Cátedra de Inmunología, Departamento de Biociencias (DEPBIO), Facultad de Química, Instituto de Higiene, Montevideo, Uruguay.
ATGen SRL, Montevideo, Uruguay.
Front Immunol. 2023 Jul 11;14:1220477. doi: 10.3389/fimmu.2023.1220477. eCollection 2023.
Antigen tests have been crucial for managing the COVID-19 pandemic by identifying individuals infected with SARS-CoV-2. This remains true even after immunity has been widely attained through natural infection and vaccination, since it only provides moderate protection against transmission and is highly permeable to the emergence of new virus variants. For this reason, the widespread availability of diagnostic methods is essential for health systems to manage outbreaks effectively. In this work, we generated nanobodies to the virus nucleocapsid protein (NP) and after an affinity-guided selection identified a nanobody pair that allowed the detection of NP at sub-ng/mL levels in a colorimetric two-site ELISA, demonstrating high diagnostic value with clinical samples. We further modified the assay by using a nanobody-NanoLuc luciferase chimeric tracer, resulting in increased sensitivity (detection limit = 61 pg/mL) and remarkable improvement in diagnostic performance. The luminescent assay was finally evaluated using 115 nasopharyngeal swab samples. Receiver Operating Characteristic (ROC) curve analysis revealed a sensitivity of 78.7% (95% confidence interval: 64.3%-89.3%) and specificity of 100.0% (95% confidence interval: 94.7%-100.0%). The test allows the parallel analysis of a large number of untreated samples, and fulfills our goal of producing a recombinant reagent-based test that can be reproduced at low cost by other laboratories with recombinant expression capabilities, aiding to build diagnostic capacity.
抗原检测对于管理 COVID-19 大流行至关重要,因为它可以识别出感染 SARS-CoV-2 的个体。即使通过自然感染和接种疫苗已经广泛获得了免疫力,这种情况仍然如此,因为它仅对传播提供中度保护,并且对新病毒变体的出现高度敏感。出于这个原因,广泛获得诊断方法对于卫生系统有效管理疫情至关重要。在这项工作中,我们针对病毒核衣壳蛋白 (NP) 生成了纳米抗体,经过亲和导向选择,我们确定了一对纳米抗体,该对纳米抗体允许在比色双位点 ELISA 中以亚纳克/毫升的水平检测 NP,从而用临床样本证明了高诊断价值。我们进一步通过使用纳米抗体-NanoLuc 荧光素酶嵌合示踪剂修改了该测定法,从而提高了灵敏度(检测限=61pg/mL),并显著改善了诊断性能。最后,我们使用 115 个鼻咽拭子样本对发光测定法进行了评估。接收器操作特性 (ROC) 曲线分析显示出 78.7%(95%置信区间:64.3%-89.3%)的敏感性和 100.0%(95%置信区间:94.7%-100.0%)的特异性。该测试允许对大量未经处理的样本进行并行分析,并实现了我们的目标,即生产一种基于重组试剂的测试,其他具有重组表达能力的实验室可以以低成本复制该测试,从而有助于建立诊断能力。