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<front>
<journal-meta>
<journal-id journal-id-type="publisher-id">Front. Endocrinol.</journal-id>
<journal-title>Frontiers in Endocrinology</journal-title>
<abbrev-journal-title abbrev-type="pubmed">Front. Endocrinol.</abbrev-journal-title>
<issn pub-type="epub">1664-2392</issn>
<publisher>
<publisher-name>Frontiers Media S.A.</publisher-name>
</publisher>
</journal-meta>
<article-meta>
<article-id pub-id-type="doi">10.3389/fendo.2022.870277</article-id>
<article-categories>
<subj-group subj-group-type="heading">
<subject>Endocrinology</subject>
<subj-group>
<subject>Systematic Review</subject>
</subj-group>
</subj-group>
</article-categories>
<title-group>
<article-title>Chinese Proprietary Medicine Xianling Gubao Capsule for Osteoporosis: A Systematic Review and Meta-Analysis of Randomized Clinical Trials</article-title>
</title-group>
<contrib-group>
<contrib contrib-type="author">
<name>
<surname>Cheng</surname>
<given-names>Bai-Ru</given-names>
</name>
<xref ref-type="aff" rid="aff1">
<sup>1</sup>
</xref>
<uri xlink:href="https://loop.frontiersin.org/people/1466658"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname>Wu</surname>
<given-names>Rou-Yan</given-names>
</name>
<xref ref-type="aff" rid="aff1">
<sup>1</sup>
</xref>
</contrib>
<contrib contrib-type="author">
<name>
<surname>Gao</surname>
<given-names>Qin-Yang</given-names>
</name>
<xref ref-type="aff" rid="aff1">
<sup>1</sup>
</xref>
<xref ref-type="author-notes" rid="fn003">
<sup>&#x2020;</sup>
</xref>
</contrib>
<contrib contrib-type="author">
<name>
<surname>Jiang</surname>
<given-names>Kai-Xin</given-names>
</name>
<xref ref-type="aff" rid="aff2">
<sup>2</sup>
</xref>
<xref ref-type="author-notes" rid="fn003">
<sup>&#x2020;</sup>
</xref>
</contrib>
<contrib contrib-type="author">
<name>
<surname>Li</surname>
<given-names>Shuang-Sang</given-names>
</name>
<xref ref-type="aff" rid="aff2">
<sup>2</sup>
</xref>
<xref ref-type="author-notes" rid="fn004">
<sup>&#x2021;</sup>
</xref>
</contrib>
<contrib contrib-type="author">
<name>
<surname>Qi</surname>
<given-names>Shi-Hao</given-names>
</name>
<xref ref-type="aff" rid="aff2">
<sup>2</sup>
</xref>
<xref ref-type="author-notes" rid="fn004">
<sup>&#x2021;</sup>
</xref>
</contrib>
<contrib contrib-type="author">
<name>
<surname>Yuan</surname>
<given-names>Ming-Yi</given-names>
</name>
<xref ref-type="aff" rid="aff2">
<sup>2</sup>
</xref>
<xref ref-type="author-notes" rid="fn004">
<sup>&#x2021;</sup>
</xref>
</contrib>
<contrib contrib-type="author" corresp="yes">
<name>
<surname>Liu</surname>
<given-names>Jian-Ping</given-names>
</name>
<xref ref-type="aff" rid="aff3">
<sup>3</sup>
</xref>
<xref ref-type="author-notes" rid="fn001">
<sup>*</sup>
</xref>
<uri xlink:href="https://loop.frontiersin.org/people/1271527"/>
</contrib>
</contrib-group>
<aff id="aff1">
<sup>1</sup>
<institution>The First School of Clinical Medicine (Dongzhimen Hospital), Beijing University of Chinese Medicine</institution>, <addr-line>Beijing</addr-line>, <country>China</country>
</aff>
<aff id="aff2">
<sup>2</sup>
<institution>The Second School of Clinical Medicine (Dongfang Hospital), Beijing University of Chinese Medicine</institution>, <addr-line>Beijing</addr-line>, <country>China</country>
</aff>
<aff id="aff3">
<sup>3</sup>
<institution>Centre for Evidence-Based Chinese Medicine, Beijing University of Chinese Medicine</institution>, <addr-line>Beijing</addr-line>, <country>China</country>
</aff>
<author-notes>
<fn fn-type="edited-by">
<p>Edited by: Jun Liu, Guangdong Provincial Academy of Chinese Medical Sciences, China</p>
</fn>
<fn fn-type="edited-by">
<p>Reviewed by: Guoyan (Emily) Yang, Western Sydney University, Australia; Heng Yin, Nanjing University of Chinese Medicine, China; Guo-qing Zheng, Zhejiang Chinese Medical University, China</p>
</fn>
<fn fn-type="corresp" id="fn001">
<p>*Correspondence: Jian-Ping Liu, <email xlink:href="mailto:Liujp@bucm.edu.cn">Liujp@bucm.edu.cn</email>
</p>
</fn>
<fn fn-type="equal" id="fn003">
<p>&#x2020;These authors have contributed equally to this work</p>
</fn>
<fn fn-type="equal" id="fn004">
<p>&#x2021;These authors have contributed equally to this work</p>
</fn>
<fn fn-type="other" id="fn002">
<p>This article was submitted to Bone Research, a section of the journal Frontiers in Endocrinology</p>
</fn>
</author-notes>
<pub-date pub-type="epub">
<day>07</day>
<month>04</month>
<year>2022</year>
</pub-date>
<pub-date pub-type="collection">
<year>2022</year>
</pub-date>
<volume>13</volume>
<elocation-id>870277</elocation-id>
<history>
<date date-type="received">
<day>06</day>
<month>02</month>
<year>2022</year>
</date>
<date date-type="accepted">
<day>11</day>
<month>03</month>
<year>2022</year>
</date>
</history>
<permissions>
<copyright-statement>Copyright &#xa9; 2022 Cheng, Wu, Gao, Jiang, Li, Qi, Yuan and Liu</copyright-statement>
<copyright-year>2022</copyright-year>
<copyright-holder>Cheng, Wu, Gao, Jiang, Li, Qi, Yuan and Liu</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>
<sec>
<title>Objective</title>
<p>To assess the benefit and harm of Chinese medicine Xianling Gubao (XLGB) capsule compared to conventional medication or placebo to inform clinical practice.</p>
</sec>
<sec>
<title>Methods</title>
<p>We included randomized controlled trials (RCTs) with Jadad score &#x2265;3 of XLGB capsule compared to pharmaceutical medication, placebo, or no treatment for primary osteoporosis. We conducted searches in EMBASE, Cochrane CENTRAL, MEDLINE, China National Knowledge Infrastructure, VIP, Wanfang, and Chinese Biomedical Literature Database (Sino-Med) from their inception till November 13<sup>th</sup>, 2021. Study selection and data extraction were done by two authors independently. The methodological quality of the RCTs was assessed using Cochrane&#x2019;s risk of bias tool. The effect size was presented as risk ratio (RR) or mean difference (MD) with their 95% confidence interval (CI).</p>
</sec>
<sec>
<title>Results</title>
<p>Our searches identified 2292 records and after exclusions, eight trials involving 846 participants were included. There was no statistically significant difference between conventional medications with or without XLGB on new fracture (RR: 0.50, 95% CI: [0.13, 1.87]). Quality of life by SF-36 questionnaire of XLGB plus calcium carbonate, vitamin D<sub>3</sub>, and calcitriol was improved than that of without XLGB (MD: 6.72 scores, 95% CI: [2.82, 10.62]). XLGB increased bone mineral density similarly as calcium carbonate plus vitamin D<sub>3</sub> (MD: 0.21, 95% CI: [-0.16, 0.58]) or as alendronate sodium, calcium carbonate plus vitamin D<sub>3</sub> (MD: 0.00, 95% CI: [-0.10, 0.10]), but it had no additional effect as an add-on treatment to conventional medications (MD: 0.13, 95% CI: [-0.12, 0.37]). XLGB relieved pain <italic>via</italic> visual analog scale more effectively when combined with medications (MD: -1.55 score, 95% CI: [-2.47, -0.63]). XLGB as monotherapy did not increase adverse events (RR: 0.63, 95% CI: [0.28, 1.41]), or as an add-on treatment (RR: 0.25, 95% CI: [0.03, 2.16]).</p>
</sec>
<sec>
<title>Conclusion</title>
<p>This systematic review shows that XLGB capsule appears to be safe and has a beneficial effect on the quality of life and pain relief when used alone or in combination with conventional medications in osteoporosis patients. Further large, rigorous trials are warranted to test its long-term benefit.</p>
</sec>
</abstract>
<kwd-group>
<kwd>Xianling Gubao capsule</kwd>
<kwd>Chinese proprietary medicine</kwd>
<kwd>osteoporosis</kwd>
<kwd>quality of life</kwd>
<kwd>bone mineral density</kwd>
<kwd>systematic review</kwd>
<kwd>meta-analysis</kwd>
</kwd-group>    <contract-sponsor id="cn001">National Natural Science Foundation of China<named-content content-type="fundref-id">10.13039/501100001809</named-content>
</contract-sponsor>    <contract-sponsor id="cn002">National Center for Complementary and Integrative Health<named-content content-type="fundref-id">10.13039/100008460</named-content>
</contract-sponsor>
<counts>
<fig-count count="3"/>
<table-count count="3"/>
<equation-count count="0"/>
<ref-count count="43"/>
<page-count count="11"/>
<word-count count="4488"/>
</counts>
</article-meta>
</front>
<body>
<sec id="s1">
<title>1 Introduction</title>
<p>Osteoporosis is characterized by the deformation of bone&#x2019;s microarchitecture and fragility of bones, resulting in the increment of fractures, especially in postmenopausal women. Its diagnosis criteria vary (<xref ref-type="bibr" rid="B1">1</xref>), resulting in a wide range of reported incidence, fractures are a great threat for osteoporosis patients since they not only cause pain or humpback but also impair dignity and quality of life. Therefore, reducing fractures has become the primary goal in osteoporosis control (<xref ref-type="bibr" rid="B2">2</xref>).</p>
<p>Current therapies include physical activity, nutrient supplements, antiresorptive drugs, and anabolic drugs, while pharmacologic treatments are the most recommended (<xref ref-type="bibr" rid="B3">3</xref>, <xref ref-type="bibr" rid="B4">4</xref>). Exercise and balance programs such as Tai-Chi have been proved to improve coordination, reducing falling-downs, consequently lowering fracture rates (<xref ref-type="bibr" rid="B5">5</xref>). Lifestyle changes such as quitting cigarette smoking or reducing alcohol intake help increase bone mineral density (BMD) and reduce the risk of falls (<xref ref-type="bibr" rid="B6">6</xref>). Nutrient supplements calcium and vitamin D have a controversial effect preventing fractures (<xref ref-type="bibr" rid="B7">7</xref>), and it was found to increase cardiovascular events, especially myocardial infarction (<xref ref-type="bibr" rid="B8">8</xref>). Pharmacologic agents such as alendronate, zoledronic acid, and calcitonin aim at preventing bone resorption or stimulating bone formation and have been shown to improve BMD and reduce the risk of fractures. The recommended therapy for women with low BMD and a fracture risk or history includes all the means mentioned above, but in China, some patients would also seek help from traditional Chinese medicine (TCM).</p>
<p>Xianling Gubao (XLGB) capsule is the most recommended Chinese proprietary medicine for osteoporosis treatment. It was approved by the China Food and Drug Administration in 2002 (<xref ref-type="bibr" rid="B9">9</xref>). It contains <italic>Longspur epimedium</italic> (Yin Yang Huo), <italic>Radix dipsaci</italic> (Xuduan), <italic>Salvia miltiorrhiza</italic> (Danshen), <italic>Rhizoma anemarrhenae</italic> (Zhimu), <italic>Rehmannia glutinosa</italic> (Dihuang), and <italic>Psoralea corylifolia</italic> (Bu Gu Zhi). Based on network pharmacology and molecular docking, the identified components such as icariin, quercetin, and luteolin, may aim at WnT, TNF, MAPK, PI3K-Akt pathways, relating to targets including STAT3, MAPK14, JUN, IL-2, and EGFR, which are important in bone homeostasis (<xref ref-type="bibr" rid="B10">10</xref>). XLGB capsule was found to downregulate RANKL mRNA and upregulate osteoprotegerin mRNA, which combines with RANKL to reduce osteoclasts, finally inhibiting bone destruction (<xref ref-type="bibr" rid="B11">11</xref>). It was also reported that the combination of six typical absorbed constituents of XLGB capsule could promote MC3T3-E1 cells&#x2019; differentiation and mineralization (<xref ref-type="bibr" rid="B12">12</xref>). In TCM theory, most bone diseases pertain to the deficiency of the kidney and the blood stasis in meridians which causes pain, thus, this formula could nourish the liver and the kidney, promote blood circulation, and remove meridian obstruction, to strengthen the muscles and bones. There is an increasing number of clinical trials on XLGB capsule in China (<xref ref-type="bibr" rid="B13">13</xref>&#x2013;<xref ref-type="bibr" rid="B16">16</xref>). Although most trials present positive findings, some of them are of low quality, lacking blinding or proper randomization methods. Therefore, we thought it necessary to do a systematic review of randomized trials with adequate quality to provide reliable evidence for the clinical use of XLGB capsule.</p>
</sec>
<sec id="s2">
<title>2 Methods</title>
<sec id="s2_1">
<title>2.1 Search Strategy</title>    <p>We retrieved publications using computerized searches by EMBASE, Cochrane CENTRAL, MEDLINE, China National Knowledge Infrastructure, Wanfang, VIP, and Chinese Biomedical Literature Database (Sino-Med), with no limit on inception date or language. The last search date was November 13<sup>th</sup>, 2021. The search strategy for MEDLINE (<italic>via</italic> PubMed) is listed in <xref ref-type="appendix" rid="app1">
<bold>Appendix 1</bold>
</xref>.</p>
</sec>
<sec id="s2_2">
<title>2.2 Inclusion Criteria</title>
<p>Study design: parallel-group, randomized clinical trials regardless of blinding in all languages. There was no limit on the number of participants. Studies with a Jadad score &#x2265;3 were included [using the Jadad scale (<xref ref-type="bibr" rid="B17">17</xref>)].</p>
<p>Patients with primary osteoporosis, diagnosed according to any clearly defined criteria were included, regardless of age, gender, or ethnic origin. Those whose chief complaint was a recent fracture and those with secondary osteoporosis such as diabetes-induced, rheumatoid arthritis-induced, or corticosteroid-induced osteoporosis were excluded.</p>
<p>Intervention: Chinese proprietary medicine Xianling Gubao capsule with a minimum treatment duration of three months.</p>
<p>Control intervention could be no treatment, placebo, or conventional pharmaceutical medicine (such as alendronate, zoledronic acid, hormone replacement therapy, bisphosphonate, calcitonin, calcium, and vitamin D).</p>
<p>Co-intervention was allowed as long as the Xianling Gubao group received the same conventional pharmaceutical medicine as at least one comparison group and the only difference between them was the add-on Xianling Gubao capsule.</p>
</sec>
<sec id="s2_3">
<title>2.3 Outcome Measures</title>
<sec id="s2_3_1">
<title>2.3.1 Primary Outcomes</title>
<p>1. Number of individuals with new fractures; 2. Quality of life (QoL) is measured by a validated tool or scale.</p>
</sec>
<sec id="s2_3_2">
<title>2.3.2 Secondary Outcomes</title>
<p>1. Bone mineral density (BMD); detected by one of the following methods of examination: single-photon absorptiometry (SPA), dual photon absorptiometry (DPA), quantitative computed tomography (QCT), dual-energy X-ray absorptiometry (DXA), or peripheral dual-energy X-ray absorptiometry (pDXA); 2. Biochemical indicators: serum calcium (Ca), phosphorus (P), bone alkaline phosphatase (BALP), OC (osteocalcin), TRACP (tartrate-resistant acid phosphatase); 3. Pain, muscle fatigue, and limited mobility; 4. Number and types of adverse events.</p>
</sec>
</sec>
<sec id="s2_4">
<title>2.4 Study Selection</title>
<p>Two authors (BR Cheng and RY Wu) independently screened the titles and abstracts of all records. We retrieved the full texts of potentially eligible studies for further identification. Any uncertainty or discrepancy was resolved by discussion with a third author (JP Liu).</p>
</sec>
<sec id="s2_5">
<title>2.5 Data Extraction</title>
<p>Two authors (MY Yuan and SS Li) independently extracted data using a predesigned data form using Excel (version Microsoft Excel 2016). Extracted data were checked together, and any disagreements were resolved by discussion with SH Qi.</p>
</sec>
<sec id="s2_6">
<title>2.6 Risk of Bias Assessment</title>
<p>Since only RCTs were included, the risk of bias was assessed through Cochrane&#x2019;s risk of bias Tool for Randomized Trials (RoB) (<xref ref-type="bibr" rid="B18">18</xref>). Two authors (QY Gao and KX Jiang) independently assessed the risk of bias. Disagreements were resolved by discussion with a third author (BR Cheng). The risk of bias was assessed through the following five domains: 1) bias arising from the randomization process; 2) bias due to deviations from intended interventions; 3) bias due to missing outcome data; 4) bias in the measurement of the outcome; 5) bias in the selection of the reported result.</p>
</sec>
<sec id="s2_7">
<title>2.7 Data Analysis and Synthesis</title>
<p>We provided a narrative synthesis of the findings from the included studies and worked with the data within a meta-analysis, through Review Manager 5.3. Heterogeneity related to the results of the studies was assessed using both the chi-square test and the I&#xb2; statistic. If data had been sufficiently homogenous (I<sup>2</sup> &lt;50%), we would pool the results using a fixed-effect model, with a mean difference (MD) for continuous outcomes (in our review referring to QoL, BMD, Ca, P, BALP, OC, TRACP, and VAS score) and risk ratio (RR) for dichotomous outcomes (referring to the number of individuals with new fractures and adverse events), and calculated 95% confidence interval (CI) and two-sided <italic>p</italic> values for each outcome. We provided summaries of effect estimates for each study by calculating RR or MD. We considered an I&#xb2; value greater than 50% as high heterogeneity. If there had been high heterogeneity across included studies, we would use a random-effect model or only provide a narrative synthesis of the findings.</p>
</sec>
</sec>
<sec id="s3">
<title>3 Results</title>
<sec id="s3_1">
<title>3.1 Study Selection</title>
<p>Database searches initially identified 2292 records published in English or Chinese. The last search date was November 13<sup>th</sup>, 2021. After removing duplications, 1512 articles were screened by their titles and abstracts. 130 reports were sought for retrieval of full text but we failed to find two of them, as they had no available resources online, and 128 out of 130 reports were assessed for eligibility. A flowchart (<xref ref-type="fig" rid="f1">
<bold>Figure&#xa0;1</bold>
</xref>) with the number of included studies at each step was established, including reasons for excluding studies. Eight&#xa0;trials were finally included in the qualitative and quantitative synthesis.</p>
<fig id="f1" position="float">
<label>Figure&#xa0;1</label>
<caption>
<p>Flowchart of the study selection process.</p>
</caption>
<graphic mimetype="image" mime-subtype="tiff" xlink:href="fendo-13-870277-g001.tif"/>
</fig>
</sec>
<sec id="s3_2">
<title>3.2 Study Characteristics</title>
<p>
<xref ref-type="table" rid="T1">
<bold>Table&#xa0;1</bold>
</xref> presents the characteristics of the included studies, and five out of the eight studies were master&#x2019;s or doctor&#x2019;s thesis, and three were published studies in journals. The included eight studies involved 846 participants (ranging from 60 to 180). The conventional treatments in the control groups included calcium carbonate and vitamin D<sub>3</sub>, calcitriol, alendronate sodium, and carbocalcitonin, as well as the combination of some of them. The treatment duration ranged from three to twelve months.</p>
<table-wrap id="T1" position="float">
<label>Table&#xa0;1</label>
<caption>
<p>Characteristics of randomized controlled trials on Xianling Gubao capsule for osteoporosis.</p>
</caption>
<table frame="hsides">
<thead>
<tr>
<th valign="top" align="left">Study</th>
<th valign="top" align="center">Condition</th>
<th valign="top" align="center">Sample Size (Experiment/control)</th>
<th valign="top" align="center">Experiment</th>
<th valign="top" align="center">Comparators</th>
<th valign="top" align="center">Duration (months)</th>
<th valign="top" align="center">Jadad Score (points out of 5)</th>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" rowspan="3" align="left">
<bold>Feng et&#xa0;al.</bold> (<xref ref-type="bibr" rid="B19">19</xref>)</td>
<td valign="top" rowspan="3" align="left">Senile osteoporosis</td>
<td valign="top" rowspan="3" align="center">30/30</td>
<td valign="top" align="left">Calcium carbonate and vitamin D<sub>3</sub> 600mg Qd</td>
<td valign="top" align="left">Calcium carbonate and vitamin D<sub>3</sub> 600mg Qd</td>
<td valign="top" rowspan="3" align="center">12</td>
<td valign="top" rowspan="3" align="center">3</td>
</tr>
<tr>
<td valign="top" align="left">Calcitriol 0.25&#x3bc;g Qd</td>
<td valign="top" rowspan="2" align="left">Calcitriol 0.25&#x3bc;g Qd</td>
</tr>
<tr>
<td valign="top" align="left">Xianling Gubao capsule 1.5g Tid</td>
</tr>
<tr>
<td valign="top" rowspan="2" align="left">
<bold>Li</bold> (<xref ref-type="bibr" rid="B20">20</xref>)</td>
<td valign="top" rowspan="2" align="left">Senile osteoporosis</td>
<td valign="top" rowspan="2" align="center">30/30</td>
<td valign="top" align="left">Calcium carbonate and vitamin D<sub>3</sub> 600mg Bid</td>
<td valign="top" rowspan="2" align="left">Calcium carbonate and vitamin D<sub>3</sub> 600mg Bid</td>
<td valign="top" rowspan="2" align="center">3</td>
<td valign="top" rowspan="2" align="center">3</td>
</tr>
<tr>
<td valign="top" align="left">Xianling Gubao capsule 1.5g Tid</td>
</tr>
<tr>
<td valign="top" rowspan="3" align="left">
<bold>Liu and Bai</bold> (<xref ref-type="bibr" rid="B21">21</xref>)</td>
<td valign="top" rowspan="3" align="left">Senile osteoporosis</td>
<td valign="top" rowspan="3" align="center">76/74</td>
<td valign="top" align="left">Alendronate sodium 70mg Qw</td>
<td valign="top" align="left">Alendronate sodium 70mg Qw</td>
<td valign="top" rowspan="3" align="center">6</td>
<td valign="top" rowspan="3" align="center">3</td>
</tr>
<tr>
<td valign="top" align="left">Calcium carbonate 500mg Qd</td>
<td valign="top" rowspan="2" align="left">Calcium carbonate 500mg Qd</td>
</tr>
<tr>
<td valign="top" align="left">Xianling Gubao capsule 1.0g Bid</td>
</tr>
<tr>
<td valign="top" rowspan="2" align="left">
<bold>Ouyang</bold> (<xref ref-type="bibr" rid="B22">22</xref>)</td>
<td valign="top" rowspan="2" align="left">Postmenopausal osteoporosis</td>
<td valign="top" rowspan="2" align="center">30/30</td>
<td valign="top" align="left">Calcium carbonate and vitamin D<sub>3</sub> 600mg Qd</td>
<td valign="top" rowspan="2" align="left">Calcium carbonate and vitamin D<sub>3</sub> 600mg Qd</td>
<td valign="top" rowspan="2" align="center">3</td>
<td valign="top" rowspan="2" align="center">3</td>
</tr>
<tr>
<td valign="top" align="left">Xianling Gubao capsule 1.5g Bid</td>
</tr>
<tr>
<td valign="top" rowspan="4" align="left">
<bold>Xu</bold> (<xref ref-type="bibr" rid="B23">23</xref>)</td>
<td valign="top" rowspan="4" align="left">Senile osteoporosis</td>
<td valign="top" rowspan="4" align="center">42/42</td>
<td valign="top" align="left">Carbocalcitonin 10IU Biw*</td>
<td valign="top" align="left">Carbocalcitonin 10IU Biw*</td>
<td valign="top" rowspan="4" align="center">6</td>
<td valign="top" rowspan="4" align="center">3</td>
</tr>
<tr>
<td valign="top" align="left">Calcium carbonate and vitamin D<sub>3</sub> 600mg Bid</td>
<td valign="top" align="left">Calcium carbonate and vitamin D<sub>3</sub> 600mg Bid</td>
</tr>
<tr>
<td valign="top" align="left">Calcitriol 0.25&#x3bc;g Bid</td>
<td valign="top" rowspan="2" align="left">Calcitriol 0.25&#x3bc;g Bid</td>
</tr>
<tr>
<td valign="top" align="left">Xianling Gubao capsule 1.5g Bid</td>
</tr>
<tr>
<td valign="top" rowspan="2" align="left">
<bold>You</bold> (<xref ref-type="bibr" rid="B24">24</xref>)</td>
<td valign="top" rowspan="2" align="left">Postmenopausal osteoporosis</td>
<td valign="top" rowspan="2" align="center">20/20</td>
<td valign="top" rowspan="2" align="left">Xianling Gubao capsule 1.5g Bid</td>
<td valign="top" align="left">Alendronate sodium 70mg Qw</td>
<td valign="top" rowspan="2" align="center">6</td>
<td valign="top" rowspan="2" align="center">3</td>
</tr>
<tr>
<td valign="top" align="left">Calcium carbonate and vitamin D<sub>3</sub> 600mg Qd</td>
</tr>
<tr>
<td valign="top" align="left">
<bold>Zhang</bold> (<xref ref-type="bibr" rid="B25">25</xref>)</td>
<td valign="top" align="left">Senile osteoporosis</td>
<td valign="top" align="center">30/30</td>
<td valign="top" align="left">Xianling Gubao capsule 1.5g Bid</td>
<td valign="top" align="left">Calcium carbonate and vitamin D<sub>3</sub> 600mg Bid</td>
<td valign="top" align="center">3</td>
<td valign="top" align="center">3</td>
</tr>
<tr>
<td valign="top" rowspan="3" align="left">
<bold>Zhu et al.</bold> (<xref ref-type="bibr" rid="B26">26</xref>)<bold>
<sup>#</sup>
</bold>
</td>
<td valign="top" rowspan="3" align="left">Postmenopausal osteoporosis</td>
<td valign="top" rowspan="3" align="center">61/61</td>
<td valign="top" align="left">Calcium carbonate 500mg Qd</td>
<td valign="top" align="left">Calcium carbonate 500mg Qd</td>
<td valign="top" rowspan="3" align="center">12</td>
<td valign="top" rowspan="3" align="center">4</td>
</tr>
<tr>
<td valign="top" align="left">Vitamin D<sub>3</sub> 200IU Qd</td>
<td valign="top" rowspan="2" align="left">Vitamin D<sub>3</sub> 200IU Qd</td>
</tr>
<tr>
<td valign="top" align="left">Xianling Gubao capsule 3g/day</td>
</tr>
<tr>
<td valign="top" rowspan="3" align="left">
<bold>Zhu et al.</bold> (<xref ref-type="bibr" rid="B26">26</xref>)<bold>
<sup>#</sup>
</bold>
</td>
<td valign="top" rowspan="3" align="left">Postmenopausal osteoporosis</td>
<td valign="top" rowspan="3" align="center">58/61</td>
<td valign="top" align="left">Calcium carbonate 500mg Qd</td>
<td valign="top" align="left">Calcium carbonate 500mg Qd</td>
<td valign="top" rowspan="3" align="center">12</td>
<td valign="top" rowspan="3" align="center">4</td>
</tr>
<tr>
<td valign="top" align="left">Vitamin D<sub>3</sub> 200IU Qd</td>
<td valign="top" rowspan="2" align="left">Vitamin D<sub>3</sub> 200IU Qd</td>
</tr>
<tr>
<td valign="top" align="left">Xianling Gubao capsule 6g/day</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<fn>
<p>Qd, once daily; Bid, twice daily; Tid, three times daily; g, gram; mg, milligram; &#x3bc;g, microgram; Qw, once per week; Biw, twice per week.</p>
</fn>
<fn>
<p>*intramuscular-injection; <sup>#</sup>Zhu 2012 contains 2 intervention groups and 1 control group.</p>
</fn>
</table-wrap-foot>
</table-wrap>
</sec>
<sec id="s3_3">
<title>3.3 Risk of Bias of Individual Studies</title>
<p>
<xref ref-type="fig" rid="f2">
<bold>Figures&#xa0;2</bold>
</xref>, <xref ref-type="fig" rid="f3">
<bold>3</bold>
</xref> are summaries of each included studies&#x2019; risk of bias. Overall, all included studies were of unclear or high risks, which was mostly contributed by lack of randomization sequence concealment and absence of blinding process. All studies had a proper randomization process, but none reported blinding of participants, personnel, or outcome assessment except 1 triple-blinded study, using a placebo (<xref ref-type="bibr" rid="B26">26</xref>). Only one study reported randomization concealment using sealed envelopes (<xref ref-type="bibr" rid="B22">22</xref>). Subjective outcomes such as the VAS score and the QoL score could have been biased due to the lack of participant blinding, but objective outcomes like bioindicator levels are less likely to be biased.</p>
<fig id="f2" position="float">
<label>Figure&#xa0;2</label>
<caption>
<p>Risk of bias summary: a review of authors&#x2019; judgments about each risk of bias item for each included study.</p>
</caption>
<graphic mimetype="image" mime-subtype="tiff" xlink:href="fendo-13-870277-g002.tif"/>
</fig>
<fig id="f3" position="float">
<label>Figure&#xa0;3</label>
<caption>
<p>Risk of bias graph: A review of authors&#x2019; judgments about each risk of bias item presented as percentages across all included studies.</p>
</caption>
<graphic mimetype="image" mime-subtype="tiff" xlink:href="fendo-13-870277-g003.tif"/>
</fig>
</sec>
<sec id="s3_4">
<title>3.4 Primary Outcomes</title>
<sec id="s3_4_1">
<title>3.4.1 Number of Individuals With New Fractures</title>
<p>Only one trial reported this outcome (<xref ref-type="bibr" rid="B23">23</xref>). In the twelve-month follow-up after the six-month treatment, there was no significant difference between XLGB plus medications (carbocalcitonin, calcium carbonate, vitamin D<sub>3</sub>, and calcitriol) and medications on reported new fracture onset (3/42 versus 6/42; RR: 0.50, 95% CI: [0.13, 1.87]).</p>
</sec>
<sec id="s3_4_2">
<title>3.4.2 Quality of Life (QoL)</title>
<p>Only one trial used the SF-36 health survey questionnaire (eight domains with total scores of 100) to assess patients&#x2019; quality of life (<xref ref-type="bibr" rid="B17">17</xref>). It showed a significant difference between calcium carbonate, vitamin D<sub>3</sub>, and calcitriol with or without XLGB (MD: 6.72 scores, 95% CI: [2.82, 10.62]) (<xref ref-type="bibr" rid="B19">19</xref>).</p>
</sec>
</sec>
<sec id="s3_5">
<title>3.5 Secondary Outcomes</title>
<sec id="s3_5_1">
<title>3.5.1 Bone Mineral Density (BMD)</title>
<p>Five trials reported BMD of the lumbar spine. Two reported BMD in T scores and one did not mention the place where the BMD was detected (<xref ref-type="bibr" rid="B21">21</xref>), making its result unable to be pooled. In two comparisons where the units were g/cm<sup>2</sup> and T score, XLGB increased bone mineral density to a similar extent as calcium carbonate plus vitamin D<sub>3</sub> (MD: 0.21, 95% CI: [-0.16, 0.58]), or as alendronate sodium, calcium carbonate plus vitamin D<sub>3</sub> (MD: 0.00, 95% CI: [-0.10, 0.10]), but it had no additional effect as an add-on to conventional medications (MD: 0.13, 95% CI: [-0.12, 0.37]), though differences were seen another comparison (T score) of carbocalcitonin, calcium carbonate, vitamin D<sub>3</sub>, and calcitriol with or without XLGB (MD: 0.11, 95% CI: [0.09, 0.13]).</p>
</sec>
<sec id="s3_5_2">
<title>3.5.2 Biochemical Indicators</title>
<sec id="s3_5_2_1">
<title>3.5.2.1 Serum Calcium and Phosphorus Levels</title>
<p>No comparison showed a difference between XLGB plus conventional treatment and the conventional treatment, but in one study (<xref ref-type="bibr" rid="B25">25</xref>), serum calcium and phosphorus levels in XLGB group were significantly lower than calcium carbonate plus vitamin D<sub>3</sub> group (<xref ref-type="table" rid="T2">
<bold>Table&#xa0;2</bold>
</xref>).</p>
<table-wrap id="T2" position="float">
<label>Table&#xa0;2</label>
<caption>
<p>Mean differences of continuous outcomes.</p>
</caption>
<table frame="hsides">
<thead>
<tr>
<th valign="top" align="left"/>
<th valign="top" align="center">Study ID</th>
<th valign="top" align="center">MD [95% CI]</th>
<th valign="top" align="center">
<italic>P</italic> value</th>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">
<bold>
<italic>Bone mineral density (lumbar spine, g/cm<sup>2</sup>)</italic>
</bold>
</td>
<td valign="top" align="left"/>
<td valign="top" align="center"/>
<td valign="top" align="center"/>
</tr>
<tr>
<td valign="top" align="left">
<bold>XLGB plus conventional versus conventional treatment</bold>
</td>
<td valign="top" align="left">Feng et&#xa0;al. (<xref ref-type="bibr" rid="B19">19</xref>)</td>
<td valign="top" align="center">0.06 [-0.00, 0.12]</td>
<td valign="top" align="center">0.06</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Li (<xref ref-type="bibr" rid="B20">20</xref>)</td>
<td valign="top" align="center">0.04 [0.02, 0.06]</td>
<td valign="top" align="center">0.0001</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Ouyang (<xref ref-type="bibr" rid="B22">22</xref>)</td>
<td valign="top" align="center">0.54 [0.51, 0.56]</td>
<td valign="top" align="center">&lt;0.00001</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Zhu et al. (<xref ref-type="bibr" rid="B26">26</xref>)</td>
<td valign="top" align="center">0.00 [-0.04, 0.04]</td>
<td valign="top" align="center">1.00</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Zhu et al. (<xref ref-type="bibr" rid="B26">26</xref>)</td>
<td valign="top" align="center">0.00 [-0.03, 0.03]</td>
<td valign="top" align="center">1.00</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Pooled result</td>
<td valign="top" align="center">0.13 [-0.12, 0.37]</td>
<td valign="top" align="center">0.31</td>
</tr>
<tr>
<td valign="top" align="left">
<bold>XLGB versus calcium carbonate and vitamin D<sub>3</sub>
</bold>
</td>
<td valign="top" align="left">Zhang (<xref ref-type="bibr" rid="B25">25</xref>)</td>
<td valign="top" align="center">0.03 [-0.02, 0.08]</td>
<td valign="top" align="center">0.17</td>
</tr>
<tr>
<td valign="top" align="left">
<bold>
<italic>Bone mineral density (T score)</italic>
</bold>
</td>
<td valign="top" align="left"/>
<td valign="top" align="center"/>
<td valign="top" align="center"/>
</tr>
<tr>
<td valign="top" align="left">
<bold>XLGB plus carbocalcitonin, calcium carbonate, vitamin D<sub>3</sub>, and calcitriol versus carbocalcitonin, calcium carbonate, vitamin D<sub>3</sub>, and calcitriol</bold>
</td>
<td valign="top" align="left">Xu (<xref ref-type="bibr" rid="B23">23</xref>)</td>
<td valign="top" align="center">0.11 [0.09, 0.13]</td>
<td valign="top" align="center">&lt;0.00001</td>
</tr>
<tr>
<td valign="top" align="left">
<bold>XLGB versus alendronate sodium, calcium carbonate and vitamin D<sub>3</sub>
</bold>
</td>
<td valign="top" align="left">You (<xref ref-type="bibr" rid="B24">24</xref>)</td>
<td valign="top" align="center">-0.05 [-0.25, 0.15]</td>
<td valign="top" align="center">0.63</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">You (<xref ref-type="bibr" rid="B24">24</xref>)</td>
<td valign="top" align="center">0.02 [-0.09, 0.13]</td>
<td valign="top" align="center">0.73</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Pooled result</td>
<td valign="top" align="center">0.00 [-0.10, 0.10]</td>
<td valign="top" align="center">0.56</td>
</tr>
<tr>
<td valign="top" align="left">
<bold>
<italic>Serum calcium (Ca, mmol/L)</italic>
</bold>
</td>
<td valign="top" align="left"/>
<td valign="top" align="center"/>
<td valign="top" align="center"/>
</tr>
<tr>
<td valign="top" align="left">
<bold>XLGB plus conventional versus conventional treatment</bold>
</td>
<td valign="top" align="left">Feng et&#xa0;al. (<xref ref-type="bibr" rid="B19">19</xref>)</td>
<td valign="top" align="center">0.02 [-0.10, 0.14]</td>
<td valign="top" align="center">0.73</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Ouyang (<xref ref-type="bibr" rid="B22">22</xref>)</td>
<td valign="top" align="center">-0.20 [-0.33, -0.07]</td>
<td valign="top" align="center">0.002</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Pooled result</td>
<td valign="top" align="center">-0.09 [-0.30, 0.13]</td>
<td valign="top" align="center">0.01</td>
</tr>
<tr>
<td valign="top" align="left">
<bold>XLGB versus calcium carbonate and vitamin D<sub>3</sub>
</bold>
</td>
<td valign="top" align="left">Zhang (<xref ref-type="bibr" rid="B25">25</xref>)</td>
<td valign="top" align="center">-0.24 [-0.29, -0.19]</td>
<td valign="top" align="center">&lt;0.00001</td>
</tr>
<tr>
<td valign="top" align="left">
<bold>
<italic>Phosphorus (P, mmol/L)</italic>
</bold>
</td>
<td valign="top" align="left"/>
<td valign="top" align="center"/>
<td valign="top" align="center"/>
</tr>
<tr>
<td valign="top" align="left">
<bold>XLGB plus conventional versus conventional treatment</bold>
</td>
<td valign="top" align="left">Feng et&#xa0;al. (<xref ref-type="bibr" rid="B19">19</xref>)</td>
<td valign="top" align="center">-0.01 [-0.12, 0.10]</td>
<td valign="top" align="center">0.86</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Ouyang (<xref ref-type="bibr" rid="B22">22</xref>)</td>
<td valign="top" align="center">-0.09 [-0.28, 0.10]</td>
<td valign="top" align="center">0.35</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Pooled result</td>
<td valign="top" align="center">-0.03 [-0.13, 0.07]</td>
<td valign="top" align="center">0.48</td>
</tr>
<tr>
<td valign="top" align="left">
<bold>XLGB versus calcium carbonate and vitamin D<sub>3</sub>
</bold>
</td>
<td valign="top" align="left">Zhang (<xref ref-type="bibr" rid="B25">25</xref>)</td>
<td valign="top" align="center">-0.24 [-0.34, -0.14]</td>
<td valign="top" align="center">&lt;0.00001</td>
</tr>
<tr>
<td valign="top" align="left">
<bold>
<italic>Bone alkaline phosphatase (BALP, U/L)</italic>
</bold>
</td>
<td valign="top" align="left"/>
<td valign="top" align="center"/>
<td valign="top" align="center"/>
</tr>
<tr>
<td valign="top" align="left">
<bold>XLGB plus calcium carbonate and vitamin D<sub>3</sub> versus calcium carbonate and vitamin D<sub>3</sub>
</bold>
</td>
<td valign="top" align="left">Ouyang (<xref ref-type="bibr" rid="B22">22</xref>)</td>
<td valign="top" align="center">6.67 [1.88, 11.46]</td>
<td valign="top" align="center">0.006</td>
</tr>
<tr>
<td valign="top" align="left">
<bold>XLGB versus alendronate sodium, calcium carbonate and vitamin D<sub>3</sub>
</bold>
</td>
<td valign="top" align="left">You (<xref ref-type="bibr" rid="B24">24</xref>)</td>
<td valign="top" align="center">6.79 [-23.99, 37.57]</td>
<td valign="top" align="center">0.67</td>
</tr>
<tr>
<td valign="top" align="left">
<bold>
<italic>Osteocalcin (OC, &#x3bc;g/L)</italic>
</bold>
</td>
<td valign="top" align="left"/>
<td valign="top" align="center"/>
<td valign="top" align="center"/>
</tr>
<tr>
<td valign="top" align="left">
<bold>XLGB plus conventional versus conventional treatment</bold>
</td>
<td valign="top" align="left">Li (<xref ref-type="bibr" rid="B20">20</xref>)</td>
<td valign="top" align="center">0.47 [0.41, 0.53]</td>
<td valign="top" align="center">&lt;0.00001</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Xu (<xref ref-type="bibr" rid="B23">23</xref>)</td>
<td valign="top" align="center">0.12 [0.09, 0.15]</td>
<td valign="top" align="center">&lt;0.00001</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Zhu et al. (<xref ref-type="bibr" rid="B26">26</xref>)</td>
<td valign="top" align="center">0.45 [-2.50, 3.40]</td>
<td valign="top" align="center">0.76</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Zhu et al. (<xref ref-type="bibr" rid="B26">26</xref>)</td>
<td valign="top" align="center">0.76 [-2.32, 3.84]</td>
<td valign="top" align="center">0.63</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Pooled result</td>
<td valign="top" align="center">0.30 [-0.03, 0.64]</td>
<td valign="top" align="center">0.08</td>
</tr>
<tr>
<td valign="top" align="left">
<bold>XLGB versus calcium carbonate and vitamin D<sub>3</sub>
</bold>
</td>
<td valign="top" align="left">Zhang (<xref ref-type="bibr" rid="B25">25</xref>)</td>
<td valign="top" align="center">0.37 [0.33, 0.42]</td>
<td valign="top" align="center">&lt;0.00001</td>
</tr>
<tr>
<td valign="top" align="left">
<bold>
<italic>Tartrate-resistant acid phosphatase 5b (TRACP5b, nmol/L)</italic>
</bold>
</td>
<td valign="top" align="left"/>
<td valign="top" align="center"/>
<td valign="top" align="center"/>
</tr>
<tr>
<td valign="top" align="left">
<bold>XLGB plus conventional versus conventional treatment</bold>
</td>
<td valign="top" align="left">Feng et&#xa0;al. (<xref ref-type="bibr" rid="B19">19</xref>)</td>
<td valign="top" align="center">-0.95 [-1.48, -0.42]</td>
<td valign="top" align="center">0.0004</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Ouyang (<xref ref-type="bibr" rid="B22">22</xref>)</td>
<td valign="top" align="center">-0.49 [-0.83, -0.15]</td>
<td valign="top" align="center">0.005</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Pooled result</td>
<td valign="top" align="center">-0.67 [-1.11, -0.23]</td>
<td valign="top" align="center">0.003</td>
</tr>
<tr>
<td valign="top" align="left">
<bold>XLGB versus alendronate sodium, calcium carbonate and vitamin D<sub>3</sub>
</bold>
</td>
<td valign="top" align="left">You (<xref ref-type="bibr" rid="B24">24</xref>)</td>
<td valign="top" align="center">0.36 [0.10, 0.62]</td>
<td valign="top" align="center">0.007</td>
</tr>
<tr>
<td valign="top" align="left">
<bold>Pain (VAS score)</bold>
</td>
<td valign="top" align="left"/>
<td valign="top" align="center"/>
<td valign="top" align="center"/>
</tr>
<tr>
<td valign="top" align="left">
<bold>XLGB plus conventional versus conventional treatment</bold>
</td>
<td valign="top" align="left">Feng et&#xa0;al. (<xref ref-type="bibr" rid="B19">19</xref>)</td>
<td valign="top" align="center">-0.99 [-1.38, -0.60]</td>
<td valign="top" align="center">&lt;0.00001</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Li (<xref ref-type="bibr" rid="B20">20</xref>)</td>
<td valign="top" align="center">-1.16 [-1.78, -0.54]</td>
<td valign="top" align="center">0.0002</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Liu and Bai (<xref ref-type="bibr" rid="B21">21</xref>)</td>
<td valign="top" align="center">-2.88 [-3.19, -2.57]</td>
<td valign="top" align="center">&lt;0.00001</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Ouyang (<xref ref-type="bibr" rid="B22">22</xref>)</td>
<td valign="top" align="center">-1.94 [-2.48, -1.40]</td>
<td valign="top" align="center">&lt;0.00001</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Xu (<xref ref-type="bibr" rid="B23">23</xref>)</td>
<td valign="top" align="center">-0.79 [-1.02, -0.56]</td>
<td valign="top" align="center">&lt;0.00001</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Pooled result</td>
<td valign="top" align="center">-1.55 [-2.47, -0.63]</td>
<td valign="top" align="center">0.0009</td>
</tr>
<tr>
<td valign="top" align="left">
<bold>XLGB versus alendronate sodium, calcium carbonate and vitamin D<sub>3</sub>
</bold>
</td>
<td valign="top" align="left">You (<xref ref-type="bibr" rid="B24">24</xref>)</td>
<td valign="top" align="center">-0.12 [-0.82, 0.58]</td>
<td valign="top" align="center">0.74</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<fn>
<p>XLGB, Xianling Gubao capsule; MD, Mean difference; CI, Confidence interval; VAS, Visual analogue scale.</p>
</fn>
<fn>
<p>*lumbar spine; <sup>#</sup>femoral neck.</p>
</fn>
</table-wrap-foot>
</table-wrap>
</sec>
<sec id="s3_5_2_2">
<title>3.5.2.2 BALP, Osteocalcin, and TRACP5b Levels</title>
<p>XLGB plus calcium carbonate and vitamin D<sub>3</sub> resulted in a higher level of BALP than that of calcium carbonate and vitamin D<sub>3</sub> (MD: 6.67 U/L, 95% CI: [1.88, 11.46]), but XLGB alone was no better than calcium carbonate plus vitamin D<sub>3</sub> (MD: 6.79 U/L, 95% CI: [-23.99, 37.57]).</p>
<p>A higher osteocalcin level was observed in XLGB group compared to the calcium carbonate and vitamin D<sub>3</sub> group. The combination of the two treatments showed no differences in osteocalcin than calcium carbonate and vitamin D<sub>3</sub> alone (<xref ref-type="table" rid="T2">
<bold>Table&#xa0;2</bold>
</xref>).</p>
<p>The results of the TRACP5b level were also conflicting. It was decreased in XLGB plus conventional treatment group compared to calcium carbonate, vitamin D<sub>3</sub>, plus calcitriol group but was higher in XLGB group compared to alendronate sodium plus calcium carbonate and vitamin D<sub>3</sub> (<xref ref-type="table" rid="T2">
<bold>Table&#xa0;2</bold>
</xref>).</p>
</sec>
</sec>
<sec id="s3_5_3">
<title>3.5.3 Pain, Muscle Fatigue, and Limited Mobility</title>
<p>No trials reported fatigue or limited mobility. VAS score (0-10 scale) was used by all studies to measure pain. XLGB plus conventional medications significantly relieved pain than conventional medications (MD: -1.55, 95% CI: [-2.47, -0.63]). Compared to alendronate sodium plus calcium carbonate and vitamin D<sub>3</sub>, XLGB alone did not show significant difference (MD: -0.12, 95% CI: [-0.82, 0.58]).</p>
</sec>
<sec id="s3_5_4">
<title>3.5.4 Number and Types of Adverse Events</title>
<p>There was no significant difference in the overall rate of any adverse events between XLGB (both used alone and as add-on treatment) and conventional medication. No severe adverse events were reported. The reported adverse events in XLGB group included one case with headache, one losing appetite, one red flush, five gastrointestinal reactions, and one constipation. (<xref ref-type="table" rid="T3">
<bold>Table&#xa0;3</bold>
</xref>).</p>
<table-wrap id="T3" position="float">
<label>Table&#xa0;3</label>
<caption>
<p>Risk ratio of any adverse events.</p>
</caption>
<table frame="hsides">
<thead>
<tr>
<th valign="top" align="left"/>
<th valign="top" align="center">Study ID</th>
<th valign="top" align="center">RR [95% CI]</th>
<th valign="top" align="center">
<italic>P</italic> value</th>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">
<bold>
<italic>Any adverse events</italic>
</bold>
</td>
<td valign="top" align="left"/>
<td valign="top" align="left"/>
<td valign="top" align="left"/>
</tr>
<tr>
<td valign="top" align="left">
<bold>XLGB plus conventional versus conventional treatment</bold>
</td>
<td valign="top" align="left">Feng et&#xa0;al. (<xref ref-type="bibr" rid="B19">19</xref>)</td>
<td valign="top" align="center">1.00 [0.22, 4.56]</td>
<td valign="top" align="center">1.00</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Liu and Bai (<xref ref-type="bibr" rid="B21">21</xref>)</td>
<td valign="top" align="center">0.61 [0.21, 1.78]</td>
<td valign="top" align="center">0.82</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Xu (<xref ref-type="bibr" rid="B23">23</xref>)</td>
<td valign="top" align="center">0.33 [0.04, 3.08]</td>
<td valign="top" align="center">0.76</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Zhu  (<xref ref-type="bibr" rid="B26">26</xref>)</td>
<td valign="top" align="center">1.19 [0.61, 2.33]</td>
<td valign="top" align="center">0.61</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Pooled result</td>
<td valign="top" align="center">0.90 [0.54, 1.50]</td>
<td valign="top" align="center">0.69</td>
</tr>
<tr>
<td valign="top" align="left">
<bold>XLGB versus conventional treatment</bold>
</td>
<td valign="top" align="left">You (<xref ref-type="bibr" rid="B24">24</xref>)</td>
<td valign="top" align="center">0.33 [0.01, 7.72]</td>
<td valign="top" align="center">0.82</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Zhang (<xref ref-type="bibr" rid="B25">25</xref>)</td>
<td valign="top" align="center">0.20 [0.01, 4.00]</td>
<td valign="top" align="center">0.58</td>
</tr>
<tr>
<td valign="top" align="left"/>
<td valign="top" align="left">Pooled result</td>
<td valign="top" align="center">0.25 [0.03, 2.16]</td>
<td valign="top" align="center">0.59</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<fn>
<p>XLGB, Xianling Gubao capsule; RR, Risk ratio; CI, Confidence interval.</p>
</fn>
</table-wrap-foot>
</table-wrap>
</sec>
</sec>
<sec id="s3_6">
<title>3.6 Summary of the Evidence</title>
<p>Due to the small number of included trials, for primary outcomes&#x2013;number of new fractures and quality of life&#x2013;the results were not pooled, and XLGB did not significantly reduce fractures but improved quality of life. <xref ref-type="table" rid="T2">
<bold>Table&#xa0;2</bold>
</xref> presents the full results of all secondary outcomes. For bone mineral density, the direct comparison of XLGB to conventional treatments had insufficient data, but the effect of XLGB as an add-on treatment was not significant. For calcium, phosphorus, and osteocalcin levels, pooled results showed no differences in the conventional treatment with or without XLGB. It was shown that XLGB significantly reduced TRACP5b levels and VAS score, indicating that it could inhibit bone deformation and relieve pain. <xref ref-type="table" rid="T3">
<bold>Table&#xa0;3</bold>
</xref> shows safety outcomes, where XLGB did not result in more adverse events when added to conventional medications or compared to them.</p>
</sec>
</sec>
<sec id="s4">
<title>4 Discussion</title>
<p>This systematic review and meta-analysis investigated the efficacy and safety of XLGB capsule in patients with primary osteoporosis. Overall, XLGB capsule is a safe treatment that improved quality of life and reduces pain as an add-on treatment compared to conventional medications, including calcium carbonate, vitamin D<sub>3</sub>, calcitriol, alendronate sodium, and carbocalcitonin, or the combination of some of them, and XLGB plus conventional treatments had a better effect than conventional medications alone. Its effects on new fractures, bone mineral density, serum calcium, and serum phosphorous levels were not significant. The results of BALP, osteocalcin, and TRACP5b levels were controversial, which could be a result of insufficient data.</p>
<p>XLGB capsule is a Chinese proprietary medicine made of six herbs, making its components difficult to be fully analyzed. Based on network pharmacology and molecular docking, the identified components were cryptotanshinone, chryseriol, kaempferol, anhydroicaritin, quercetin, and luteolin, which might aim at WnT, TNF, MAPK, PI3K-Akt pathways, relating to targets including STAT3, MAPK14, JUN, IL-2, and EGFR (<xref ref-type="bibr" rid="B10">10</xref>). Among the mentioned molecules, flavonoids such as quercetin, luteolin, icariin are widely believed to be the main components. Quercetin, kaempferol, and icariin inhibit RANKL activation and OPG/RANK/RANKL is important in osteoclastic differentiation (<xref ref-type="bibr" rid="B27">27</xref>, <xref ref-type="bibr" rid="B28">28</xref>). Luteolin stimulates osteoblast proliferation <italic>via</italic> Semaphorin 3A/Neuropilin-1/Plexin A1 pathway (<xref ref-type="bibr" rid="B29">29</xref>), and cryptotanshinone improves osteoblastic differentiation and reduces E<sub>2</sub> to inhibit bone absorption (<xref ref-type="bibr" rid="B30">30</xref>, <xref ref-type="bibr" rid="B31">31</xref>). Also, PI3K-Akt, TNF, and MAPK pathways have to do with osteoblastic differentiation, which promotes bone formation (<xref ref-type="bibr" rid="B32">32</xref>, <xref ref-type="bibr" rid="B33">33</xref>). Furthermore, by analyzing the absorbed components in rats&#x2019; serum after intragastric administration by HPLC-MS/MS analysis, Yao et&#xa0;al. confirmed 15 components including sweroside, epimedin B, isopsoralen, asperosaponin VI, and neobavaisoflavone, which came from four herbs - <italic>Longspur epimedium</italic>, <italic>Radix dipsaci</italic>, <italic>Rhizoma anemarrhenae</italic>, and <italic>Psoralea corylifolia</italic> - in the formula (<xref ref-type="bibr" rid="B34">34</xref>). Sweroside interacts with membrane estrogen receptor-&#x3b1; and p38 pathway to promote osteoblastic differentiation and mineralization (<xref ref-type="bibr" rid="B35">35</xref>). Epimedin B downregulates PI3K-Akt, MAPK, and PPAR signaling pathways, which are mentioned above to result in bone destruction in mice (<xref ref-type="bibr" rid="B36">36</xref>) and have estrogen-like effects (<xref ref-type="bibr" rid="B37">37</xref>). Some other compounds like isopsoralen, asperosaponin VI, and neobavaisoflavone have also been proved to either enhance osteogenesis or inhibit osteoclast activation (<xref ref-type="bibr" rid="B38">38</xref>&#x2013;<xref ref-type="bibr" rid="B42">42</xref>). Moreover, Wu found that the combination of six typical absorbed constituents of XLGB capsule could promote MC3T3-E1 cells&#x2019; differentiation and mineralization, which were not seen in any single-constituent groups, suggesting that there may be some unknown interactive mechanism of the combination (<xref ref-type="bibr" rid="B12">12</xref>). Moreover, Ren et&#xa0;al., found that XLGB capsule downregulated RANKL mRNA and upregulated the mRNA of osteoprotegerin, which combines with RANKL to reduce osteoclasts, finally inhibiting bone destruction (<xref ref-type="bibr" rid="B11">11</xref>). By analyzing and testing the components of XLGB capsule, we expect new phytomedicines which are more effective and with fewer adverse events.</p>
<p>One previous meta-analysis in Chinese reviewed the efficacy and safety of XLGB capsule in osteoporosis (<xref ref-type="bibr" rid="B43">43</xref>). Significant improvement in BMD, VAS, ALP, Ca, and BGP from XLGB was found, but it did not report quality of life or pain, and the difference in BMD was only slightly statistically significant that it may have limited clinical significance. Although the review specified primary osteoporosis, it included different osteoporosis. In addition, the review included randomized trials without any limitation to trial quality or treatment duration. Trials without proper randomization procedures may exaggerate the treatment effect. Compared to this review, our review has some strengths: 1) the first meta-analysis on this topic written in English and only included RCTs with adequate randomization, making the results more reliable; 2) our primary outcomes focusing on new fractures and quality of life, which are important to patients.</p>
<p>However, we do have some limitations: 1) the small number of included trials since we limited our inclusion criteria to those trials with moderate quality (Jadad score &#x2265;3); 2) lack of placebo-controlled, double-blind trial, and add-on trials make blinding to participants or investigators not possible; 3) although we included trials with an adequate generation of allocation sequence, no trial reported allocation concealment, which may cause performance bias in outcome measurement such as VAS and quality of life; 4) small sample sizes (60-180 patients) of included trials may be underpowered for the effect estimates; and 5) the conventional medications used in control groups were diverse, including different combinations, so it was difficult to do subgroup analysis to investigate their efficacy respectively.</p>
<p>Clinicians should be aware that current evidence for XLGB capsule is limited due to small trials or a high risk of bias. Therefore, we suggest more solid evidence before the recommendation of its clinical use. We encourage placebo-controlled, double-blind trials with long follow up to test its efficacy and safety for primary osteoporosis. Only when we are confident of its efficacy would we suggest add-on trials of XLGB to current medications, especially paying attention to clinical outcomes such as the number of new fractures and quality of life.</p>
</sec>
<sec id="s5">
<title>5 Conclusion</title>
<p>This systematic review shows that XLGB capsule appears to be safe and may be used alone or with conventional treatments to improve osteoporosis patients&#x2019; quality of life and relieve pain. However, current evidence for its efficacy is limited especially for long-term outcomes such as new fractures.</p>
</sec>
<sec id="s6" sec-type="data-availability">
<title>Data Availability Statement</title>
<p>The original contributions presented in the study are included in the article/supplementary material. Further inquiries can be directed to the corresponding author.</p>
</sec>
<sec id="s7" sec-type="author-contributions">
<title>Author Contributions</title>
<p>B-RC and J-PL conceived this review topic. B-RC, R-YW, and J-PL drafted the study protocol. B-RC and R-YW did database searches, removed duplications, screened titles, abstracts, and full texts of included papers. K-XJ and Q-YG assessed the risk of bias and extracted data. Outcome data were extracted by M-YY and S-SL, checked, and discussed with S-HQ. Data analyses were done by B-RC and discussed with all other members. Finally, the manuscript was revised by J-PL. All authors contributed to the article and approved the submitted version.</p>
</sec>
<sec id="s8" sec-type="funding-information">
<title>Funding</title>
<p>This review was supported by the National Natural Science Foundation project (No. 81830115), and J-PL was partially supported by the NCCIH grant (AT001293 with sub-award No. 020468C). The funders have no role in the review design, conduct, interpretation, and writing of the report.</p>
</sec>
<sec id="s9" sec-type="COI-statement">
<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 id="s10" sec-type="disclaimer">
<title>Publisher&#x2019;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>
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<person-group person-group-type="author">
<name>
<surname>Weng</surname> <given-names>Z-B</given-names>
</name>
<name>
<surname>Gao</surname> <given-names>Q-Q</given-names>
</name>
<name>
<surname>Wang</surname> <given-names>F</given-names>
</name>
<name>
<surname>Zhao</surname> <given-names>G-H</given-names>
</name>
<name>
<surname>Yin</surname> <given-names>F-Z</given-names>
</name>
<name>
<surname>Cai</surname> <given-names>B-C</given-names>
</name>
<etal/>
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</citation>
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</name>
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<surname>Song</surname> <given-names>S</given-names>
</name>
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</name>
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<surname>Liao</surname> <given-names>X</given-names>
</name>
<name>
<surname>Zhang</surname> <given-names>Y-L</given-names>
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</ref>
</ref-list>
<app-group>
<app id="app1">
<title>Appendix 1</title>
<p>Search strategy for MEDLINE (<italic>via</italic> PubMed):</p>
<list list-type="order">
<list-item>
<p>bone diseases, metabolic[mh]</p>
</list-item>
<list-item>
<p>osteoporosis[mh]</p>
</list-item>
<list-item>
<p>bone density[all fields]</p>
</list-item>
<list-item>
<p>bone loss[all fields]</p>
</list-item>
<list-item>
<p>osteomalacia[tw]</p>
</list-item>
<list-item>
<p>osteodystrophy[tw]</p>
</list-item>
<list-item>
<p>osteopenia[tw]</p>
</list-item>
<list-item>
<p>bone mass[tw]</p>
</list-item>
<list-item>
<p>densitometry[mh]</p>
</list-item>
<list-item>
<p>fractures, bone[mh]</p>
</list-item>
<list-item>
<p>#1 OR #2 OR #3 OR #4 OR #5 OR #6 OR #7 OR #8 OR #9 OR #10</p>
</list-item>
<list-item>
<p>xianlinggubao[tw]</p>
</list-item>
<list-item>
<p>xianling gubao[tw]</p>
</list-item>
<list-item>
<p>XLGB[tw]</p>
</list-item>
<list-item>
<p>xian-ling-gu-bao[tw]</p>
</list-item>
<list-item>
<p>drugs, chinese herbal[mh]</p>
</list-item>
<list-item>
<p>herbal medicine[mh]</p>
</list-item>
<list-item>
<p>plants, medicinal[mh]</p>
</list-item>
<list-item>
<p>medicine, traditional[mh]</p>
</list-item>
<list-item>
<p>#12 OR #13 OR #14 OR #15 OR #16 OR #17 OR #18 OR #19</p>
</list-item>
<list-item>
<p>randomized controlled trial[pt]</p>
</list-item>
<list-item>
<p>controlled clinical trial [pt]</p>
</list-item>
<list-item>
<p>randomized [tiab]</p>
</list-item>
<list-item>
<p>placebo [tiab]</p>
</list-item>
<list-item>
<p>clinical trials as topic [mesh:noexp]</p>
</list-item>
<list-item>
<p>randomly [tiab]</p>
</list-item>
<list-item>
<p>trial [ti]</p>
</list-item>
<list-item>
<p>#21 OR #22 OR #23 OR #24 OR #25 OR #26 OR #27</p>
</list-item>
<list-item>
<p>animals [mh] NOT humans [mh]</p>
</list-item>
<list-item>
<p>#28 NOT #29</p>
</list-item>
<list-item>
<p>#11 AND #20 AND #30</p>
</list-item>
</list>
</app>
</app-group>
</back>
</article>