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首页> 外文期刊>Frontiers in Medicine >Potential False-Positive and False-Negative Results for COVID-19 IgG/IgM Antibody Testing After Heat-Inactivation
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Potential False-Positive and False-Negative Results for COVID-19 IgG/IgM Antibody Testing After Heat-Inactivation

机译:热灭活后Covid-19 IgG / IgM抗体检测的潜在假阳性和假阴性结果

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Objectives: With the worldwide spread of coronavirus disease 2019 (COVID-19) caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), various antibody detection kits have been developed to test for SARS-CoV-2– specific IgG, IgM, and total antibody. However, the use of different testing methods under various heat-inactivation conditions might affect the COVID-19 detection results. Methods: Seven different antibody detection kits produced by four manufacturers for detection of SARS-CoV-2 IgG, IgM, and total antibody were tested at Wuhan Huoshenshan Hospital, China. Most of the kits used the indirect immunity, capture, and double-antigen sandwich methods. The effects of various heat-inactivation conditions on SARS-CoV-2-specific IgG, IgM, and total antibody detection were analyzed for the different test methods. Results: Using the indirect immunity method, values for SARS-CoV-2 IgG antibody significantly increased and those for IgM antibody decreased with increasing temperature of heat-inactivation using indirect immunity method. However, values for SARS-CoV-2 IgM and total antibody showed no change when the capture and double-antigen sandwich methods were used. The changes in IgG and IgM antibody values with the indirect immunity method indicated that heat-inactivation could affect COVID-19 detection results obtained using this method. In particular, 18 (22.2%) SARS-CoV-2 IgM positive samples were detected as negative with heat-inactivation at 65°C for 30 min, and one (25%) IgG negative sample was detected as positive after heat-inactivation at 56°C for 60 min and 60°C for 30 min. Conclusions: Heat-inactivation could increase SARS-CoV-2 IgG antibody values, and decrease IgM antibody values, causing potential false-positive or false-negative results for COVID-19 antibody detection using the indirect immunity method. Thus, before conducting antibody testing, the testing platforms should be evaluated in accordance with the relevant requirements to ensure accurate COVID-19 detection results.
机译:目的:随着冠状病毒疾病的全球蔓延(Covid-19)由严重急性呼吸综合征冠状病毒2(SARS-COV-2)引起,已经开发了各种抗体检测试剂盒来测试SARS-COV-2特异性IgG, IgM和总抗体。然而,在各种热灭活条件下使用不同的测试方法可能会影响Covid-19检测结果。方法:在武汉花树汉医院,四种制造商生产的七种不同抗体检测试剂盒用于检测SARS-COV-2 IgG,IgM和总抗体。大多数套件使用间接免疫,捕获和双抗原夹心方法。针对不同的试验方法分析了各种热灭活条件对SARS-COV-2特异性IgG,IgM和总抗体检测的影响。结果:采用间接免疫法,SARS-COV-2 IgG抗体的值显着增加,并且使用间接免疫法量随着热灭活温度的增加而降低了IgM抗体的值。然而,当使用捕获和双抗原夹心方法时,SARS-COV-2 IgM和总抗体的值没有变化。具有间接免疫法的IgG和IgM抗体值的变化表明,热灭活可能影响使用该方法获得的Covid-19检测结果。特别地,18(22.2%)SARS-COV-2 IgM阳性样品被检测为阴性,在65℃下在65℃下灭活30分钟,并且在热灭活后检测一个(25%)IgG阴性样品为阳性56℃持续60分钟,60℃30分钟。结论:热灭活可以增加SARS-COV-2 IgG抗体值,并降低IgM抗体值,使用间接免疫方法导致Covid-19抗体检测的潜在假阳性或假阴性结果。因此,在进行抗体测试之前,应根据相关要求进行评估测试平台,以确保准确的Covid-19检测结果。

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