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<article xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:mml="http://www.w3.org/1998/Math/MathML" article-type="brief-report"><?properties open_access?><front><journal-meta><journal-id journal-id-type="nlm-ta">Emerg Infect Dis</journal-id><journal-id journal-id-type="iso-abbrev">Emerging Infect. Dis</journal-id><journal-id journal-id-type="publisher-id">EID</journal-id><journal-title-group><journal-title>Emerging Infectious Diseases</journal-title></journal-title-group><issn pub-type="ppub">1080-6040</issn><issn pub-type="epub">1080-6059</issn><publisher><publisher-name>Centers for Disease Control and Prevention</publisher-name></publisher></journal-meta><article-meta><article-id pub-id-type="pmid">32150527</article-id><article-id pub-id-type="pmc">7258461</article-id><article-id pub-id-type="publisher-id">20-0301</article-id><article-id pub-id-type="doi">10.3201/eid2606.200301</article-id><article-categories><subj-group subj-group-type="second-type"><subject>Expedited</subject></subj-group><subj-group subj-group-type="heading"><subject>Research Letter</subject></subj-group><subj-group subj-group-type="article-type"><subject>Research Letter</subject></subj-group><subj-group subj-group-type="TOC-title"><subject>Detection of Novel Coronavirus by RT-PCR in Stool Specimen from Asymptomatic Child, China</subject></subj-group></article-categories><title-group><article-title>Detection of Novel Coronavirus by RT-PCR in Stool Specimen from Asymptomatic Child, China</article-title><alt-title alt-title-type="running-head">Detection of Novel Coronavirus by RT-PCR in Stool Specimen from Asymptomatic Child, China</alt-title></title-group><contrib-group><contrib contrib-type="author"><name><surname>Tang</surname><given-names>An</given-names></name><xref ref-type="fn" rid="FN1"><sup>1</sup></xref></contrib><contrib contrib-type="author"><name><surname>Tong</surname><given-names>Zhen-dong</given-names></name><xref ref-type="fn" rid="FN1"><sup>1</sup></xref></contrib><contrib contrib-type="author"><name><surname>Wang</surname><given-names>Hong-ling</given-names></name><xref ref-type="fn" rid="FN1"><sup>1</sup></xref></contrib><contrib contrib-type="author" corresp="yes"><name><surname>Dai</surname><given-names>Ya-xin</given-names></name><xref ref-type="fn" rid="FN1"><sup>1</sup></xref></contrib><contrib contrib-type="author"><name><surname>Li</surname><given-names>Ke-feng</given-names></name></contrib><contrib contrib-type="author"><name><surname>Liu</surname><given-names>Jie-nan</given-names></name></contrib><contrib contrib-type="author"><name><surname>Wu</surname><given-names>Wen-jie</given-names></name></contrib><contrib contrib-type="author"><name><surname>Yuan</surname><given-names>Chen</given-names></name></contrib><contrib contrib-type="author"><name><surname>Yu</surname><given-names>Meng-lu</given-names></name></contrib><contrib contrib-type="author"><name><surname>Li</surname><given-names>Peng</given-names></name></contrib><contrib contrib-type="author" corresp="yes"><name><surname>Yan</surname><given-names>Jian-bo</given-names></name></contrib><aff id="aff1">Zhoushan Center for Disease Control and Prevention, Zhoushan, China</aff></contrib-group><author-notes><corresp id="cor1">Address for correspondence:&#x000a0;Ya-xin Dai or Jian-bo Yan, Zhoushan Center for Disease Control and Prevention, No. 568 Wengshan Rd, Zhejiang, Zhoushan 316021, China: email: <email xlink:href="daiyaxin.712@163.com">daiyaxin.712@163.com</email> or <email xlink:href="yanjianbo02@163.com">yanjianbo02@163.com</email></corresp></author-notes><pub-date pub-type="ppub"><month>6</month><year>2020</year></pub-date><volume>26</volume><issue>6</issue><fpage>1337</fpage><lpage>1339</lpage><abstract><p>We report an asymptomatic child who was positive for a coronavirus by reverse transcription PCR in a stool specimen 17 days after the last virus exposure. The child was virus positive in stool specimens for at least an additional 9 days. Respiratory tract specimens were negative by reverse transcription PCR.</p></abstract><kwd-group kwd-group-type="author"><title>Keywords: </title><kwd>coronavirus</kwd><kwd>novel coronavirus</kwd><kwd>2019 novel coronavirus disease</kwd><kwd>COVID-19</kwd><kwd>severe acute respiratory syndrome coronavirus 2</kwd><kwd>SARS-CoV-2</kwd><kwd>viruses</kwd><kwd>respiratory infections</kwd><kwd>reverse transcription PCR</kwd><kwd>RT-PCR</kwd><kwd>stool</kwd><kwd>asymptomatic child</kwd><kwd>China</kwd></kwd-group></article-meta></front><body><p>An outbreak of coronavirus disease (COVID-19) began in Wuhan, China, during December 2019 and has rapidly spread throughout China and to many countries (<xref rid="R1" ref-type="bibr"><italic>1</italic></xref>,<xref rid="R2" ref-type="bibr"><italic>2</italic></xref>). Common symptoms include fever, dry cough, and myalgia (<xref rid="R3" ref-type="bibr"><italic>3</italic></xref>). Ten laboratory-confirmed cases and several asymptomatic cases of COVID-19 have been identified in Zhoushan, China, since January 19, 2020. We report the epidemiologic and diagnostic features for 1 case in an asymptomatic child.</p><p>On January 30, 2020, we identified a 10-year-old boy who had no fever or cough but had close contact with 2 confirmed case-patients with laboratory-confirmed COVID-19 (<xref ref-type="fig" rid="F1">Figure</xref>). The boy was a primary school student who lived with his parents in an apartment of a college. The complex had several confirmed COVID-19 case-patients during January 19&#x02013;31. </p><fig id="F1" fig-type="figure" position="float"><label>Figure</label><caption><p>Timeline for detection of novel coronavirus by RT-PCR in stool specimen from asymptomatic child, China, January 9&#x02013;February 14, 2020. NA, not available; NP, nasopharyngeal; RT-PCR, reverse transcription PCR; +, positive for novel coronavirus RNA by RT-PCR; &#x000b1;, equivocal for novel coronavirus RNA by RT-PCR; &#x02013;, negative for novel coronavirus RNA by RT-PCR.</p></caption><graphic xlink:href="20-0301-F"/></fig><p>Interviews of the boy and his parents confirmed his multiple exposures to the previously confirmed case-patients. On January 9 and 15, he participated in 2 parties with his parents and their colleagues. Two persons at these parties were positive for severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) by reverse transcription PCR (RT-PCR) on January 20 and 22. During January 12&#x02013;15, the boy played football at a football club with a teammate who had a virus-positive RT-PCR result on January 22. The parents of the boy were asymptomatic and their stool, nasopharyngeal, and sputum specimens collected on February 1 and 14 were negative for SARS-CoV-2.</p><p>We collected nasopharyngeal swab and sputum samples from the boy 15 days after the last close contact and tested these specimens for SARS-CoV-2 by using RT-PCRs targeting the open reading frame lab (ORF1ab) and nucleoprotein gene regions (<xref rid="R4" ref-type="bibr"><italic>4</italic></xref>). We obtained equivocal results: cycle threshold (C<sub>t</sub>) values were negative for ORFlab and 37.5 for the nucleoprotein gene. However, on February 1 (17 days after his last contact), a stool specimen was positive for SARS-CoV-2 by RT-PCR. (ORF1ab C<sub>t</sub> 32.6; nucleoprotein gene C<sub>t</sub> 33.7). He was then hospitalized in isolation and for monitoring.</p><p>Since January 22, The area of residence for the boy had been isolated, and community physicians monitored quarantined residents twice a day for signs and symptoms including fever, cough, and myalgia. During January 9&#x02013;31, the boy had no signs or symptoms.</p><p>In the hospital, a routine blood test performed on February 2 showed cell counts within reference ranges, and a computed tomography scan on February 5 showed no abnormalities. After additional stool specimens collected on February 2 (ORF1ab C<sub>t</sub> 25.6; nucleoprotein gene C<sub>t</sub> 25.8) and February 4 (ORF1ab C<sub>t</sub> 25.6; nucleoprotein gene C<sub>t</sub> 28.3) were positive, the patient received abidol hydrochloride (100 mg 3&#x000d7;/d), interferon &#x003b1;-2b spray (2.5 million U 2&#x000d7;/d) and traditional Chinese medical therapy on February 5. Stool specimens collected on February 7 (ORF1ab C<sub>t</sub> 26.3; nucleoprotein gene C<sub>t</sub> 27.6), February 8 (ORF1ab C<sub>t</sub> 31.4; nucleoprotein gene C<sub>t</sub> 30.6), and February 9 (ORF1ab C<sub>t</sub> 27.0; nucleoprotein gene C<sub>t</sub> 27.0) were positive, but stool specimens collected on February 12 and 14 were negative.</p><p>Early symptoms in most COVID-19 patients include fever, myalgia, cough, and sore throat (<xref rid="R5" ref-type="bibr"><italic>5</italic></xref>), which are common in other acute respiratory virus infections (<xref rid="R6" ref-type="bibr"><italic>6</italic></xref>). Most cases appear to be mild, and most hospitalized patients have pneumonia with ground glass opacities on chest radiographs. Few children with SARS-CoV-2 infections have been reported, and most of them had mild clinical symptoms (<xref rid="R7" ref-type="bibr"><italic>7</italic></xref>).</p><p>The boy we report had close contact with confirmed COVID-19 case-patients on several occasions before he showed an equivocal RT-PCR result for respiratory specimens and subsequently positive results for stool specimens. Despite these positive test results, he had no detectable fever or other clinical symptoms consistent with COVID-19 for <underline>&#x0003e;</underline>30 days from his last documented exposure. Although positive RT-PCR results do not necessarily indicate presence of infectious virus, our findings reinforce the need for RT-PCR testing of asymptomatic persons with exposure to COVID-19 patients. Asymptomatic infections complicate efforts to curtail SARS-CoV-2 transmission and implement effective control procedures.</p><p>SARS-CoV-2 is believed to be transmitted through large respiratory droplets (<xref rid="R8" ref-type="bibr"><italic>8</italic></xref>) and close contact (<xref rid="R9" ref-type="bibr"><italic>9</italic></xref>). Indirect transmission by contaminated fomites might also play a role. During the SARS pandemic of 2002&#x02013;2003, positive RT-PCR results for stool specimens from SARS patients suggested that stools or sewage might be virus sources (<xref rid="R10" ref-type="bibr"><italic>10</italic></xref>). Our finding of multiple positive stool specimens in this case similarly raises the concern that stool from COVID-19 patients might serve as another vehicle for virus transmission. Moreover, detection of virus by RT-PCR in stool specimens when respiratory tract specimens are negative suggests that stool might be considered, in addition to respiratory tract specimens, for routine diagnostic screening.</p><p>Our study had several limitations. The delay in RT-PCR testing after the first recognition of virus exposure prevented a more accurate estimation of the incubation time from exposure to RT-PCR positivity. The failure to test other specimens, such as blood and urine, prevented determination of the full spectrum of virus shedding for the case-patient. Although we urge caution in making policy decisions on the basis of 1 case, expanded testing of various clinical specimens from symptomatic and asymptomatic case-patient contacts at multiple time points would be warranted to help confirm our findings.</p></body><back><fn-group><fn fn-type="citation"><p><italic>Suggested citation for this article</italic>: Tang A, Tong Z-d, Wang H-l, Dai Y-x, Li K-f, Liu J-n, et al. Detection of novel coronavirus by RT-PCR in stool specimen from asymptomatic child, China. Emerg Infect Dis. 2020 Jun [<italic>date cited</italic>]. <ext-link ext-link-type="uri" xlink:href="https://doi.org/10.3201/eid2606.200301">https://doi.org/10.3201/eid2606.200301</ext-link></p></fn><fn id="FN1"><label>1</label><p>These authors contributed equally to this article.</p></fn></fn-group><ack><title>Acknowledgment</title><p>We thank all members of the Zhoushan Center for Disease Control and Prevention for their involvement during the response to the outbreak.</p><p>This study was supported by the Zhoushan Science And Technology Project (grant nos. 2020C31004, 2020C31005, and 2020C31006); the Zhejiang Scientific and Technological Major Project under the 2020 Emergency (grant no. 2020C03124); the Zhejiang University special scientific research fund for COVID-19 prevention and control; and the Zhejiang Natural Project on Emergency Research about Community Prevention, Control, Early Warning, and Prediction of the novel coronavirus outbreak (grant no. 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