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腔内聚乙二醇稳定紧密连接,改善大鼠肠保存。

Intraluminal polyethylene glycol stabilizes tight junctions and improves intestinal preservation in the rat.

机构信息

The Transplant Institute, Sahlgrenska University Hospital, Sweden.

出版信息

Am J Transplant. 2012 Aug;12(8):2044-51. doi: 10.1111/j.1600-6143.2012.04067.x. Epub 2012 Apr 30.

Abstract

Rapidly progressing mucosal breakdown limits the intestinal preservation time below 10 h. Recent studies indicate that intraluminal solutions containing polyethylene glycol (PEG) alleviate preservation injury of intestines stored in UW-Viaspan. We investigated whether a low-sodium PEG solution is beneficial for intestines stored in histidine-tryptophane-ketoglutarate (HTK) preservation solution. Rat intestines used as control tissue (group 1) were perfused with HTK, groups 2 and 3 received either a customized PEG-3350 (group 2) or an electrolyte solution (group 3) intraluminally before cold storage. Tissue injury, brush-border maltase activity, zonula occludens-1 (ZO-1) and claudin-3 expression in the tight junctions (TJ) were analyzed after 8, 14 and 20 h. We measured epithelial resistance and permeability (Ussing chamber) after 8 and 14 h. Group 2 had superior morphology while maltase activity was similar in all groups. TJ proteins rapidly decreased and decolocalized in groups 1 3; these negative events were delayed in group 2, where colocalization persisted for about 14 h. Intestines in group 2 had higher epithelial resistance and lower permeability than the other groups. These results suggest that a customized PEG solution intraluminally reduces the intestinal preservation injury by improving several major epithelial characteristics without negatively affecting the brush-border enzymes or promoting edema.

摘要

快速进展的黏膜破裂将肠道保存时间限制在 10 小时以下。最近的研究表明,含有聚乙二醇(PEG)的腔内溶液可减轻 UW-Viaspan 保存的肠道保存损伤。我们研究了低钠 PEG 溶液是否有益于保存在组氨酸-色氨酸-酮戊二酸(HTK)保存液中的肠道。大鼠肠道作为对照组织(第 1 组)用 HTK 灌注,第 2 组和第 3 组在冷储存前分别用定制的 PEG-3350(第 2 组)或电解质溶液(第 3 组)腔内灌注。在 8、14 和 20 小时后分析组织损伤、刷状缘麦芽糖酶活性、紧密连接(TJ)中的闭合蛋白-1(ZO-1)和闭合蛋白-3 表达。在 8 和 14 小时后测量上皮电阻和通透性(Ussing 室)。第 2 组形态较好,而各组麦芽糖酶活性相似。TJ 蛋白在第 1 组 3 中迅速减少并脱定位;这些负面事件在第 2 组中延迟,其中共定位持续约 14 小时。第 2 组的肠道上皮电阻较高,通透性较低。这些结果表明,腔内使用定制的 PEG 溶液通过改善几个主要的上皮特征来减轻肠道保存损伤,而不会对刷状缘酶产生负面影响或促进水肿。

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