首页> 美国卫生研究院文献>Frontiers in Cellular Neuroscience >Distinctive Roles for α7*- and α9*-Nicotinic Acetylcholine Receptors in Inflammatory and Autoimmune Responses in the Murine Experimental Autoimmune Encephalomyelitis Model of Multiple Sclerosis
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Distinctive Roles for α7*- and α9*-Nicotinic Acetylcholine Receptors in Inflammatory and Autoimmune Responses in the Murine Experimental Autoimmune Encephalomyelitis Model of Multiple Sclerosis

机译:在多发性硬化症的小鼠实验性自身免疫性脑脊髓炎模型中α7*-和α9*-烟碱乙酰胆碱受体在炎症和自身免疫应答中的独特作用

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摘要

Previous studies have demonstrated immunosuppressive and anti-inflammatory effects of nicotine, including in the experimental autoimmune encephalomyelitis (EAE) model in mice of some forms of multiple sclerosis (MS). Other studies using knock-out (KO) mice have implicated nicotinic acetylcholine (ACh) receptors containing α7, α9, or β2 subunits (α7*-, α9*- or β2*-nAChR) in different, disease-exacerbating or disease-ameliorating processes. These outcomes are in harmony with gene expression analyses showing nAChR subunit mRNA in many classes of immune system cell types. Consistent with influences on disease status, predictable effects of nAChR subunit (and subtype) KO, or of nicotine exposure, are seen on immune cell numbers and distribution and on cytokine levels or other markers of immunity, inflammation, demyelination, and axonal degradation. Providing support for our hypotheses about distinctive roles for nAChR subtypes in EAE, here we have used direct and adoptive EAE induction and a nAChR subunit gene double knock-out (DKO) strategy. Immune cell expression of nAChR α9 subunits as protein is demonstrated by immunostaining of isolated CD4+, CD8+, CD11b+ and CD11c+ cells from wild-type (WT) mice, but not in cells from nAChR α9 subunit KO animals. Nicotine exposure is protective against directly-induced EAE in WT or α7/α9 DKO animals relative to effects seen in WT/vehicle-treated mice, but, remarkably, EAE is exacerbated in vehicle-treated α7/α9 DKO mice. Brain lesion volume and intra-cranial inflammatory activity similarly are higher in DKO/vehicle than in WT/vehicle-treated animals, although nicotine’s protective effects are seen in each instance. By contrast, in adoptive transfer studies, disease severity is attenuated and disease onset is delayed in recipients of splenocytes from WT animals treated with nicotine rather than with vehicle. Moreover, protection as seen in nicotine-treated WT animals is the same in recipients of splenocytes from nAChR α7/α9 DKO mice irrespective of their exposure to nicotine or vehicle. When combined with previous observations, these findings are consistent with disease exacerbation (or even induction) being mediated at least in part via α9*-nAChR in peripheral immune cells. They also suggest protective roles of central nervous system (CNS) α7*-nAChR. The results suggest that both α7*- and α9*-nAChR are potential targets of therapeutic ligands to modulate inflammation and autoimmunity.
机译:先前的研究表明尼古丁具有免疫抑制和抗炎作用,包括在多种形式的多发性硬化症(MS)小鼠的实验性自身免疫性脑脊髓炎(EAE)模型中。其他使用基因敲除(KO)小鼠的研究表明,烟碱型乙酰胆碱(ACh)受体具有不同,加剧或缓解疾病的α7,α9或β2亚基(α7*-,α9*-或β2* -nAChR)。流程。这些结果与基因表达分析一致,后者显示了许多类型的免疫系统细胞类型中的nAChR亚基mRNA。与疾病状况的影响一致,在免疫细胞数量和分布以及细胞因子水平或免疫,炎症,脱髓鞘和轴突降解的其他标志物上,可以观察到nAChR亚基(和亚型)KO或烟碱暴露的可预测作用。为我们关于nAChR亚型在EAE中的独特作用的假设提供支持,这里我们使用了直接和过继的EAE诱导和nAChR亚基基因双敲除(DKO)策略。通过分离的CD4 + ,CD8 + ,CD11b + 和CD11c +的免疫染色证明了nAChRα9亚基作为蛋白的免疫细胞表达来自野生型(WT)小鼠的细胞,但不是来自nAChRα9亚基KO动物的细胞。相对于WT /载体治疗的小鼠中观察到的作用,烟碱暴露对WT或α7/α9DKO动物中的直接诱导的EAE具有保护作用,但是,显着地,在媒介物治疗的α7/α9DKO小鼠中EAE会加剧。尽管在每种情况下都可以观察到尼古丁的保护作用,但DKO /车辆的脑病变量和颅内炎症活性比WT /车辆处理的动物高。相比之下,在过继转移研究中,用尼古丁而非媒介物治疗过的野生动物脾细胞受体的疾病严重程度得到减轻,疾病发作被延迟。此外,在接受尼古丁治疗的野生动物中,nAChRα7/α9DKO小鼠的脾细胞接受者的保护是相同的,而不管其接触尼古丁或媒介物如何。当与先前的观察结果结合时,这些发现与至少部分通过外周免疫细胞中的α9* -nAChR介导的疾病恶化(甚至诱导)相一致。他们还建议中枢神经系统(CNS)α7* -nAChR的保护作用。结果表明,α7*-和α9* -nAChR都是调节炎症和自身免疫的治疗性配体的潜在靶标。

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