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首页> 外文期刊>Infection and immunity >Shiga toxin-associated hemolytic uremic syndrome: combined cytotoxic effects of shiga toxin and lipopolysaccharide (endotoxin) on human vascular endothelial cells in vitro.
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Shiga toxin-associated hemolytic uremic syndrome: combined cytotoxic effects of shiga toxin and lipopolysaccharide (endotoxin) on human vascular endothelial cells in vitro.

机译:志贺毒素相关的溶血性尿毒症综合征:志贺毒素和脂多糖(内毒素)在体外对人血管内皮细胞的联合细胞毒作用。

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This study explores the in vitro relationship between Shiga toxin-producing Shigella spp. and Escherichia coli and the development of vascular complications in humans following bacillary dysentery. We propose that lipopolysaccharide (LPS; endotoxin) may combine with Shiga toxin to facilitate vascular damage characteristic of hemolytic uremic syndrome. We have examined the direct cytotoxic effects of Shiga toxin and LPS on human umbilical vein endothelial cells (HUVEC) in culture. Shiga toxin alone was cytotoxic to HUVEC, whereas LPS was noncytotoxic at concentrations at or below 10 micrograms/ml. Combinations of LPS with Shiga toxin resulted in a synergistic cytotoxic effect. The synergistic cytotoxic response of HUVEC to Shiga toxin plus LPS was dose dependent for both agents and was maximal at 24 h of exposure. This synergistic response was enhanced by preincubation of HUVEC with LPS. LPS (1 micrograms/ml) alone depressed HUVEC protein synthesis in a transient manner and enhanced the protein synthesis-inhibiting activity of Shiga toxin. The synergistic cytotoxic activity of LPS analogs was as follows, in decreasing order: complete LPS = diphosphoryl lipid A greater than monophosphoryl lipid A greater than deacylated LPS. These results are consistent with a role for Shiga toxin and LPS in the development of hemolytic uremic syndrome at the level of the vascular endothelium in humans.
机译:本研究探讨了产志贺毒素的志贺氏菌之间的体外关系。和大肠杆菌以及细菌性痢疾后人类血管并发症的发展。我们建议脂多糖(LPS;内毒素)可以与志贺毒素结合,以促进溶血性尿毒症综合征的血管损伤特征。我们已经检查了志贺毒素和LPS对培养的人脐静脉内皮细胞(HUVEC)的直接细胞毒性作用。单独的志贺毒素对HUVEC具有细胞毒性,而LPS在10微克/毫升或更低的浓度下无细胞毒性。 LPS与志贺毒素的组合产生协同的细胞毒性作用。 HUVEC对志贺毒素加LPS的协同细胞毒性反应对两种药物均呈剂量依赖性,并且在暴露后24小时达到最大。 HUVEC与LPS的预孵育增强了这种协同反应。单独的LPS(1微克/毫升)以短暂的方式抑制HUVEC蛋白质合成,并增强了志贺毒素的蛋白质合成抑制活性。 LPS类似物的协同细胞毒活性按降序排列:完整LPS =二磷酰基脂质A大于单磷酰基脂质A大于脱酰LPS。这些结果与志贺毒素和LPS在人血管内皮水平上在溶血性尿毒症综合征的发展中的作用一致。

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