Vaxine Pty Ltd, Bedford Park, Adelaide 5042, Australia.
Expert Rev Vaccines. 2012 Dec;11(12):1459-70. doi: 10.1586/erv.12.125.
There is a need for novel approaches to tackle major vaccine challenges such as malaria, tuberculosis and HIV, among others. Success will require vaccines able to induce a cytotoxic T-cell response--a deficiency of most current vaccine approaches. The successful development of T-cell vaccines faces many hurdles, not least being the lack of consensus on a standardized T-cell assay format able to be used as a correlate of vaccine efficacy. Hence, there remains a need for reproducible measures of T-cell immunity proven in human clinical trials to correlate with vaccine protection. The T-cell equivalent of a neutralizing antibody assay would greatly accelerate the development and commercialization of T-cell vaccines. Recent advances have seen a plethora of new T-cell assays become available, including some like cytometry by time-of-flight with extreme multiparameter T-cell phenotyping capability. However, whether it is historic thymidine-based proliferation assays or sophisticated new cytometry assays, each assay has its relative advantages and disadvantages, and relatively few of these assays have yet to be validated in large-scale human vaccine trials. This review examines the current range of T-cell assays and assesses their suitability for use in human vaccine trials. Should one or more of these assays be accepted as an agreed surrogate of T-cell protection by a regulatory agency, this would significantly accelerate the development of T-cell vaccines.
需要新的方法来应对主要的疫苗挑战,如疟疾、结核病和艾滋病等。成功将需要能够诱导细胞毒性 T 细胞反应的疫苗——这是大多数当前疫苗方法的缺陷。T 细胞疫苗的成功开发面临许多障碍,其中最突出的是缺乏能够作为疫苗疗效相关物的标准化 T 细胞检测方法的共识。因此,仍然需要在人体临床试验中证明与疫苗保护相关的可重复的 T 细胞免疫测量方法。T 细胞中和抗体检测方法的等效物将极大地加速 T 细胞疫苗的开发和商业化。最近的进展使得许多新的 T 细胞检测方法得以应用,包括一些具有极端多参数 T 细胞表型能力的时间飞行流式细胞术等。然而,无论是基于历史胸腺嘧啶的增殖检测方法还是复杂的新型流式细胞术检测方法,每种检测方法都有其相对的优缺点,而且这些检测方法中相对较少的方法已经在大规模人体疫苗试验中得到验证。本文综述了当前的 T 细胞检测方法,并评估了它们在人体疫苗试验中的适用性。如果一个或多个这些检测方法被监管机构接受为 T 细胞保护的替代物,这将显著加速 T 细胞疫苗的开发。