Clinical Immunology Service, Institute of Immunology and Immunotherapy, University of Birmingham, Birmingham, United Kingdom.
M3 Global Research, London, United Kingdom.
Front Public Health. 2021 Feb 26;9:569315. doi: 10.3389/fpubh.2021.569315. eCollection 2021.
The COVID-19 pandemic has led to an urgent requirement for novel diagnostic tests that determine infection with SARS-CoV-2 and the development of an immune response against it. The perspective of end users on the characteristics and clinical use of these assays has not been previously considered. We surveyed 17,186 health care professions (HCPs) in 29 countries to gauge opinion on the design, use, diagnostic impact and diagnostic accuracy of COVID-19 tests. Results were correlated with national statistics on the burden of disease and testing in individual countries. HCPs overwhelmingly recognized the importance of COVID-19 tests but 37.1% were unsure of the appropriate timing of investigations relative to disease symptoms. Confidence in the diagnostic accuracy of assays varied inversely with COVID-19-related mortality in individual countries but had no relationship with the total number of tests performed. There was global consensus that the most important impact of positive antigen and antibody testing was confidence in returning to work following recovery. Saliva was the preferred sampling fluid for COVID-19 diagnostic tests in all groups surveyed. HCP input can ensure novel assays are fit for purpose in varied global health care settings, but HCPs may require support to effectively use novel diagnostics thus minimizing waste when supplies are limited.
新冠疫情大流行迫切需要新型诊断检测方法,以确定是否感染 SARS-CoV-2 以及是否对其产生免疫反应。然而,此前并未考虑终端用户对这些检测方法的特性和临床应用的看法。我们调查了 29 个国家/地区的 17186 名医疗保健专业人员(HCPs),以了解他们对 COVID-19 检测的设计、使用、诊断影响和诊断准确性的看法。研究结果与各国疾病负担和检测数据相关联。HCPs 普遍认识到 COVID-19 检测的重要性,但 37.1% 的人不确定相对于疾病症状何时进行调查。HCPs 对检测方法的诊断准确性的信心与各国 COVID-19 相关死亡率呈反比,但与检测总数无关。全球共识认为,抗原和抗体检测呈阳性的最重要影响是,在康复后恢复工作时增强信心。唾液是所有接受调查的群体首选的 COVID-19 诊断检测采样液。HCP 的意见可以确保新型检测方法适用于不同的全球医疗保健环境,但 HCPs 可能需要支持才能有效地使用新型诊断方法,从而在供应有限的情况下最大限度地减少浪费。