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The P38alpha and P38delta MAP kinases may be gene therapy targets in the future treatment of severe burns.

机译:P38alpha和P38delta MAP激酶可能的基因治疗目标在未来治疗严重烧伤。

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摘要

Microvascular barrier damage, induced by thermal injury, imposes life-threatening problems owing to the pathophysiological consequences of plasma loss and impaired perfusion that finally may lead to multiple organ failure. The aim of the present study was to define the signaling role of selected mitogen-activated protein kinases (MAPKs) in general vessel hyperpermeability caused by burns and to look for a potential gene therapy. Rearrangement of cytoskeletons and cell tight junctions were evaluated by phalloidin labeling of actin and immunocytochemical demonstration of the ZO-1 protein, whereas blood vessel permeability was evaluated by a fluorescence ratio technique. The p38 MAPK inhibitor SB203580 largely blocked burn serum-induced stress-fiber formation and tight-junction damage. Using the adenoviral approach to transfect dominant negative forms of p38 MAPKs, we found that p38alpha and p38delta had similar effects. The in vivo part of the study showed that transfection of these two constructs significantly lowered general venular hyperpermeability and enhanced the survival of burned animals. Because the p38 MAPK pathway seems to play a crucial role in burn-induced vascular hyperpermeability, general transfection with p38 MAP dominant negative constructs might become a new therapeutic method to block burn-induced plasma leakage.
机译:微血管屏障损伤,引起热由于受伤,对危及生命的问题等离子体的病理生理后果损失和灌注受损,最终可能导致多器官功能衰竭。研究定义的信号作用选择增殖蛋白激酶(MAPKs)一般船研究进展引起的烧伤和寻找潜在的基因治疗。紧密连接被phalloidin评估标签的肌动蛋白和采用演示ZO-1蛋白,而血渗透率是评价荧光比率技术。抑制剂SB203580很大程度上阻止燃烧serum-induced stress-fiber形成和紧密连接的破坏。使转染方法占主导地位的否定形式p38 MAPKs,我们发现p38alpha p38delta有类似的效果。研究表明,这两种转染结构一般小静脉的显著降低研究进展和增强的生存燃烧的动物。似乎在burn-induced起到至关重要的作用血管研究,一般的转染与显性负p38地图构造成为一种新的治疗方法burn-induced等离子渗漏。

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