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系统方法在结核病疫苗研发中的应用。

Systems approach to tuberculosis vaccine development.

机构信息

Department of Molecular Microbiology and Immunology, Bloomberg School of Public Health, Johns Hopkins University, Baltimore, MD 21205, USA.

出版信息

Respirology. 2013 Apr;18(3):412-20. doi: 10.1111/resp.12052.

Abstract

Tuberculosis is both highly prevalent across the world and eludes our attempts to control it. The current bacillus Calmette-Guérin vaccine has unreliable protection against adult pulmonary tuberculosis. As a result, tuberculosis vaccine development has been an ongoing area of research for several decades. Only recently have research efforts resulted in the development of several vaccine candidates that are further along in clinical trials. The majority of the barriers surrounding tuberculosis vaccine development are related to the lack of defined biomarkers for tuberculosis protective immunity and the lack of understanding of the complex interactions between the host and pathogen in the human immune system. As a result, testing various antigens discovered through molecular biology techniques have been only with surrogates of protection and do not accurately predict protective immunity. This review will address new discoveries in latency antigens and new next-generation candidate vaccines that promise the possibility of sterile eradication. Also discussed are the potentially important roles of systems biology and vaccinomics in shortening development of an efficacious tuberculosis vaccine through utilization of high-throughput technology, computer modelling and integrative approaches.

摘要

结核病在全球范围内广泛流行,且难以控制。目前的卡介苗对成人肺结核的保护作用不可靠。因此,结核病疫苗的研发是几十年来持续进行的研究领域。直到最近,研究工作才取得了一些进展,开发出了几种候选疫苗,这些疫苗在临床试验中进展得更快。阻碍结核病疫苗研发的主要原因是缺乏明确的结核病保护性免疫生物标志物,以及对宿主与病原体在人体免疫系统中复杂相互作用的理解不足。因此,通过分子生物学技术发现的各种抗原的测试只能使用保护替代物,不能准确预测保护性免疫。本文将讨论潜伏抗原的新发现和新一代候选疫苗,它们有可能实现无菌根除。此外,还讨论了系统生物学和疫苗组学在利用高通量技术、计算机建模和综合方法缩短有效结核病疫苗研发方面的潜在重要作用。

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