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High mobility group box 1 and adenosine are both released by endothelial cells during hypothermic preservation

机译:低温保存过程中内皮细胞释放高迁移率的第1盒和腺苷

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摘要

Hypothermic preservation of solid allografts causes profound damage of vascular endothelial cells. This, in turn, might activate innate immunity. In the present study we employed an in vitro model to study to what extent supernatants of damaged endothelial cells are able to activate innate immunity and to study the nature of these signals. The expression of high mobility group box 1 (HMGB1) and adhesion molecules on human umbilical vein endothelial cell was studied by immunofluorescence, fluorescence activated cell sorter and Western blotting. Cytokine production was performed by enzyme-linked immunosorbent assay. HMGB1 expression was lost completely in endothelial cells after hypothermic preservation. This was associated with cell damage as it occurred only in untreated endothelial cell but not in cells rendered resistant to hypothermia-mediated damage by dopamine treatment. Only supernatants from hypothermia susceptible cells up-regulated the expression of interleukin (IL)-8 and adhesion molecules in cultured endothelial cells in an HMGB1-dependent manner. In whole blood assays, both supernatants of hypothermia susceptible and resistant cells inhibited tumour necrosis factor (TNF)-α production concomitantly with an increased IL-10 secretion. The activity of the supernatants was already found after 6 h of hypothermic preservation, and paralleled the decrease in intracellular adenosine triphosphate (ATP) levels. Modulation of TNF-α and IL-10 production by these supernatants was abrogated completely by prior treatment with adenosine deaminase and was similar to the response of an A2R agonist. Our study demonstrates that both HMGB1 and adenosine are released during hypothermic preservation. While release of HMGB1 is caused by cell damage, release of adenosine seems to be related to ATP hydrolysis, occurring in both susceptible and resistant cells.
机译:低温保存固体同种异体移植物会严重损害血管内皮细胞。反过来,这可能会激活先天免疫。在本研究中,我们采用了体外模型来研究受损内皮细胞的上清液在多大程度上能够激活先天免疫力并研究这些信号的性质。通过免疫荧光,荧光激活细胞分选仪和Western blotting研究高迁移率族盒1(HMGB1)和黏附分子在人脐静脉内皮细胞上的表达。通过酶联免疫吸附测定法进行细胞因子的产生。低温保存后,HMGB1表达完全消失在内皮细胞中。这与细胞损伤有关,因为它仅在未处理的内皮细胞中发生,而在对多巴胺治疗对体温过低介导的损伤具有抗性的细胞中不发生。仅低温敏感细胞的上清液以HMGB1依赖性方式上调培养的内皮细胞中白介素(IL)-8和粘附分子的表达。在全血测定中,对体温过低敏感的细胞和耐药细胞的上清液均会抑制肿瘤坏死因子(TNF)-α的产生,同时增加IL-10的分泌。低温保存6小时后就已经发现上清液的活性,并且与细胞内三磷酸腺苷(ATP)水平的下降相平行。这些上清液对TNF-α和IL-10产生的调节作用,在事先用腺苷脱氨酶处理后完全消失了,与A2R激动剂的反应相似。我们的研究表明,HMGB1和腺苷在低温保存过程中均被释放。尽管HMGB1的释放是由细胞损伤引起的,但腺苷的释放似乎与ATP水解有关,在易感细胞和耐药细胞中均会发生。

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