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基于树突状细胞的体外初始人类 CD4+T 细胞的优化分析。

Optimization of a dendritic cell-based assay for the in vitro priming of naïve human CD4+ T cells.

机构信息

VaxDesign Corporation, 12612 Challenger Parkway, suite 365, Orlando, FL 32826, USA.

出版信息

J Immunol Methods. 2010 Feb 28;353(1-2):8-19. doi: 10.1016/j.jim.2009.11.006. Epub 2009 Nov 17.

DOI:10.1016/j.jim.2009.11.006
PMID:19925804
Abstract

Methods to prime human CD4(+) T cells in vitro would be of significant value for the pre-clinical evaluation of vaccine candidates and other immunotherapeutics. However, to date, there is no reliable method for the induction of primary human T cell responses in the laboratory. Here, we optimized a culture strategy incorporating highly purified lymphocytes and dendritic cells, in the absence of any exogenous growth factors, for the in vitro sensitization of naïve CD4(+) T cells against a variety of protein antigens. This fully autologous approach, which was superior to the more traditional PBMC assay for supporting the induction of primary human T helper cell responses in culture, elicited effector cells capable of producing a variety of Th cytokines, including IFNgamma, TNFalpha, IL-2, IL-5, IL-17 and IL-21, and memory cells that could be restimulated multiple times with a specific antigen. Through simple modifications to this culture method, we evaluated the role of dendritic cell maturation state and regulatory T cells on the sensitization of naïve T helper cells, which highlights its utility for addressing basic questions of human immunobiology. Finally, using the formulated yellow fever vaccine, YF-VAX (R), we provide a proof-of-concept demonstration of the utility of the system for evaluating the T cell immunogenicity of vaccine candidates in a pre-clinical setting.

摘要

在体外激活人 CD4(+) T 细胞的方法对于疫苗候选物和其他免疫疗法的临床前评估具有重要价值。然而,迄今为止,还没有可靠的方法在实验室中诱导原发性人 T 细胞反应。在这里,我们优化了一种培养策略,该策略结合了高度纯化的淋巴细胞和树突状细胞,在没有任何外源性生长因子的情况下,用于体外敏化针对各种蛋白质抗原的幼稚 CD4(+) T 细胞。这种完全自体的方法优于更传统的 PBMC 测定法,更有利于在培养物中诱导原发性人辅助性 T 细胞反应,可诱导产生多种 Th 细胞因子(包括 IFNgamma、TNFalpha、IL-2、IL-5、IL-17 和 IL-21)的效应细胞和能够多次被特定抗原再刺激的记忆细胞。通过对该培养方法进行简单的修改,我们评估了树突状细胞成熟状态和调节性 T 细胞在幼稚 T 辅助细胞致敏中的作用,这突出了其在解决人类免疫生物学基本问题方面的实用性。最后,使用制定的黄热病疫苗 YF-VAX(R),我们提供了一个概念验证,证明了该系统在临床前环境中评估疫苗候选物的 T 细胞免疫原性的实用性。

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