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Bacterial programmed cell death of cerebral endothelial cells involves dual death pathways

机译:脑内皮细胞的细菌程序性细胞死亡涉及双重死亡途径

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摘要

Major barriers separating the blood from tissue compartments in the body are composed of endothelial cells. Interaction of bacteria with such barriers defines the course of invasive infections, and meningitis has served as a model system to study endothelial cell injury. Here we report the impressive ability of Streptococcus pneumoniae, clinically one of the most important pathogens, to induce 2 morphologically distinct forms of programmed cell death (PCD) in brain-derived endothelial cells. Pneumococci and the major cytotoxins H202 and pneumolysin induce apoptosis-like PCD independent of TLR2 and TLR4. On the other hand, pneumococcal cell wall, a major proinflammatory component, causes caspase-driven classical apoptosis that is mediated through TLR2. These findings broaden the scope of bacterial-induced PCD, link these effects to innate immune TLRs, and provide insight into the acute and persistent phases of damage during meningitis.
机译:将血液与人体内的组织区分开的主要屏障是内皮细胞。细菌与此类屏障的相互作用定义了侵袭性感染的过程,而脑膜炎已成为研究内皮细胞损伤的模型系统。在这里,我们报告了肺炎链球菌(临床上最重要的病原体之一)在脑源性内皮细胞中诱导2种形态独特的程序性细胞死亡(PCD)的惊人能力。肺炎球菌和主要的细胞毒素H202和肺炎球菌溶血素诱导细胞凋亡样PCD,独立于TLR2和TLR4。另一方面,肺炎球菌的细胞壁是主要的促炎成分,可导致caspase驱动的经典凋亡,该凋亡通过TLR2介导。这些发现扩大了细菌诱导的PCD的范围,将这些作用与先天性免疫TLR相关联,并提供了对脑膜炎期间损害的急性和持续阶段的了解。

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