首页> 美国卫生研究院文献>Infection and Immunity >Release of tumor necrosis factor alpha in response to Vibrio vulnificus capsular polysaccharide in in vivo and in vitro models.
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Release of tumor necrosis factor alpha in response to Vibrio vulnificus capsular polysaccharide in in vivo and in vitro models.

机译:在体内和体外模型中响应于创伤弧菌荚膜多糖释放肿瘤坏死因子α。

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摘要

Vibrio vulnificus produces a severe septic shock syndrome in susceptible individuals. Virulence of the bacterium has been closely linked to the presence of a surface-exposed acidic capsular polysaccharide (CPS). To investigate whether CPS plays an additional role in pathogenesis by modulating inflammatory-associated cytokine production, studies were initiated in a mouse model and followed by investigations of cytokine release from human peripheral blood mononuclear cells (PBMCs). Mouse tumor necrosis factor alpha (TNF-alpha) could be detected in serum up to 12 h postinoculation in animals challenged with the encapsulated parent strain MO6-24/O. The unencapsulated strain CVD752 was quickly eliminated by the animals, thus preventing a direct association between serum TNF-alpha levels and the presence or absence of the CPS. Purified CPS from MO6-24/O when injected into D-galactosamine-sensitized mice was a more immediate inducer of TNF-alpha than an equivalent quantity of MO6-24/O lipopolysaccharide (LPS). Both V. vulnificus CPS and V. vulnificus LPS induced inflammation-associated cytokine responses from primary human PBMCs in vitro. CPS elicited TNF-alpha from PBMCs in a dose-dependent manner, with maximal induction at 6 to 10 h, and was not inhibited by polymyxin B. Expression of interleukin-6 (IL-6) mRNAs was also induced in the presence of CPS. Interestingly, while adherent PBMCs secreted high levels of TNF-alpha after stimulation with LPS, they secreted little TNF-alpha in response to CPS. These studies provide evidence that V. vulnificus CPS directly stimulates the expression and secretion of proinflammatory cytokines by murine and human cells and suggest that CPS activation of PBMCs operates through a cellular mechanism distinct from that of LPS.
机译:创伤弧菌在易感人群中产生严重的败血性休克综合症。细菌的毒性与表面暴露的酸性荚膜多糖(CPS)的存在密切相关。为了研究CPS是否通过调节炎症相关细胞因子的产生在发病机制中发挥其他作用,在小鼠模型中启动了研究,然后研究了人类外周血单核细胞(PBMC)释放的细胞因子。在用封装的亲本菌株MO6-24 / O攻击的动物中,接种后长达12 h的血清中可检测到小鼠肿瘤坏死因子α(TNF-alpha)。动物迅速消除了未包封的菌株CVD752,从而防止了血清TNF-α水平与CPS的存在与否之间的直接联系。与等量的MO6-24 / O脂多糖(LPS)相比,从MO6-24 / O纯化的CPS注射到D-半乳糖胺致敏的小鼠中时,是TNF-α的更直接诱导剂。 V. vulnificus CPS和V. vulnificus LPS均可在体外从原代人PBMC诱导炎症相关的细胞因子反应。 CPS以剂量依赖的方式从PBMC诱导TNF-α,在6至10 h诱导最大,且不受多粘菌素B的抑制。在CPS存在下,白介素6(IL-6)mRNA的表达也被诱导。 。有趣的是,虽然粘附的PBMC在LPS刺激后分泌高水平的TNF-α,但它们对CPS的反应却很少分泌TNF-α。这些研究提供了证据,V。vulnificus CPS直接刺激鼠和人细胞促炎细胞因子的表达和分泌,并表明PBMC的CPS激活通过不同于LPS的细胞机制起作用。

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