Toxins of the Helicobacter Genus and Their Roles in Pathogenesis

S. Hynes, T. Wadström
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引用次数: 1

Abstract

In the 20 years since the discovery of Helicobacter pylori the number of formally described Helicobacter spp. has increased dramatically. The majority of species in the genus have been associated with some form of pathology. Similar to other Gram‐negative bacteria, all helicobacters have lipopolysaccharides or endotoxins in the outer leaflet of their outer membrane which is an important modulator of the immune system. H. pylori endotoxin has a number of roles in the pathogenesis of the bacterium. Its relatively low biological and immunological activity and molecular mimicry may contribute to the chronic nature of infection through avoidance of host defence mechanisms and adhesion. In addition to endotoxins, various helicobacters also secrete distinct exotoxins capable of host cell damage. H. pylori has been shown to possess a cytotoxin capable of inducing vacuoles in epithelial cells termed vacuolating cytotoxin or VacA. Although VacA has a number of roles in the pathogenesis of H. pylori its use as a predictor of clinical outcome has yet to be established. In addition, similar to the closely related Campylobacter jejuni, a number of enterohepatic helicobacters express a cytolethal distending toxin capable of inducing severe cell damage in vivo and in vitro. Both endotoxins and exotoxins may play a combined role in the pathogenesis of Helicobacter spp. Both toxin types have been identified as being present on outer membrane vesicles shed by H. pylori which may act as antigen delivery vehicles and contribute to pathogenesis.
幽门螺杆菌属毒素及其在发病中的作用
自从幽门螺杆菌被发现以来的20年里,被正式描述的幽门螺杆菌的数量急剧增加。该属的大多数物种都与某种形式的病理有关。与其他革兰氏阴性菌类似,所有幽门螺杆菌的外膜外小叶中都含有脂多糖或内毒素,这是免疫系统的重要调节剂。幽门螺杆菌内毒素在细菌的发病机制中有许多作用。其相对较低的生物学和免疫学活性和分子拟态可能通过避免宿主防御机制和粘附而导致感染的慢性性质。除了内毒素,各种幽门螺杆菌还分泌不同的外毒素,能够损伤宿主细胞。幽门螺杆菌已被证明具有一种细胞毒素,能够在上皮细胞中诱导空泡,称为空泡细胞毒素或VacA。尽管VacA在幽门螺杆菌的发病机制中有许多作用,但其作为临床结果预测因子的用途尚未确定。此外,与密切相关的空肠弯曲杆菌类似,许多肠肝螺杆菌表达一种细胞致死膨胀毒素,能够在体内和体外诱导严重的细胞损伤。内毒素和外毒素可能在幽门螺杆菌的发病过程中共同发挥作用,这两种毒素都存在于幽门螺杆菌脱落的外膜囊泡中,它们可能作为抗原递送载体并参与致病。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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