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[脓毒症综合征中的肠-肝-肺轴]

[ The intestine-liver-lung axis in septic syndrome].

作者信息

Pugin J, Chevrolet J C

机构信息

Clinique de médecine II, Hôpital cantonal universitaire de Genève.

出版信息

Schweiz Med Wochenschr. 1991 Oct 19;121(42):1538-44.

PMID:1947949
Abstract

Abacteremic sepsis is frequent in intensive care units, and is closely associated with the development of adult respiratory distress syndrome (ARDS) and multiple systems organ failure (MSOF). It carries a high mortality. The gut is thought to be the "motor" of such septic states and the first step of a "gut-liver-lung axis". Shock of any type or sepsis can by themselves lead to increased permeability of the intestinal mucosal barrier. This, in turn, may promote bacterial translocation, i.e. the passage of bacteria or bacterial products such as endotoxin from the lumen of the gut into the portal bloodstream. When such products reach the liver, activation of Küpffer cells occurs, resulting in the secretion of pro-inflammatory and hypotensive mediators. The latter are mainly the tumor necrosis factor-alpha and interleukins-1 and -6. These substances trigger many biologic cascades, and may explain the development of abacteremic septic states and MSOF. The mediators cause binding of polymorphonuclear neutrophils to pulmonary endothelial cells, and their degranulation. In addition, they activate local and systemic coagulation mechanisms. This explains the morphological changes observed in early sepsis-induced ARDS, i.e. pulmonary edema, vascular thrombosis and hemorrhages. Studies are currently in progress in an attempt to limit bacterial and endotoxin translocation and the action of the mediators.

摘要

无细菌血症的脓毒症在重症监护病房很常见,并且与成人呼吸窘迫综合征(ARDS)和多系统器官衰竭(MSOF)的发生密切相关。其死亡率很高。肠道被认为是此类脓毒症状态的“驱动因素”以及“肠 - 肝 - 肺轴”的第一步。任何类型的休克或脓毒症本身都可导致肠黏膜屏障通透性增加。这进而可能促进细菌移位,即细菌或细菌产物(如内毒素)从肠腔进入门静脉血流。当这些产物到达肝脏时,库普弗细胞被激活,导致促炎和降压介质的分泌。后者主要是肿瘤坏死因子 -α以及白细胞介素 -1和 -6。这些物质引发许多生物级联反应,并可能解释无细菌血症性脓毒症状态和MSOF的发生。这些介质导致多形核中性粒细胞与肺内皮细胞结合并使其脱颗粒。此外,它们激活局部和全身凝血机制。这解释了在早期脓毒症诱导的ARDS中观察到的形态学变化,即肺水肿、血管血栓形成和出血。目前正在进行研究,试图限制细菌和内毒素移位以及介质的作用。

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