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Exposure to Nicotine Adversely Affects the Dendritic Cell System and Compromises Host Response to Vaccination

机译:暴露于尼古丁会不利地影响树突状细胞系统并损害宿主对疫苗的反应

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The magnitude of Th1 cells response to vaccination is a critical factor in determining protection from clinical disease. Our previous in vitro studies suggested that exposure to the nicotine component of cigarette smoke skews the differentiation of both human and mouse dendritic cell (DC) precursors into atypical DCs (DCs differentiated ex vivo in the presence of nicotine) lacking parameters essential for the development of Th1-mediated immunity. In this study, we determined the causal relationship between nicotine-induced DC alterations and host response to vaccines. We show that animals exposed to nicotine failed to develop and maintain Ag-specific effector memory Th1 cells and Ab production to protein-based vaccine formulated with Th1 adjuvants. Accordingly, both prophylactic and therapeutic vaccines failed to protect and cure the nicotine-exposed mice from disease. More importantly, we demonstrate the nicotine-induced defects in the biological activities of in vivo DCs as an underlying mechanism. Indeed, i.v. administration of DCs differentiated in the presence of nicotine preferentially promoted the development of Ag-specific IL-4–producing effector cells in the challenged mice. In addition, DC subsets isolated from mice exposed to nicotine produced significantly less cytokines in response to Th1 adjuvants and inadequately supported the development of Ag-specific Th1 cells. Collectively, our studies suggest that nicotine-induced defects in the DC system compromises vaccine efficacy in smokers.
机译:Th1细胞对疫苗反应的强度是确定对临床疾病的保护的关键因素。我们之前的体外研究表明,暴露于香烟烟雾中的尼古丁成分会使人和小鼠树突状细胞(DC)前体向非典型DC(在尼古丁存在下离体分化的DC)的分化缺乏对发育过程至关重要的参数。 Th1介导的免疫力。在这项研究中,我们确定了尼古丁诱导的DC改变与宿主对疫苗的反应之间的因果关系。我们表明,暴露于尼古丁的动物未能发展和维持Ag特异性效应物记忆Th1细胞和由Th1佐剂配制的基于蛋白质的疫苗的Ab生产。因此,预防性和治疗性疫苗均不能保护和治愈暴露于尼古丁的小鼠免于疾病。更重要的是,我们证明了尼古丁诱导的体内DCs生物活性中的缺陷是一种潜在机制。的确,i.v。尼古丁存在下分化的DC的施用优先促进了受攻击小鼠中产生Ag的IL-4产生的效应细胞的发育。此外,从暴露于尼古丁的小鼠中分离出的DC亚群对Th1佐剂产生的细胞因子明显减少,并且不足以支持Ag特异性Th1细胞的发育。总体而言,我们的研究表明,尼古丁诱发的DC系统缺陷损害了吸烟者的疫苗效力。

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