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<front>
<journal-meta>
<journal-id journal-id-type="publisher-id">Front. Med.</journal-id>
<journal-title>Frontiers in Medicine</journal-title>
<abbrev-journal-title abbrev-type="pubmed">Front. Med.</abbrev-journal-title>
<issn pub-type="epub">2296-858X</issn>
<publisher>
<publisher-name>Frontiers Media S.A.</publisher-name>
</publisher>
</journal-meta>
<article-meta>
<article-id pub-id-type="doi">10.3389/fmed.2023.1088507</article-id>
<article-categories>
<subj-group subj-group-type="heading">
<subject>Medicine</subject>
<subj-group>
<subject>Review</subject>
</subj-group>
</subj-group>
</article-categories>
<title-group>
<article-title><italic>Trichinella</italic> infections in animals and humans of Iran and Turkey</article-title>
</title-group>
<contrib-group>
<contrib contrib-type="author">
<name><surname>Borhani</surname> <given-names>Mehdi</given-names></name>
<xref ref-type="aff" rid="aff1"><sup>1</sup></xref>
<xref ref-type="author-notes" rid="fn002"><sup>&#x2020;</sup></xref>
<uri xlink:href="http://loop.frontiersin.org/people/1769753/overview"/>
</contrib>
<contrib contrib-type="author">
<name><surname>Fathi</surname> <given-names>Saeid</given-names></name>
<xref ref-type="aff" rid="aff2"><sup>2</sup></xref>
<xref ref-type="author-notes" rid="fn002"><sup>&#x2020;</sup></xref>
<uri xlink:href="http://loop.frontiersin.org/people/1920890/overview"/>
</contrib>
<contrib contrib-type="author">
<name><surname>Harandi</surname> <given-names>Majid Fasihi</given-names></name>
<xref ref-type="aff" rid="aff3"><sup>3</sup></xref>
<uri xlink:href="http://loop.frontiersin.org/people/1209853/overview"/>
</contrib>
<contrib contrib-type="author">
<name><surname>Simsek</surname> <given-names>Sami</given-names></name>
<xref ref-type="aff" rid="aff4"><sup>4</sup></xref>
<uri xlink:href="http://loop.frontiersin.org/people/85394/overview"/>
</contrib>
<contrib contrib-type="author">
<name><surname>Ahmed</surname> <given-names>Haroon</given-names></name>
<xref ref-type="aff" rid="aff5"><sup>5</sup></xref>
</contrib>
<contrib contrib-type="author">
<name><surname>Wu</surname> <given-names>Xiaoxia</given-names></name>
<xref ref-type="aff" rid="aff1"><sup>1</sup></xref>
</contrib>
<contrib contrib-type="author" corresp="yes">
<name><surname>Liu</surname> <given-names>Mingyuan</given-names></name>
<xref ref-type="aff" rid="aff1"><sup>1</sup></xref>
<xref ref-type="corresp" rid="c001"><sup>&#x002A;</sup></xref>
<uri xlink:href="http://loop.frontiersin.org/people/17165/overview"/>
</contrib>
</contrib-group>
<aff id="aff1"><sup>1</sup><institution>State Key Laboratory for Zoonotic Diseases, Key Laboratory of Zoonosis Research, Ministry of Education, Institute of Zoonosis, College of Veterinary Medicine, Jilin University</institution>, <addr-line>Changchun</addr-line>, <country>China</country></aff>
<aff id="aff2"><sup>2</sup><institution>Department of Parasite Vaccine Research and Production, Razi Vaccine and Serum Research Institute</institution>, <addr-line>Karaj</addr-line>, <country>Iran</country></aff>
<aff id="aff3"><sup>3</sup><institution>Research Center for Hydatid Disease in Iran, Kerman University of Medical Sciences</institution>, <addr-line>Kerman</addr-line>, <country>Iran</country></aff>
<aff id="aff4"><sup>4</sup><institution>Department of Parasitology, Faculty of Veterinary Medicine, University of Firat</institution>, <addr-line>Elazi&#x011F;</addr-line>, <country>T&#x00FC;rkiye</country></aff>
<aff id="aff5"><sup>5</sup><institution>Department of Biosciences, COMSATS University Islamabad (CUI)</institution>, <addr-line>Islamabad</addr-line>, <country>Pakistan</country></aff>
<author-notes>
<fn fn-type="edited-by"><p>Edited by: Xiaogang Xiang, Shanghai Jiao Tong University, China</p></fn>
<fn fn-type="edited-by"><p>Reviewed by: Wei Cong, Shandong University, China; Dong-Hui Zhou, Fujian Agriculture and Forestry University, China</p></fn>
<corresp id="c001">&#x002A;Correspondence: Mingyuan Liu, <email>liumy36@163.com</email></corresp>
<fn fn-type="equal" id="fn002"><p><sup>&#x2020;</sup>These authors have contributed equally to this work</p></fn>
<fn fn-type="other" id="fn004"><p>This article was submitted to Infectious Diseases: Pathogenesis and Therapy, a section of the journal Frontiers in Medicine</p></fn>
</author-notes>
<pub-date pub-type="epub">
<day>02</day>
<month>02</month>
<year>2023</year>
</pub-date>
<pub-date pub-type="collection">
<year>2023</year>
</pub-date>
<volume>10</volume>
<elocation-id>1088507</elocation-id>
<history>
<date date-type="received">
<day>03</day>
<month>11</month>
<year>2022</year>
</date>
<date date-type="accepted">
<day>16</day>
<month>01</month>
<year>2023</year>
</date>
</history>
<permissions>
<copyright-statement>Copyright &#x00A9; 2023 Borhani, Fathi, Harandi, Simsek, Ahmed, Wu and Liu.</copyright-statement>
<copyright-year>2023</copyright-year>
<copyright-holder>Borhani, Fathi, Harandi, Simsek, Ahmed, Wu 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>
<p>Trichinellosis is considered as a cosmopolitan zoonosis caused by different species of the small nematodes of the genus <italic>Trichinella</italic>. The present study aimed to provide a broad review for exploring <italic>Trichinella</italic> sp. infection in humans and animals of Iran and Turkey. Additionally, we aimed to explore bases for trichinellosis prevention and control. Two reports of human trichinellosis following the consumption of meat of wild boar are available in the northern Iran. A large outbreak of trichinellosis and some other sporadic cases are reported mainly as a result of eating wild boar or pork meat from Turkey, where <italic>T. britovi</italic> is present. Field studies show that <italic>Trichinella</italic> sp. infections occur in wild carnivores of Iran, particularly the golden jackal (<italic>Canis aureus</italic>) as the most frequently infected species. <italic>T. britovi</italic> has been reported to be present elsewhere in Iran in wild mammals, where wild boar is the main source of <italic>Trichinella</italic> sp. infection. In Turkey, <italic>Trichinella</italic> spp. has been reported from animals including both domesticated and wild pigs and gray wolf (<italic>Canis lupus</italic>). However, current data on the distribution of <italic>Trichinella</italic> taxa are fragmentary in the Anatolian region.</p>
</abstract>
<kwd-group>
<kwd>trichinellosis</kwd>
<kwd><italic>Trichinella</italic></kwd>
<kwd>epidemiology</kwd>
<kwd>Turkey</kwd>
<kwd>Iran</kwd>
</kwd-group>
<counts>
<fig-count count="3"/>
<table-count count="2"/>
<equation-count count="0"/>
<ref-count count="72"/>
<page-count count="9"/>
<word-count count="7200"/>
</counts>
</article-meta>
</front>
<body>
<sec id="S1" sec-type="intro">
<title>Introduction</title>
<p>Trichinellosis (formerly trichinosis) is a zoonotic disease caused by the consumption of meat and meat derived products infected by nematode larvae of the genus <italic>Trichinella</italic>. This disease represents an important health burden for humans (<xref ref-type="bibr" rid="B1">1</xref>). The control of disease in domesticates susceptible animals (e.g., pigs and horses) and game (mainly mammals) implies further economic burdens (<xref ref-type="bibr" rid="B2">2</xref>). Carnivores and domesticated and wild swine are the most important natural reservoir hosts of these nematodes (<xref ref-type="bibr" rid="B3">3</xref>).</p>
<p>From the 19th century onward, the sylvatic cycle of <italic>Trichinella</italic> spp. has been documented in all the continents with the exception of Antarctica (<xref ref-type="bibr" rid="B4">4</xref>). In the last 20 years, epidemiological data of <italic>Trichinella</italic> spp. infections in animals/and or human are reported from 95 (48.5%) countries worldwide including the wild cycle (in 75 countries; 38.3%), the domestic cycle (in 32 countries; 16.3%), and human infections (in 47 countries; 23.9%). However, epidemiological information is still lacking in many of countries or dates back to the last century (<xref ref-type="bibr" rid="B4">4</xref>).</p>
<p>An overall annual trichinellosis incidence rate of 469.2&#x2013;985.3 cases per billion persons per year, and a global mortality rate of 0.3 to 0.8 per billion persons per year, have been estimate for trichinellosis with a global disability-adjusted life years (DALY) of 523 in 2010 (<xref ref-type="bibr" rid="B5">5</xref>). Most <italic>Trichinella</italic> sp. infections occur in the wildlife, the spillover of these parasites from wildlife to domesticated animals represents a challenge for disease control in endemic areas. There were rare reports of human trichinellosis in Iran and Turkey. <italic>Trichinella</italic> sp. has been reported from wild life (carnivores and wild boars) of the Caspian region, Isfahan, Ardabil, Khuzestan, Khorasan Razavi, and Bandar Abbas in the north, central, northwest, southwest, north-east and of south of Iran. <italic>T. britovi</italic> is circulated among wild life of Iran (<xref ref-type="bibr" rid="B6">6</xref>&#x2013;<xref ref-type="bibr" rid="B9">9</xref>). A large outbreak of trichinellosis and some other sporadic cases are recorded from Turkey, where <italic>T. britovi</italic> was identified in meat balls and human biopsies as well as gray wolf (<xref ref-type="bibr" rid="B10">10</xref>, <xref ref-type="bibr" rid="B11">11</xref>). <italic>Trichinella</italic> infection had previously been documented in both domestic and wild pigs (<xref ref-type="bibr" rid="B12">12</xref>). The two neighboring countries of Turkey, and Iran have historically shared socioeconomic, linguistic, and ethnic traits.</p>
<p>The aim of this review was to describe the epidemiological picture of <italic>Trichinella</italic> spp. infections in animals and humans of Iran and Turkey (<xref ref-type="fig" rid="F1">Figure 1</xref>). In-depth understanding of the epidemiology of trichinellosis can be valuable for developing control programs in a cost-effective way in order to reduce this transmission of the parasite.</p>
<fig id="F1" position="float">
<label>FIGURE 1</label>
<caption><p>Geographical districts of Iran and Turkey.</p></caption>
<graphic mimetype="image" mime-subtype="tiff" xlink:href="fmed-10-1088507-g001.tif"/>
</fig>
</sec>
<sec id="S2">
<title>Human trichinellosis in Iran</title>
<p>Since the vast majority of the population of Iran and Turkey are Muslim, pig farming and consuming pork meat is rare in Muslims countries because of Islamic law. A human infection has been reported in 1966 in the northern Iran based on the clinical symptoms, seropositivity and a history of wild boar meat consumption (<xref ref-type="bibr" rid="B13">13</xref>). Almost, half a century later, an outbreak was documented by serology in two household members of a Tehrani family following the consumption of meat of a wild boar hunted in the Javaher&#x2013;Dasht forest of Siahkal, Gilan province in 2007 (<xref ref-type="bibr" rid="B14">14</xref>). Human trichinellosis has not yet been identified in Iran; however, based on the sylvatic cycle, it is likely that <italic>T. britovi</italic> could be the causative agent of the human infection in the region (<xref ref-type="bibr" rid="B6">6</xref>, <xref ref-type="bibr" rid="B15">15</xref>).</p>
<p>In Mazandaran province, anti-<italic>Trichinella</italic> IgG were reported in eight males out of the 364 at high-risk persons (2.2%; CI 95%, 1.9&#x2013;2.4) who had consumed wild boar meat at least once in a year. The seropositivity was linked to occupation (hunters; OR, 13.5; 95% CI, 3.1&#x2013;59.4) and frequency of wild boar meat consumption (more than 7 times; OR, 17.5; 95% CI, 3.2&#x2013;93.6), indicating great exposer of male hunters and their friends and relatives to infected meat. Seropositivity was found to increase by age and to peak in 41&#x2013;60-year-olds, but not at a significant level (<xref ref-type="bibr" rid="B16">16</xref>).</p>
<p>A study detected anti-<italic>Trichinella</italic> IgG by ELISA in five (2.6%) out of 189 persons suspected to be wild boar meat consumers of the Golestan Province, northern Iran (<xref ref-type="bibr" rid="B17">17</xref>). Serum samples of 24 persons of Bojnord, the capital city of northern Khorasan, tested negative for anti-<italic>Trichinella</italic> IgG by ELISA, while a serum sample of a person of 16 tested of Behshahr, a town of the Mazandaran province, tested positive (<xref ref-type="bibr" rid="B17">17</xref>). Three out of five seropositive persons were &#x2265;50 year old and four out of five were males (<xref ref-type="bibr" rid="B17">17</xref>).</p>
</sec>
<sec id="S3">
<title><italic>Trichinella</italic> spp. infection in animals of Iran</title>
<p>Until the 1990s, <italic>Trichinella spiralis</italic> was considered the only species in the genus and only in the last 30 years the multispecies concept has been affirmed (<xref ref-type="bibr" rid="B4">4</xref>). It follows that <italic>T. spiralis</italic> has been reported in animals from all continents in the past (<xref ref-type="fig" rid="F2">Figure 2</xref>).</p>
<fig id="F2" position="float">
<label>FIGURE 2</label>
<caption><p>The region of the detection of <italic>Trichinella</italic> infected human and animals (for more details, please refer to the main text).</p></caption>
<graphic mimetype="image" mime-subtype="tiff" xlink:href="fmed-10-1088507-g002.tif"/>
</fig>
<sec id="S3.SS1">
<title>Wild swine</title>
<p>As shown in <xref ref-type="table" rid="T1">Table 1</xref>, there are epidemiological studies on <italic>Trichinella</italic> sp. using different techniques. In Iran, this species was reported in two out of 4,950 carcasses of wild boar hunted in Mazandaran and Guilan provinces from 1961 to 1967 (<xref ref-type="bibr" rid="B18">18</xref>). Mobedi et al. (<xref ref-type="bibr" rid="B19">19</xref>) reported a low prevalence in wild boar (0.02%) and brown bears (6.25%) of the Caspian region hunted from 1967 to 1971. In 1978, <italic>Trichinella</italic> sp. larvae have been collected from wild boar (25.0%) and brown bears (6.2%) (<xref ref-type="bibr" rid="B20">20</xref>).</p>
<table-wrap position="float" id="T1">
<label>TABLE 1</label>
<caption><p>Epidemiological investigations on <italic>Trichinella</italic> sp. in human and animals of Iran.</p></caption>
<table cellspacing="5" cellpadding="5" frame="box" rules="all">
<thead>
<tr>
<td valign="top" align="left" style="color:#ffffff;background-color: #7f8080;">Year of study/Region</td>
<td valign="top" align="left" style="color:#ffffff;background-color: #7f8080;">Detection tests</td>
<td valign="top" align="left" style="color:#ffffff;background-color: #7f8080;">Hosts (positive/tested)</td>
<td valign="top" align="center" style="color:#ffffff;background-color: #7f8080;">References</td>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">1961&#x2013;1967/NORTHERN AND CENTRAL</td>
<td valign="top" align="left">Trichinoscopy and artificial digestion</td>
<td valign="top" align="left">4,950 carcasses of wild boars (2) and 21 dogs (0)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B18">18</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">1967&#x2013;1971/CASPIAN REGION</td>
<td valign="top" align="left">Trichinoscopy and artificial digestion</td>
<td valign="top" align="left">21,143 Wild boars (5),16 Brown bears (1), 63 Golden jackals (38), 3 Jungle cats (2), 3 Other carnivores (0), 30 Rodents (0), 20 Shrews (0)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B19">19</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">1973/CENTRAL</td>
<td valign="top" align="left">Trichinoscopy and artificial digestion</td>
<td valign="top" align="left">10 Stray dogs (2), 18 Jackals (10), 18 Red foxes (2), 1 Hyena (1), 43 <italic>Mus musculus</italic> (0), 9 <italic>Cricetulus migratorius</italic> (0), 29 <italic>Meriones persicus</italic> (1), 15 <italic>Nesokia Indica</italic> (0), 13 <italic>Meriones crassus</italic> (0), 2 <italic>Apodemus sylvaticus</italic> (0), 11 <italic>Rhombomys opimus</italic> (0)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B23">23</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">1969&#x2013;1976/NORTHEASTERN</td>
<td valign="top" align="left">Trichinoscopy and artificial digestion</td>
<td valign="top" align="left">16 Golden jackals (8), 10 Red fox (3), 13 Hedgehog (0), 13 Shrews (0), 7 Hares (0), 21 Pika (0), 56 <italic>Asiatica jerboa</italic> (0), 4 Dormice (0), 160 House mice (0), 206 Wood mice (0), 10 Indian scaly tailed murine rat (0), 7 Rat (0), 108 Hamster (0), 69 Voles (0), 126 Gerbil (0)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B24">24</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">1969&#x2013;1976/SOUTH</td>
<td valign="top" align="left">Trichinoscopy and artificial digestion</td>
<td valign="top" align="left">17 Fox (4), 12 Stray dog (4), 3 Golden jackals (3), 140 <italic>Gerbillus nanus</italic> (0), 33 <italic>Apodemus demitiatus</italic> (0), 13 <italic>Tatera indica</italic> (0), 8 <italic>Nesokia indica</italic> (0), 3 <italic>Mus musculus</italic> (0), 2 <italic>Rattus rattus</italic> (0), 2 <italic>Calomyscus bailwardi</italic> (0), 2 <italic>Meriones lybicus</italic> (0), 2 <italic>Meriones persicus</italic> (0)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B25">25</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">1987/NORTH AND SOUTH-WEST</td>
<td valign="top" align="left">Trichinoscopy and artificial digestion</td>
<td valign="top" align="left">1 Jackal (1), 1 <italic>Canis aureus</italic> (1)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B27">27</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">2007/NORTHERN</td>
<td valign="top" align="left">Artificial digestion of muscle, and molecular methods</td>
<td valign="top" align="left">1 Wild boar (1)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B21">21</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">2014&#x2013;2017/NORTHERN</td>
<td valign="top" align="left">Artificial digestion of muscles, serological and molecular methods</td>
<td valign="top" align="left">79 Wild boars (3), 364 Human at-risk individuals (8)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B16">16</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">2009&#x2013;2010/SOUTH-WEST</td>
<td valign="top" align="left">Artificial digestion of muscles, and molecular methods</td>
<td valign="top" align="left">14 Dogs (0), 18 Jackals (2)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B7">7</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">2013/SOUTHWESTERN</td>
<td valign="top" align="left">digestion of muscle</td>
<td valign="top" align="left">25 Wild boars (0)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B43">43</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">2009/NORTH WESTERN</td>
<td valign="top" align="left">Trichinoscopy, artificial digestion of muscle, and molecular methods</td>
<td valign="top" align="left">1 Leopard (1)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B9">9</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">2017/SOUTHWESTERN</td>
<td valign="top" align="left">digestion of muscle</td>
<td valign="top" align="left">52 Rodents (0)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B70">70</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">2012&#x2013;2014/NORTHERN</td>
<td valign="top" align="left">digestion of muscle</td>
<td valign="top" align="left">21 Wild boars (0)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B71">71</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">2016&#x2013;2017/NORTHEASTERN</td>
<td valign="top" align="left">Trichinoscopy, digestion of muscle, and molecular methods</td>
<td valign="top" align="left">295 Stray dogs (5), 1 Red fox (0), 12 Golden jackals (1), 1 Wild boar (0)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B8">8</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">2010&#x2013;2011/NORTHEAST</td>
<td valign="top" align="left">digestion of muscle, Histopathological examination and molecular methods</td>
<td valign="top" align="left">120 Stray dogs (3), 26 Wild boars (0), 25 Rodents (0), 2 Foxes (0), 2 Hyena (0)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B6">6</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">2015/NORTHERN</td>
<td valign="top" align="left">digestion of muscle, and molecular methods</td>
<td valign="top" align="left">35 Wild boars (2)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B15">15</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">2020/NORTHEAST</td>
<td valign="top" align="left">Serology</td>
<td valign="top" align="left">364 Human individuals (5)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B17">17</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">2000/SOUTHWESTERN</td>
<td valign="top" align="left">digestion of muscle</td>
<td valign="top" align="left">10 <italic>Herpestes auropunctatus</italic> (3)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B31">31</xref>)</td>
</tr>
</tbody>
</table></table-wrap>
<p>In 2006, <italic>Trichinella</italic> sp. larvae were found in two of 60 wild boars of the Khuzestan province (<xref ref-type="bibr" rid="B20">20</xref>).</p>
<p><italic>Trichinella</italic> sp. larvae collected from a wild boar of the Gilan province (northern Iran), were erroneously identified as belonging to the <italic>Trichinella murrelli</italic>, a species of North America (<xref ref-type="bibr" rid="B21">21</xref>). Subsequently, a more in-depth molecular study showed that the larvae belonged to <italic>T. britovi</italic> (<xref ref-type="bibr" rid="B22">22</xref>).</p>
<p>No <italic>Trichinella</italic> sp. larvae were detected in 26 wild boars of Khorasan Razavi Province (northeast of Iran) by artificial digestion (<xref ref-type="bibr" rid="B6">6</xref>).</p>
<p><italic>Trichinella britovi</italic> larvae were detected in two (5.7%) of the 35 wild boars in Amol County from 2015 to 2016 (<xref ref-type="bibr" rid="B15">15</xref>) and in three (3.7%) of 79 wild boars of Mazandaran Province, northern Iran during 2014&#x2013;2015 (<xref ref-type="bibr" rid="B16">16</xref>). The five animals harbored from 0.05 to 9 larvae per g of muscle tissue [Rostami et al. (<xref ref-type="bibr" rid="B15">15</xref>, <xref ref-type="bibr" rid="B16">16</xref>)].</p>
</sec>
<sec id="S3.SS2">
<title>Carnivores <italic>(jackal, fox, wolf, dog, felids, mongooses, badger)</italic></title>
<p>As summarized in <xref ref-type="table" rid="T1">Table 1</xref>, different studies have reported <italic>Trichinella</italic> spp. in carnivores. In 1972, <italic>Trichinella</italic> sp. larvae were detected in 38 (60.3%) of 63 golden jackals (<italic>Canis aureus</italic>) and two of three jungle cats (<italic>Felis chaus</italic>) of the Nour forest near Amol and Hashtpar, Caspian region, northern Iran (<xref ref-type="bibr" rid="B23">23</xref>). In 1973, <italic>Trichinella</italic> sp. larvae have been detected in two stray dogs, ten jackals, two red foxes (<italic>Vulpes vulpes</italic>), and one hyena (<italic>Hyaena hyaena</italic>) of Isfahan by Sadighian et al. (<xref ref-type="bibr" rid="B23">23</xref>). In 1967 and 1976, <italic>Trichinella</italic> sp. larvae was detected by trichinoscopy and artificial digestion of muscles in 8 (50%) out of 16 golden jackals and in 3 (30%) out of 10 red foxes collected in the eastern part of the Caspian region and northeastern Iran including Gilan, Mazandaran, Golestan, North Khorasan and Khorasan Razavi provinces (<xref ref-type="bibr" rid="B24">24</xref>). From 1967 to 1971, a study in the Caspian region, did not detect any <italic>Trichinella</italic> sp. larva in badger (<italic>Meles meles</italic>) (<xref ref-type="bibr" rid="B19">19</xref>).</p>
<p>Using trichinoscopy, Hamidi and Mobedi (<xref ref-type="bibr" rid="B25">25</xref>) detected <italic>Trichinella</italic> sp. larvae, identified as <italic>T. spiralis</italic> at that time, in 4 out of 17 red foxes, 4 out of 12 stray dogs and in three golden jackals of the Bandar Abbas region, Hormozgan Province, southern Iran.</p>
<p>In 1978, <italic>Trichinella</italic> sp. larvae have been detected in 55.7% of golden jackals (55.7%), red foxes (8.3%), hyenas (2 of 2), and stray dogs (4.2%) (<xref ref-type="bibr" rid="B26">26</xref>). In 1987, <italic>Trichinella</italic> sp. larvae from golden jackals of the Caspian Sea and Khuzestan regions, southwest of the country were identified at the species level as <italic>T. spiralis</italic> and <italic>Trichinella nelsoni</italic> (<xref ref-type="bibr" rid="B27">27</xref>), today <italic>T. britovi</italic> (<xref ref-type="bibr" rid="B28">28</xref>) by cross-breeding experiments in laboratory mice (<xref ref-type="bibr" rid="B29">29</xref>). The Khuzestan isolate (formerly <italic>T. nelsoni</italic>) showed a low infectivity to albino rats, whereas the Caspian isolate was found to be highly infective for albino rats and wild pigs (<xref ref-type="bibr" rid="B27">27</xref>) suggesting that it was a true <italic>T. spiralis</italic> isolate. In 2000, <italic>Trichinella</italic> sp. larvae (<italic>T. spiralis</italic> at that time) were detected in one (1.4%) of 75 stray dogs of Isfahan (<xref ref-type="bibr" rid="B30">30</xref>).</p>
<p>In 2000, <italic>Trichinella</italic> sp. larvae were detected in three of ten mongooses (<italic>Herpestes auropunctatus</italic>), of the Khuzestan province, southwest Iran. These <italic>Trichinella</italic> sp. larvae (named <italic>T. nelsoni</italic> at that time) showed a higher larval burden in laboratory mice than in laboratory rats, suggesting to be <italic>T. britovi</italic> (<xref ref-type="bibr" rid="B31">31</xref>). In 2006 in the same province, <italic>Trichinella</italic> sp. larvae were detected in two out of ten mongooses and in a wild cat (<xref ref-type="bibr" rid="B20">20</xref>).</p>
<p>Mowlavi et al. (<xref ref-type="bibr" rid="B9">9</xref>) identified <italic>T. britovi</italic> in a leopard (<italic>Panthera pardus saxicolor</italic>) hunted in Germi County, Ardabil Province, north-western Iran.</p>
<p>A study by Borji et al. (<xref ref-type="bibr" rid="B6">6</xref>) documented by artificial digestion, <italic>Trichinella</italic> sp. larvae, identified as <italic>T. britovi</italic> by multiplex PCR, in three (2.5%) of 120 stray dogs of Khorasan Razavi Province, north-east Iran.</p>
<p>During the period 2009&#x2013;2010, Mirjalali et al. (<xref ref-type="bibr" rid="B7">7</xref>) investigated muscle samples of 14 stray dogs and 18 golden jackals of the Khuzestan Province, south-west Iran, where <italic>T. britovi</italic> had been detected 30 years earlier. The circulation of <italic>T. britovi</italic> was confirmed in two golden jackals [Mirjalali et al. (<xref ref-type="bibr" rid="B7">7</xref>)]. Punctiform deletions or substitutions in the 5S and ITS2 sequences were detected in these two <italic>T. britovi</italic> isolates (<xref ref-type="bibr" rid="B22">22</xref>).</p>
<p>Shamsian et al. (<xref ref-type="bibr" rid="B8">8</xref>) investigated 295 stray dogs, 12 golden jackals, one red fox and one wild boar of the Khorasan Razavi Province, north-eastern Iran, in the period 2016&#x2013;2017. <italic>T. britovi</italic> larvae were detected in 5 (1.7%) stray dogs from Mashhad city and in one (8.3%) golden jackal from the surroundings of Sabzevar city.</p>
</sec>
<sec id="S3.SS3">
<title>Insectivores, rodents and mall mole-like mammals</title>
<p>From 1967 to 1971, a study in the Caspian region, did not detect any <italic>Trichinella</italic> spp. larvae in rodents (house mouse, <italic>Mus musculus</italic>; wood mouse, <italic>Apodemus sylvaticus</italic>; black rat, <italic>Rattus rattus</italic> and shrews (<italic>Crocidura</italic> sp.) (<xref ref-type="bibr" rid="B19">19</xref>). An old study reported the presence of <italic>T. spiralis</italic> in a Persian jird (<italic>Meriones persicus</italic>) of Isfahan in central part of Iran (<xref ref-type="bibr" rid="B23">23</xref>).</p>
<p>From 1967 to 1976, no <italic>Trichinella</italic> spp. larvae were detected by trichinoscopy, and artificial digestion, in different small mammals including 13 hedgehogs (<italic>Erinaceus europaeus</italic>), 13 shrews (<italic>Crocidura lucodon</italic>); 28 lagomorpha: 7 hares (<italic>Lepus capensis</italic>) and 21 pika (<italic>Ochotona rufescens</italic>); and 746 rodents: 56 asiatica jerboas (<italic>Allactaga elater</italic>), 4 dormice (<italic>Gils glis</italic>), 160 house mice (<italic>M. musculus</italic>), 206 wood mice (<italic>A. sylvaticus</italic>), 10 Indian scaly tailed murine rats (<italic>Nesokia indica</italic>), 7 rats (<italic>Rattus ratoides</italic>), 108 hamsters (<italic>Cricetulus migratorius</italic> and <italic>Calomyscus balewadi</italic>), 69 voles (<italic>Microtus transcapicus</italic>, <italic>M. Socialis, M. arvalis</italic>, and <italic>M. nivalis</italic>) and 126 gerbils <italic>(Meriones persicus, M. Crassus</italic>, and <italic>Rhombomys opimus</italic>) collected from Gilan, Mazandaran, Golestan, North Khorasan and Khorasan Razavi provinces, where <italic>Trichinella</italic> sp. larvae had been detected in golden jackals and red foxes (<xref ref-type="bibr" rid="B24">24</xref>). A study by Hamidi and Mobedi (<xref ref-type="bibr" rid="B25">25</xref>) investigated 204 rodents using trichinoscopy and artificial digestion from the Bandar Abbas area of Hormozgan province, southern Iran, but no <italic>Trichinella</italic> spp. larvae were found.</p>
<p>Borji et al. (<xref ref-type="bibr" rid="B6">6</xref>) in Khorasan Razavi province, where <italic>T. britovi</italic> has been detected in stray dogs, no <italic>Trichinella</italic> sp. larvae were found in 25 rodents (species unknown).</p>
</sec>
</sec>
<sec id="S4">
<title>Human trichinellosis in Turkey</title>
<p>In Turkey, pork intake is uncommon, as most of population are Muslim, and consequently, trichinellosis is thought to be extremely rare. The epidemiological studies and detected regions of human trichinellosis in Turkey have been summarized in <xref ref-type="table" rid="T2">Table 2</xref> and <xref ref-type="fig" rid="F2">Figure 2</xref>.</p>
<table-wrap position="float" id="T2">
<label>TABLE 2</label>
<caption><p>Investigations on <italic>Trichinella</italic> sp. in human and animals of Turkey.</p></caption>
<table cellspacing="5" cellpadding="5" frame="box" rules="all">
<thead>
<tr>
<td valign="top" align="left" style="color:#ffffff;background-color: #7f8080;">Year of study/Region</td>
<td valign="top" align="left" style="color:#ffffff;background-color: #7f8080;">Technique used</td>
<td valign="top" align="center" style="color:#ffffff;background-color: #7f8080;">Sample size (positive)</td>
<td valign="top" align="center" style="color:#ffffff;background-color: #7f8080;">References</td>
</tr>
</thead>
<tbody>
<tr>
<td valign="top" align="left">2005/AEGEAN REGION</td>
<td valign="top" align="left">Serology</td>
<td valign="top" align="center">76 Human (47; 62%)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B34">34</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">2021/INNER ANATOLIAN REGION</td>
<td valign="top" align="left">Multiplex PCR and DNA sequencing</td>
<td valign="top" align="center">1 Gray wolf (1)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B10">10</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">2006/AEGEAN REGION</td>
<td valign="top" align="left">Serology</td>
<td valign="top" align="center">474 Human (154; 32.5%)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B35">35</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">1987/MARMARA REGION</td>
<td valign="top" align="left">Trichinoscopy and the digestion method</td>
<td valign="top" align="center">535 Pigs (0), 1165 Wild boars (2)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B72">72</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">2009/AEGEAN REGION</td>
<td valign="top" align="left">Trichinoscopy</td>
<td valign="top" align="center">43 Wild boars (0)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B40">40</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">2011/MARMARA REGION</td>
<td valign="top" align="left">Trichinoscopy and artificial digestion</td>
<td valign="top" align="center">27 Wild boars (0), 22 Wild boars (0)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B37">37</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">1999/MARMARA REGION</td>
<td valign="top" align="left">Trichinoscopy and artificial digestion</td>
<td valign="top" align="center">1 Wild boar (1)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B36">36</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">2021/MARMARA REGION</td>
<td valign="top" align="left">Trichinoscopy and artificial digestion</td>
<td valign="top" align="center">59 Wild birds (0)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B39">39</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">1977/MARMARA REGION</td>
<td valign="top" align="left">Trichinoscopy and artificial digestion</td>
<td valign="top" align="center">13 Human (13)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B32">32</xref>)</td>
</tr>
<tr>
<td valign="top" align="left">1971/INNER ANATOLIAN REGION</td>
<td valign="top" align="left">Trichinoscopy and artificial digestion</td>
<td valign="top" align="center">70 Wild boars (1)</td>
<td valign="top" align="center">(<xref ref-type="bibr" rid="B38">38</xref>)</td>
</tr>
</tbody>
</table></table-wrap>
<p>In 1977, an outbreak of 13 human trichinellosis cases was documented in Kumkapi (Istanbul) following the consumption of pork (<xref ref-type="bibr" rid="B32">32</xref>). At that time, the etiological agent was considered to be <italic>T. spiralis</italic>. In 2003, an outbreak (7 infected persons) due to the consumption of wild boar meat occurred in Bursa (<xref ref-type="bibr" rid="B33">33</xref>).</p>
<p>Between December 2003 and January 2004, a large outbreak of trichinellosis (418 infected persons) occurred in Izmir, Western Anatolia. Raw minced meat balls illegally made with both beef and pork were the source of the outbreak. This food traditionally made with uncooked veal and named <italic>cig kofte</italic>, was very popular in Izmir. Infected raw balls were made by a wholesale meat butcher and consumed in 14 restaurants and street vendors. <italic>Trichinella</italic> sp. larvae collected from these meat balls and human biopsies were identified as <italic>T. britovi</italic> [Akkoc et al. (<xref ref-type="bibr" rid="B11">11</xref>)]. Information on this outbreak is also available in other papers [Ozdemir et al. (<xref ref-type="bibr" rid="B34">34</xref>); Turk et al. (<xref ref-type="bibr" rid="B35">35</xref>)], which investigated smaller groups of patients all included in the Akkoc et al. (<xref ref-type="bibr" rid="B11">11</xref>) study.</p>
<p>In 1997, <italic>Trichinella</italic> sp. larvae, considered to belong to <italic>T. spiralis</italic>, were detected in a wild boar sausage of Bulgarian immigrants in Istanbul (<xref ref-type="bibr" rid="B36">36</xref>).</p>
</sec>
<sec id="S5">
<title><italic>Trichinella</italic> sp. infections in animals of Turkey</title>
<sec id="S5.SS1">
<title>Wild boar and pigs</title>
<p>Wild boar is widespread across the country, however, there is no accurate estimate of their population. This game is shot by hunters, ethnic groups, or farmers for meat, and/or crop protection (<xref ref-type="bibr" rid="B37">37</xref>). Trichinellosis had been documented in both domesticated and wild pigs (<xref ref-type="bibr" rid="B12">12</xref>). From 1971 to 2011, the prevalence of <italic>Trichinella</italic> sp. in wild boar and domesticated pigs was investigated by six studies carried out in Istanbul, Aegean Region, Aydin, and Bursa (<xref ref-type="table" rid="T2">Table 2</xref>).</p>
<p>In 1971, one wild boar out of 70 tested positive in Ankara for <italic>Trichinella</italic> sp. larvae by trichinoscopy and artificial digestion (<xref ref-type="bibr" rid="B38">38</xref>). Muscle samples of 535 pigs and 1,165 wild boars were tested in Istanbul between 1973 and 1984. Two wild boars tested positive by trichinoscopy and artificial digestion (<xref ref-type="bibr" rid="B12">12</xref>). In 1991, 45 wild boars were examined in Aegean Region by trichinoscopy (<xref ref-type="bibr" rid="B39">39</xref>). In 2009, muscle samples of 43 wild boars of the Aydin province were tested by trichinoscopy, but no larvae were detected (<xref ref-type="bibr" rid="B40">40</xref>).</p>
<p>In the Bursa province, 27 wild boars were necropsied to investigate the helminth fauna including <italic>Trichinella</italic> sp. larvae using trichinoscopy and artificial digestion. All muscle samples tested negative (<xref ref-type="bibr" rid="B37">37</xref>).</p>
</sec>
<sec id="S5.SS2">
<title>Carnivore mammals and birds</title>
<p><italic>Trichinella</italic> sp. larvae collected from muscle samples of a gray wolf (<italic>Canis lupus</italic>) of &#x00C7;ankiri, were identified at the species level as <italic>T. britovi</italic> (<xref ref-type="bibr" rid="B10">10</xref>).</p>
<p>In 2021, muscle samples of from 59 different wild birds including: the common buzzard (<italic>Buteo buteo</italic>), house sparrow (<italic>Passer domesticus</italic>), yellow-legged gull (<italic>Larus michahellis</italic>), white stork (<italic>Ciconia ciconia</italic>), common magpie (<italic>Pica pica</italic>), barn owl (<italic>Tyto alba</italic>), Jackdaw (<italic>Corvus monedula</italic>), common swift (<italic>Apus apus</italic>), common kestrel (<italic>Falco tinnunculus</italic>), Eleonora&#x2019;s falcon (<italic>Falco eleonorae</italic>), short-toed snake eagle (<italic>Circaetus gallicus</italic>), alpine swift (<italic>Apus melba</italic>), Eurasian hoopoe (<italic>Upupa epops</italic>), carrion crow (<italic>Corvus corone</italic>), European nightjar (<italic>Caprimulgus europaeus</italic>), common pigeon (<italic>Columba livia</italic>), tree pipit (<italic>Anthus trivialis</italic>) and hooded crow (<italic>Corvus cornix</italic>) of the Bursa province were tested for <italic>Trichinella</italic> sp. larvae by trichinoscopy and artificial digestion. No <italic>Trichinella</italic> sp. larvae were detected (<xref ref-type="bibr" rid="B39">39</xref>). The detected regions of animal trichinellosis in Turkey have been summarized in <xref ref-type="fig" rid="F2">Figure 2</xref>.</p>
</sec>
</sec>
<sec id="S6">
<title>Epidemiological factors of trichinellosis in Iran and Turkey</title>
<p>It is worth noting that the decrease in backyard and free-range pig farming, the systematic regulation of abattoir facilities, and the exponential increase in pigs reared in controlled situations are among the reasons for the significant reduction of <italic>trichinellosis</italic> in industrialized countries (<xref ref-type="bibr" rid="B41">41</xref>). Despite the reduction of the domestic cycle of <italic>Trichinella</italic> sp., trichinellosis can still be considered as a potential risk, due to the presence of these nematodes in the wildlife, which can be a spillover for domesticated susceptible animals (<xref ref-type="bibr" rid="B4">4</xref>).</p>
<p>The low seropositivity rate or near absence of human cases in Iran is mainly due to the religious ban, which prohibits the consumption of meat from domesticated and wild swine. The wild boar is the source of <italic>Trichinella</italic> sp. infection for religious minorities in Iran practicing wild boar hunting (<xref ref-type="bibr" rid="B16">16</xref>, <xref ref-type="bibr" rid="B42">42</xref>, <xref ref-type="bibr" rid="B43">43</xref>).</p>
<p>Raw meatballs made from minced meat, wheat, tomato paste and spicy spices is traditionally made with venison or beef, while its replacement with infected pork has led to a trichinellosis outbreak in Izmir. Such outbreaks indicate that pork or wild boar meat consumption in areas without control may lead to serious health and economic problems, even when religion limits consumption (<xref ref-type="bibr" rid="B44">44</xref>). Thus, the presence of trichinellosis in Muslim societies, as occurred in Turkey, reveals that these societies are also at risk of trichinellosis.</p>
<p><italic>Trichinella britovi</italic> was confirmed to be causative agent of infection in Turkey (<xref ref-type="bibr" rid="B11">11</xref>, <xref ref-type="bibr" rid="B34">34</xref>). <italic>T. britovi</italic> is mostly a sylvatic species, although it can infect humans when farmers fail to properly rear domestic pigs, allowing them to come into touch with animals. A hunted wild boar or a free-range or backyard pig could be the source of infection (<xref ref-type="bibr" rid="B11">11</xref>). These outbreaks highlight the importance of testing swine for <italic>Trichinella</italic> infection at the slaughterhouse to ensure safe food for consumers, particularly when raw meat is consumed. Educational strategies such as health communication campaign for consumers, farmers, hunters and other groups can be of great importance. In these outbreaks, early detection, notification of health authorities, and identification of affected meat had led to the control of infection (<xref ref-type="bibr" rid="B35">35</xref>).</p>
<p>The most key routes of transmission of <italic>Trichinella</italic> taxa are predation and scavenging behavior. At present, only <italic>T. britovi</italic> has been detected in wild animals of Iran and Turkey. More sampling is needed to reveal the spread of this species in these two countries of Western Asia. In Iran, current data indicates the golden jackal as an indicator animal for the circulation of <italic>T. britovi</italic> because of its scavenging behavior and adaptability to various habitats, including the peri-domestic habitats (<xref ref-type="bibr" rid="B8">8</xref>, <xref ref-type="bibr" rid="B45">45</xref>, <xref ref-type="bibr" rid="B46">46</xref>).</p>
<sec id="S6.SS1">
<title>Trichinellosis prevention and control in human and animals</title>
<p>Regarding the lack of pig farming and the rare human cases, only public and professional education, and preventing illegal wildlife hunting can be recommended for prevention and control of disease in the region.</p>
</sec>
<sec id="S6.SS2">
<title>Health communication and One Health approach (OH)</title>
<p>As mentioned high risk behavior (i.e., hunter-based life styles and recreational hunting leaving animal carcasses in filed, discarding game carcasses together with household garbage) can favor <italic>Trichinella</italic> sp. transmission in the wild (<xref ref-type="bibr" rid="B4">4</xref>). Educational plans (such as Health communication campaign) are in need of the commitment, coordinated actions under OH approaches to increase awareness of consumers, farmers and hunters, and compliance regarding trichinellosis especially in rural communities and remote areas (e.g., high-risk regions), where comprehensive data are needed on the circulation of <italic>Trichinella</italic> sp. in wildlife. The One Health triad is made up of humans, domestic animals, wildlife and the changing ecosystems. Human activities affect the flow of all parasitic infections in the One Health triad, and the impact of the resulting spillover events (e.g., spillover from wildlife to humans) are considered (<xref ref-type="bibr" rid="B47">47</xref>).</p>
<p>The importance of the One Health approach in the control of infectious diseases should be well embraced by the relevant authorities for providing public education on zoonotic diseases using media, radio, television, newspapers (<xref ref-type="bibr" rid="B48">48</xref>) science exhibitions, media production and other tools, where crucial changes of care policy and educational system will be needed to increase the knowledge of the public, particularly in the low- and middle-income settings (<xref ref-type="bibr" rid="B49">49</xref>).</p>
<p>It has been indicated that communication campaigns over longer time periods can be capable of changing health behaviors and increasing awareness of public regarding pork-borne parasitic diseases and schistosomiasis control measures (<xref ref-type="bibr" rid="B50">50</xref>&#x2013;<xref ref-type="bibr" rid="B53">53</xref>).</p>
<p>The Iranian Parasitology Museum (IPM) provided an opportunity to explore practice in science communication among the general public and school children, while museum collections are freely available for translation of investigations by communications practitioners. The IPM is being answered questions about animal and human parasites (e.g., zoonotic parasites) and their life cycle, and infection consequences of parasites, as well as those regarding the controls required (<xref ref-type="fig" rid="F3">Figure 3</xref>).</p>
<fig id="F3" position="float">
<label>FIGURE 3</label>
<caption><p>The role of the Iranian Parasitology Museum in science communication for the public and students. The figures were prepared from the archives of the Iranian Parasitology Museum.</p></caption>
<graphic mimetype="image" mime-subtype="tiff" xlink:href="fmed-10-1088507-g003.tif"/>
</fig>
<p>The success of preventive measures requires appropriate communication approach (such as supportive dialogue and participation) and proper interaction with policy makers under effective synergistic collaboration (interdisciplinary and interinstitutional cooperation) in the domain of OH approach. Establishment of an OH commission and/or OH joint steering committee at national level (<xref ref-type="bibr" rid="B54">54</xref>) can be capable of solving challenges and friction and facilitating relevant programs.</p>
</sec>
<sec id="S6.SS3">
<title>Preventing illegal wildlife hunting and trade</title>
<p>Preventing illegal hunting of wildlife is also one of the ways to limit the spread of <italic>Trichinella</italic> sp. infection. Ecological consequences and public health zoonotic disease emergence from hunting waste, consumption, and use of wildlife are regarded as consequences of illegal wildlife hunting and trade.</p>
<p>Illegal wildlife trade (IWT) originates from lower levels of communities (e.g., poachers, local market sellers, and local consumers) especially in underdeveloped countries due to factors such as low socioeconomic status (e.g., low income, poverty and lower education), (<xref ref-type="bibr" rid="B55">55</xref>, <xref ref-type="bibr" rid="B56">56</xref>).</p>
<p>The risk of zoonotic diseases spillover is associated with drivers such as land-use change (LUC), human culture and habits including hunting behavior, illegal wildlife hunting and trade for trophies and bushmeat), agriculture expansion, infrastructure development, urbanization and food industry change, as well as introduction of exotic species (<xref ref-type="bibr" rid="B57">57</xref>&#x2013;<xref ref-type="bibr" rid="B61">61</xref>).</p>
<p>Despite existing regulations regarding the wildlife hunting or trade, policies restricting illicit activities would not be fully effective in many areas of the world, bringing greater public health concerns because of lacking monitoring of wildlife status and their products, indicating a serious &#x201C;OH&#x201D; issue.</p>
<p>Illegal importation of meat and its products have been related to trichinellosis in some European countries (<xref ref-type="bibr" rid="B55">55</xref>, <xref ref-type="bibr" rid="B62">62</xref>, <xref ref-type="bibr" rid="B63">63</xref>).</p>
<p>Although wildlife trade is prohibited in Iran (<xref ref-type="bibr" rid="B64">64</xref>), implementing effective enforcement of law against it is often difficult due to needs of manpower and major financial resources (<xref ref-type="bibr" rid="B65">65</xref>).</p>
<p>A number of mitigation actions and policies including enforcement of regulation at local, national and international settings (further monitoring of local restaurants and eateries by assessing the type of meat, continuous inspection of wildlife trade markets, increasing surveillance at ports and airports, etc.), and awareness-raising (Health communication) are among strict measures under the control of the sanitary authorities for combating such illegal activities and prevention of infectious disease transmission (<xref ref-type="bibr" rid="B55">55</xref>), Although hunting waste can also provide potential sources of infection for wild boars and other wildlife, this cannot be considerable in Iran and Turkey due to the religious restrictions. Of course, proper disposal of dead animals is also necessary for avoiding scavenging.</p>
<p>The wild boars are important sources of infection for a limited portion of human population in Iran and turkey including religious minorities consuming pork meat, and indigenous hunters involving in illegal hunting (<xref ref-type="bibr" rid="B16">16</xref>, <xref ref-type="bibr" rid="B43">43</xref>).</p>
</sec>
</sec>
<sec id="S7">
<title>Concluding remarks</title>
<p>Though there are rare records of human infections caused by <italic>Trichinella</italic> sp. nematodes in Iran to date, the possibility of human infection exists among old male hunters (<xref ref-type="bibr" rid="B16">16</xref>, <xref ref-type="bibr" rid="B42">42</xref>). High risk behavior such as hunter-based life styles, and recreational hunting can be the cause of trichinellosis (<xref ref-type="bibr" rid="B66">66</xref>). The transfer of infected meat from one region or even country to another can also contribute to local outbreaks (<xref ref-type="bibr" rid="B67">67</xref>).</p>
<p>Regarding population growth of wild boar in the recent years in Iran, they are considered as potential source for zoonotic diseases such <italic>Trichinella</italic> infection among high-risk individuals (<xref ref-type="bibr" rid="B43">43</xref>).</p>
<p>Possible consumption of wild boar meat after hunting by Iranian Armenians, and Zoroastrians (<xref ref-type="bibr" rid="B16">16</xref>, <xref ref-type="bibr" rid="B20">20</xref>, <xref ref-type="bibr" rid="B42">42</xref>), suggests a significant potential threat of trichinellosis; thus, health communication (i.e., educational plans) for hunters, farmers and consumers especially among populations living in remote areas can be fruitful in reducing or eliminating risk of exposure to these potential sources of <italic>Trichinella</italic>, especially in high-risk areas, where most people were unaware of the association of wild boar meat consumption and trichinellosis. Although hunting waste can also provide potential sources of infection for wild boars and other wildlife, this cannot be considerable in Iran due religious restrictions. Of course, disposal of dead animals is also necessary for avoiding scavenging.</p>
<p>The low seropositivity rate or near absence of human cases in Iran is mainly due to Muslim beliefs based on not consuming wild boar meat or pork meet, although lack of further studies may be involved in such results to some extent.</p>
<p>Previously most Iranian published papers had reported <italic>Trichinella</italic> larvae from wild animal isolates as <italic>T. spiralis</italic>, because the multiple species concept was in dispute at the time (<xref ref-type="bibr" rid="B29">29</xref>), when three new species were proposed in 1972 based on biological features including <italic>T. nativa</italic> and <italic>T. nelsoni</italic> (<xref ref-type="bibr" rid="B68">68</xref>) and <italic>T. pseudospiralis</italic> (<xref ref-type="bibr" rid="B69">69</xref>).</p>
<p>More structured field surveys are required to elucidate the natural host distribution of <italic>Trichinella taxa</italic> in sylvatic carnivore of Iran.</p>
<p>Overall, <italic>Trichinella</italic> sp. has been reported from wild life of the Caspian region, Isfahan, Ardabil, Khuzestan, Khorasan Razavi, and Bandar Abbas in the north, central, northwest, southwest, north-east and of south of Iran. Current data on the distribution of <italic>Trichinella</italic> taxa is fragmentary. Moreover, most of available data comes from case reports and biological data of the <italic>Trichinella</italic> taxa in wild animals of Iran is very limited, while no data are available on the distribution of <italic>Trichinella</italic> taxa in many parts of Iran; thus, more epidemiological studies with larva identification at the species level by molecular tests are still needed for covering the whole country to ascertain the prevalence of <italic>Trichinella</italic> sp. infection, mode of transmission, and population structure in wild animals of Iran. Experimental studies are needed to elucidate the infectivity and predilection sites of <italic>T, britovi</italic> genotypes circulating in Iran. In Turkey, only a few studies on <italic>T. britovi</italic> infection have been published since no data have been reported on human trichinellosis after 2004 and wild boars after 2011. We believe that <italic>Trichinella</italic> spp. present in wildlife should be explored further, as this would greatly aid our understanding of epidemiology and to implement control strategies.</p>
</sec>
<sec id="S8" sec-type="author-contributions">
<title>Author contributions</title>
<p>MB, ML, SF, and MFH conceived the study and designed the study. MB, ML, and SF performed the search of the literature. SS, HA, MB, XW, and MFH contributed in data collection. All authors wrote the manuscript and read and approved the submitted version.</p>
</sec>
</body>
<back>
<ack>
<p>We thank all the people who has investigated Trichinellosis in Turkey and Iran. They remarkably improved our understanding of the epidemiology of Trichinellosis. This study was conducted in collaboration with the State Key Laboratory for Zoonotic Diseases, Key Laboratory of Zoonosis Research, Ministry of Education, Institute of Zoonosis, College of Veterinary Medicine, Jilin University, Changchun.</p>
</ack>
<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>
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