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Deficiency of bid protein reduces sepsis-induced apoptosis and inflammation, while improving septic survival.

机译:缺乏蛋白质减少sepsis-induced投标细胞凋亡和炎症,而改善败血性的生存。

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摘要

Increased apoptotic cell death is believed to play a pathological role in patients with sepsis and experimental animals. Apoptosis can be induced by either a cell death receptor (extrinsic) or a mitochondrial (intrinsic) pathway. Bid, a proapoptotic member of the Bcl-2 family, is thought to mediate the cross talk between the extrinsic and intrinsic pathways of apoptosis; however, little is known about the action of Bid in the development of apoptosis and organ-specific tissue damage/cell death as seen in polymicrobial sepsis. Our results show that after the onset of sepsis, tBid (the active form of Bid) is significantly increased in mitochondrial fractions of the thymus, spleen, Peyer patches, and liver, and that Fas or FasL deficiency blocks Bid activation in various tissues after septic challenge. Increased Bid activation is correlated with increased active caspase-3, caspase-9, and apoptosis during sepsis. Bid-deficient mice exhibit significantly reduced apoptosis in the thymus, spleen, and Peyer patches compared with background mice after sepsis. Furthermore, Bid-deficient mice had significantly reduced systemic and local inflammatory cytokine levels and improved survival after sepsis. These data support not only the contribution of Bid to sepsis-induced apoptosis and the onset of septic morbidity/mortality, but also the existence of a bridge between extrinsic apoptotic signals, e.g., FasL:Fas, TNF:TNFR, and so on, and the intrinsic mitochondrial pathway via Bid-tBid activation during sepsis.
机译:增加凋亡细胞死亡被认为是玩在脓毒症患者和一个病态的作用实验动物。细胞死亡受体(外在)或线粒体(内在)的途径。proapoptotic bcl - 2家族的成员认为调解之间的相声外在和内在的细胞凋亡的途径;然而,对收购的作用在细胞凋亡和的发展瀑特异组织损伤/细胞死亡脓毒症在幼童腹壁薄弱。脓毒症的发病之后,tBid(活动形式投标)显著增加线粒体的分数胸腺、脾、集合淋巴结补丁,和肝脏,Fas和FasL缺块激活各投标组织后感染性的挑战。激活与增加活跃caspase-3、caspase-9和细胞凋亡脓毒症。减少细胞凋亡胸腺,脾脏,集合淋巴结补丁与背景相比,老鼠后脓毒症。显著降低系统性和地方炎性细胞因子水平,改善脓毒症后生存。只为了sepsis-induced的贡献细胞凋亡和脓毒性的发作发病率和死亡率,但也存在外在凋亡信号之间的桥梁,如FasL: Fas, TNF: TNFR,等等,和内在通过Bid-tBid激活线粒体途径在脓毒症。

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