dose (<italic>I</italic><sup>2</sup> = 48%, RR = 1.43, 95% CI 0.75&#x02013;2.72, <italic>P</italic> = 0.28) (<xref ref-type="table" rid="T7">Table 7</xref>).</p>
<table-wrap position="float" id="T7">
<label>Table 7</label>
<caption><p>Major or clinically relevant bleeding of low/high dose of individual NOACs compared to recommended dose.</p></caption>
<table frame="hsides" rules="groups">
<thead><tr>
<th valign="top" align="left"><bold>Low dose vs. RD</bold></th>
<th valign="top" align="center"><bold>No. of studies</bold></th>
<th valign="top" align="center"><bold>No. of participants</bold></th>
<th valign="top" align="center"><bold>P for heterogeneity</bold></th>
<th valign="top" align="center"><bold><italic>I</italic><sup>2</sup></bold> <bold>(%)</bold></th>
<th valign="top" align="center"><bold>RR (95% CI)</bold></th>
<th valign="top" align="center"><bold>P for test</bold></th>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">Dabigatran</td>
<td valign="top" align="center">4</td>
<td valign="top" align="center">2,7628</td>
<td valign="top" align="center">&#x0003C;0.00001</td>
<td valign="top" align="center">90%</td>
<td valign="top" align="center">1.21 (0.81, 1.80)</td>
<td valign="top" align="center">0.36<xref ref-type="table-fn" rid="TN3"><sup>&#x0002A;</sup></xref></td>
</tr>
<tr>
<td valign="top" align="left">Rivaroxaban</td>
<td valign="top" align="center">3</td>
<td valign="top" align="center">26,512</td>
<td valign="top" align="center">0.71</td>
<td valign="top" align="center">0%</td>
<td valign="top" align="center">1.21 (1.04, 1.41)</td>
<td valign="top" align="center">0.01</td>
</tr>
<tr>
<td valign="top" align="left">Apixaban</td>
<td valign="top" align="center">1</td>
<td valign="top" align="center">12,502</td>
<td valign="top" align="center">&#x02013;</td>
<td valign="top" align="center">&#x02013;</td>
<td valign="top" align="center">1.42 (1.09, 1.85)</td>
<td valign="top" align="center">0.01</td>
</tr>
<tr>
<td valign="top" align="left">Edoxaban</td>
<td valign="top" align="center">3</td>
<td valign="top" align="center">14,433</td>
<td valign="top" align="center">0.70</td>
<td valign="top" align="center">0%</td>
<td valign="top" align="center">0.67 (0.58, 0.76)</td>
<td valign="top" align="center">&#x0003C;0.00001</td>
</tr>
<tr>
<td valign="top" align="left"><bold>High dose vs. RD</bold></td>
<td valign="top" align="center"><bold>No. of studies</bold></td>
<td valign="top" align="center"><bold>No. of participants</bold></td>
<td valign="top" align="center"><bold>P for heterogeneity</bold></td>
<td valign="top" align="center"><bold><italic>I</italic><sup>2</sup></bold> <bold>(%)</bold></td>
<td valign="top" align="center"><bold>RR (95% CI)</bold></td>
<td valign="top" align="center"><bold>P for test</bold></td>
</tr>
<tr>
<td valign="top" align="left">Rivaroxaban</td>
<td valign="top" align="center">2</td>
<td valign="top" align="center">5,123</td>
<td valign="top" align="center">0.17</td>
<td valign="top" align="center">48%</td>
<td valign="top" align="center">1.43 (0.75, 2.72)</td>
<td valign="top" align="center">0.28</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<fn id="TN3">
<label>&#x0002A;</label>
<p><italic>Random-effects models. RD, recommended dose; CI, confidence interval</italic>.</p></fn>
</table-wrap-foot>
</table-wrap>
</sec>
<sec>
<title>All-Cause Mortality</title>
<p>Patients receiving non-recommended dose of NOACs were at significantly higher risk of all-cause mortality than standard dose (RR = 1.57, 95% CI 1.25&#x02013;1.97, <italic>P</italic> &#x0003C; 0.0001), with similar outcomes evident in low dose group patients (RR = 1.58, 95% CI 1.25&#x02013;1.99, <italic>P</italic> = 0.0001) and high dose group patients (RR = 1.74, 95% CI 1.30&#x02013;2.33, <italic>P</italic> = 0.0002) (<xref ref-type="fig" rid="F4">Figure 4</xref>).</p>
<fig id="F4" position="float">
<label>Figure 4</label>
<caption><p>Forest plot for all-cause mortality in non-recommended dose compared to recommended dose of NOACs. NOACs, new oral anticoagulants.</p></caption>
<graphic mimetype="image" mime-subtype="tiff" xlink:href="fcvm-08-774109-g0004.tif"/>
</fig>
<p>Subgroup analyses revealed that the risk of all-cause mortality in patients receiving low dose of dabigatran, rivaroxaban or apixaban, was significantly higher than the recommended dose (RR = 1.47, 95% CI 1.05&#x02013;2.06, <italic>P</italic> = 0.02 for dabigatran; RR = 1.51, 95% CI 1.05&#x02013;2.17, <italic>P</italic> = 0.03 for rivaroxaban, and RR = 2.20, 95% CI 1.81&#x02013;2.67, <italic>P</italic> &#x0003C; 0.0001 for apixaban). However, low dose edoxaban produced a similar risk of all-cause mortality in patients to the recommended dose (RR = 0.95, 95% CI 0.87&#x02013;1.05, <italic>P</italic> = 0.31). Nevertheless, the all-cause mortality events patients were increased in patients receiving high dose rivaroxaban (RR = 1.72, 95% CI 1.00&#x02013;2.97, <italic>P</italic> = 0.05), albeit at marginal significance levels (<xref ref-type="table" rid="T8">Table 8</xref>).</p>
<table-wrap position="float" id="T8">
<label>Table 8</label>
<caption><p>All-cause mortality of low/high dose of individual NOACs.</p></caption>
<table frame="hsides" rules="groups">
<thead><tr>
<th valign="top" align="left"><bold>Low dose vs. RD</bold></th>
<th valign="top" align="center"><bold>No. of studies</bold></th>
<th valign="top" align="center"><bold>No. of participants</bold></th>
<th valign="top" align="center"><bold>P for heterogeneity</bold></th>
<th valign="top" align="center"><bold><italic>I</italic><sup>2</sup></bold> <bold>(%)</bold></th>
<th valign="top" align="center"><bold>RR (95% CI)</bold></th>
<th valign="top" align="center"><bold>P for test</bold></th>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">Dabigatran</td>
<td valign="top" align="center">4</td>
<td valign="top" align="center">27,628</td>
<td valign="top" align="center">0.0001</td>
<td valign="top" align="center">86%</td>
<td valign="top" align="center">1.47 (1.05, 2.06)</td>
<td valign="top" align="center">0.02<xref ref-type="table-fn" rid="TN4"><sup>&#x0002A;</sup></xref></td>
</tr>
<tr>
<td valign="top" align="left">Rivaroxaban</td>
<td valign="top" align="center">3</td>
<td valign="top" align="center">26,512</td>
<td valign="top" align="center">0.09</td>
<td valign="top" align="center">58%</td>
<td valign="top" align="center">1.51 (1.05, 2.17)</td>
<td valign="top" align="center">0.03<xref ref-type="table-fn" rid="TN4"><sup>&#x0002A;</sup></xref></td>
</tr>
<tr>
<td valign="top" align="left">Apixaban</td>
<td valign="top" align="center">1</td>
<td valign="top" align="center">12,502</td>
<td valign="top" align="center">&#x02013;</td>
<td valign="top" align="center">&#x02013;</td>
<td valign="top" align="center">2.20 (1.81, 2.67)</td>
<td valign="top" align="center">&#x0003C;0.0001</td>
</tr>
<tr>
<td valign="top" align="left">Edoxaban</td>
<td valign="top" align="center">1</td>
<td valign="top" align="center">14,014</td>
<td valign="top" align="center">&#x02013;</td>
<td valign="top" align="center">&#x02013;</td>
<td valign="top" align="center">0.95 (0.87, 1.05)</td>
<td valign="top" align="center">0.31</td>
</tr>
<tr>
<td valign="top" align="left"><bold>High dose vs. RD</bold></td>
<td valign="top" align="center"><bold>No. of studies</bold></td>
<td valign="top" align="center"><bold>No. of participants</bold></td>
<td valign="top" align="center"><bold>P for heterogeneity</bold></td>
<td valign="top" align="center"><bold><italic>I</italic><sup>2</sup></bold> <bold>(%)</bold></td>
<td valign="top" align="center"><bold>RR (95% CI)</bold></td>
<td valign="top" align="center"><bold>P for test</bold></td>
</tr>
<tr>
<td valign="top" align="left">Rivaroxaban</td>
<td valign="top" align="center">2</td>
<td valign="top" align="center">5,123</td>
<td valign="top" align="center">0.56</td>
<td valign="top" align="center">0%</td>
<td valign="top" align="center">1.72 (1.00, 2.97)</td>
<td valign="top" align="center">0.05</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<fn id="TN4">
<label>&#x0002A;</label>
<p><italic>Random-effect models. RD, recommended dose; CI, confidence interval</italic>.</p></fn>
</table-wrap-foot>
</table-wrap>
</sec>
<sec>
<title>Cardiovascular Cause of Death</title>
<p>Patients treated with non-recommended dose of NOACs were not more likely to experience a higher risk of cardiovascular death compared to patients receiving standard dose (RR = 1.24, 95% CI 0.76&#x02013;2.03, <italic>P</italic> = 0.39), and this result was consistent when the non-recommended dose patients were divided into low and high dose groups (RR = 1.27, 95% CI 0.76&#x02013;2.12, <italic>P</italic> = 0.36; RR = 1.52, 95% CI 0.80&#x02013;2.87, <italic>P</italic> = 0.20, respectively) (<xref ref-type="fig" rid="F5">Figure 5</xref>).</p>
<fig id="F5" position="float">
<label>Figure 5</label>
<caption><p>Forest plot for cardiovascular cause of death in non-recommended dose compared to recommended dose of NOACs. NOACs, new oral anticoagulants.</p></caption>
<graphic mimetype="image" mime-subtype="tiff" xlink:href="fcvm-08-774109-g0005.tif"/>
</fig>
</sec>
<sec>
<title>Publication Bias and Sensitivity Analysis</title>
<p>Based on a visual inspection of funnel plots (<xref ref-type="supplementary-material" rid="SM1">Supplementary Figures 1&#x02013;4</xref>), there was no obvious evidence of publication bias for the selected studies for either reporting efficacy or safety outcomes. But performance bias in these studies inevitably existed. Random effects model showed similar results to the fixed-effects model. AF patients receiving low dose dabigatran, showed high major or clinically relevant bleeding risk in the sensitivity analysis after excluding Ezekowitz 2016 (<italic>I</italic><sup>2</sup> = 0%, RR = 1.46, 95% CI 1.22&#x02013;1.75, <italic>P</italic> &#x0003C; 0.0001). The study of Ezekowitz 2016 (<xref ref-type="bibr" rid="B18">18</xref>) had the longest follow-up of 4.6 years, which completed RE-LY trial and continued into RELYABLE study (<xref ref-type="bibr" rid="B1">1</xref>, <xref ref-type="bibr" rid="B21">21</xref>), showed low dose of dabigatran was associated with reduced bleeding risk (RR = 0.83,95% CI 0.74&#x02013;0.91), suggesting that use of low dose dabigatran may reduce long term bleeding risk (<xref ref-type="supplementary-material" rid="SM1">Supplementary Figure 8</xref>). With regard to all-cause mortality, the pooled results remained stable after sensitivity analysis.</p>
</sec>
</sec>
<sec sec-type="discussion" id="s4">
<title>Discussion</title>
<p>In routine clinical practice, a balance is struck between the risks of stroke and bleeding in AF patients, highlighting the need to optimize interventions using NOACs. Unscheduled dosages of NOACs are often prescribed under real-world conditions, where physicians make judicious decisions according to the patient&#x00027;s age, weight, renal function amongst other performance indicators. Our meta-analysis aimed to investigate the efficacy and safety of using non-recommended dose of NOACs in AF patients. Foremost, our pooled results confirmed that patients receiving scheduled dose of NOACs, no matter dose lower or higher than recommended, had increased risks of stroke/systemic embolism and all-cause mortality. In contrast, there were no significant differences in the risk of bleeding as well as cardiovascular-related death events associated with non-recommended dose of NOACs.</p>
<p>Currently few reported studies have objectively evaluated clinical outcomes in AF patients receiving non-recommended dose of NOACs. In Denmark, Staerk et al. reported that AF patients treated with low dose of NOACs regimens might have a higher risk of stroke and bleeding compared to the recommended dose (<xref ref-type="bibr" rid="B22">22</xref>). The ORBIT-AF study showed improved safety outcomes in AF patients with renal indications for NOACs dose reduction where major bleeding outcomes were reduced although there were no significant differences encountered for stroke risk relative to patients receiving recommended dose (<xref ref-type="bibr" rid="B23">23</xref>). Yu et al. also suggested that Asian AF patients treated with higher dose of NOACs were at increased risk of stroke or systemic embolism, major bleeding, and all-cause mortality compared with recommended regimens (<xref ref-type="bibr" rid="B24">24</xref>).</p>
<p>As shown in our meta-analysis, we found that treating patients with high dose of NOACs produced a trend of higher incidence of stroke or systemic embolism compared with AF patients under standard treatment. This difference may be explained considering the reason underlying the administration of higher dose was likely the associated ischemic comorbidities of these patients. Non-recommended (low or high) dose of NOACs were also significantly associated with a higher risk of death along with composite endpoints (stroke/systemic embolism, major bleeding and death) compared to patients receiving recommended dose. However, after adjustment for baseline characteristics, the composite outcomes, including death risk, were no longer significant, suggested that the higher rates of events associated with non-recommended dose were probably related to the underlying diseases rather than the dose itself (<xref ref-type="bibr" rid="B5">5</xref>).</p>
<p>As part of our meta-analysis, we considered the effects of the individual agents as subgroup analyses. We found that patients treated with low dose dabigatran had higher associated risks of stroke/systemic embolism, but nevertheless, exhibited equivalent safety, compared with recommended dose. Consistently, Beyer-Westendorf et al. showed that low dose dabigatran produced increased risks of bleeding and stroke compared with AF patients receiving 150 mg bid (<xref ref-type="bibr" rid="B25">25</xref>).</p>
<p>Regarding rivaroxaban, we found patients who received non-recommended dosing showed comparable efficacy to standard regimens, no matter low or high. Nevertheless, low dose rivaroxaban was associated with higher bleeding risk in patients, whereas the higher dose group showed equivalent safety compared to the recommended dose. This contrasts with the findings of the XAPASS study where the incidence rate of stroke/systemic embolism was significantly higher in patients who received low dose rivaroxaban. Moreover, after adjustment for baseline characteristics, the authors reported that the rates of major bleeding were similar in for patients receiving either low or recommended dose of rivaroxaban (<xref ref-type="bibr" rid="B26">26</xref>). Other comparisons can be made with the EXPAND and SAKURA AF registry studies where the incidence rates of stroke/systemic embolism and major bleeding were both comparable between rivaroxaban interventions using low and recommended dose (<xref ref-type="bibr" rid="B6">6</xref>, <xref ref-type="bibr" rid="B27">27</xref>).</p>
<p>Our subgroup analysis of apixaban-treated patients showed lower dose were associated with significantly higher risk of stroke and systemic embolism, major or clinically relevant bleeding compared to patients receiving the recommended dose. Our data are partly consistent with a prior study showing that low dose apixaban in patients with no renal indication for dose reduction was associated with significantly higher risk of stroke but without a reduction of major bleeding compared to patients taken standard dose of apixaban (<xref ref-type="bibr" rid="B23">23</xref>).</p>
<p>Lastly, the risk of stroke or systemic embolism in AF patients receiving low dose edoxaban was higher than patients treated with the recommended dose, but nonetheless this regimen had a superior safety outcome. This notion is supported by a published study reporting that the rate of ischemic stroke was higher with a low dose edoxaban regimen, but with greater risk reduction in bleeding compared to warfarin (<xref ref-type="bibr" rid="B28">28</xref>).</p>
<p>In summary, our pooled meta-analysis showed low dose of NOACs had worse efficacy for stroke/systemic embolism prevention, but without reducing in major bleeding, and with increased all-cause mortality compared to standard use. Moreover, high dose of NOACs did not show better outcomes in stroke/systemic embolism prevention in AF patients. Therefore, non-recommended dose of NOACs should be carefully prescribed since off-label use of any NOAC may cause different clinical outcomes. Furthermore, there may be subtle differences among the individual NOACs, such as pharmacologic properties, frequency of use, dose, interaction between drugs or other currently undefined aspects to consider. So, direct comparative studies are warranted to determine whether these are real differences in clinical efficacy and safety outcomes between individual NOACs.</p>
</sec>
<sec id="s5">
<title>Limitations</title>
<p>Some limitations should be acknowledged of this meta-analysis. First, pooled data were collected from different trials with differences in their design, including baseline participant characteristics, agents and dose regimens, definitions of efficacy and safety outcomes, along with differences in the length of follow-up time. Any combination of these variables could account for the source of moderate to high degree of statistically heterogeneity in our meta-analysis. This point needs further validation and it is also important to consider that heterogeneity can occur by chance and would almost certainly be found with meta-analysis involving many large studies (<xref ref-type="bibr" rid="B29">29</xref>). Furthermore, most of the studies included in our meta-analysis were non-randomized observational studies and were limited by potential selection and ascertainment bias. Moreover, the efficacy or safety outcomes in some of the included studies were not fully adjusted with medical records or baseline characteristics. Therefore, clinical events might be associated with off-label use but not causally related to dosing, thus introducing a possible risk of bias and misclassification of the end points (<xref ref-type="bibr" rid="B12">12</xref>), indicating the need for caution in interpreting outcomes.</p>
</sec>
<sec sec-type="conclusions" id="s6">
<title>Conclusions</title>
<p>Based on the available data, our study concludes that AF patients treated with non-recommended dose of NOACs may be at higher risk of stroke/systemic embolism and all-cause mortality compared with recommended dose, albeit the benefit of without reducing in major bleeding. Of particular interest, dabigatran, rivaroxaban, apixaban, edoxaban all differed in their efficacy and safety outcomes with non-recommended dose regimens.</p>
</sec>
<sec sec-type="data-availability" id="s7">
<title>Data Availability Statement</title>
<p>The original contributions presented in the study are included in the article/<xref ref-type="sec" rid="s11">Supplementary Material</xref>, further inquiries can be directed to the corresponding author/s.</p>
</sec>
<sec id="s8">
<title>Author Contributions</title>
<p>Data analysis, interpretation, and manuscript writing were performed by XK. Literature search, study selection, data extraction, and quality assessment were performed by XK, LP, YZ, SM, LZ, and WZ. YZ and HL were responsible for the conception and design of the study. YZ and HL revised the manuscript carefully. All authors contributed to the article and approved the submitted version.</p>
</sec>
<sec sec-type="funding-information" id="s9">
<title>Funding</title>
<p>This work was supported by the grant from Beijing Lab for Cardiovascular Precision Medicine, Beijing, China (PXM2020_014226_000017_00377132_FCG).</p>
</sec>
<sec sec-type="COI-statement" id="conf1">
<title>Conflict of Interest</title>
<p>The authors declare that the research was conducted in the absence of any commercial or financial relationships that could be construed as a potential conflict of interest.</p>
</sec>
<sec sec-type="disclaimer" id="s10">
<title>Publisher&#x00027;s Note</title>
<p>All claims expressed in this article are solely those of the authors and do not necessarily represent those of their affiliated organizations, or those of the publisher, the editors and the reviewers. Any product that may be evaluated in this article, or claim that may be made by its manufacturer, is not guaranteed or endorsed by the publisher.</p>
</sec> 
</body>
<back><sec sec-type="supplementary-material" id="s11">
<title>Supplementary Material</title>
<p>The Supplementary Material for this article can be found online at: <ext-link ext-link-type="uri" xlink:href="https://www.frontiersin.org/articles/10.3389/fcvm.2021.774109/full#supplementary-material">https://www.frontiersin.org/articles/10.3389/fcvm.2021.774109/full#supplementary-material</ext-link></p>
<supplementary-material xlink:href="Data_Sheet_1.docx" id="SM1" mimetype="application/vnd.openxmlformats-officedocument.wordprocessingml.document" xmlns:xlink="http://www.w3.org/1999/xlink"/>
</sec>
<ref-list>
<title>References</title>
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<glossary>
<def-list>
<title>Abbreviations</title>
<def-item><term>AF</term>
<def><p>atrial fibrillation</p></def></def-item>
<def-item><term>NOACs</term>
<def><p>new oral anticoagulants</p></def></def-item>
<def-item><term>VKA</term>
<def><p>vitamin K antagonists</p></def></def-item>
<def-item><term>EMA</term>
<def><p>European Medicines Agency</p></def></def-item>
<def-item><term>FDA</term>
<def><p>U.S. Food and Drug Administration</p></def></def-item>
<def-item><term>PMDA</term>
<def><p>Japanese Pharmaceuticals and Medical Devices Agency</p></def></def-item>
<def-item><term>BMI</term>
<def><p>body mass index</p></def></def-item>
<def-item><term>CrCl</term>
<def><p>creatinine clearance</p></def></def-item>
<def-item><term>PRISMA</term>
<def><p>Preferred Reporting Items for Systematic Reviews and Meta-Analysis statement</p></def></def-item>
<def-item><term>NOS</term>
<def><p>Newcastle-Ottawa Scale</p></def></def-item>
<def-item><term>SE</term>
<def><p>systemic embolism</p></def></def-item>
<def-item><term>ISTH</term>
<def><p>International Society on Thrombosis and Hemostasis</p></def></def-item>
<def-item><term>RR</term>
<def><p>risk ratios</p></def></def-item>
<def-item><term>OC</term>
<def><p>observational cohorts</p></def></def-item>
<def-item><term>RCT</term>
<def><p>randomized controlled trials</p></def></def-item>
<def-item><term>NA</term>
<def><p>not available</p></def></def-item>
<def-item><term>MI</term>
<def><p>myocardial infarction</p></def></def-item>
<def-item><term>TIA</term>
<def><p>transient ischemic attack</p></def></def-item>
<def-item><term>CNS</term>
<def><p>central nervous system</p></def></def-item>
<def-item><term>CV</term>
<def><p>cardiovascular</p></def></def-item>
<def-item><term>GI</term>
<def><p>gastrointestinal</p></def></def-item>
<def-item><term>MACE</term>
<def><p>major adverse cardiovascular events</p></def></def-item>
<def-item><term>M &#x000B1; SD</term>
<def><p>mean &#x000B1; standard deviation</p></def></def-item>
<def-item><term>IQR</term>
<def><p>interquartile range</p></def></def-item>
<def-item><term>RD</term>
<def><p>recommended dose</p></def></def-item>
<def-item><term>LD</term>
<def><p>low dose</p></def></def-item>
<def-item><term>HD</term>
<def><p>high dose</p></def></def-item>
<def-item><term>CI</term>
<def><p>confidence interval.</p></def></def-item>
</def-list>
</glossary> 
</back>
</article> 