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Heat shock protein 70, heat shock protein 32, and vascular endothelial growth factor production and their effects on lipopolysaccharide-induced apoptosis in porcine aortic endothelial cells

机译:热休克蛋白70,热休克蛋白32和血管内皮生长因子的产生及其对脂多糖诱导的猪主动脉内皮细胞凋亡的影响

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摘要

Lipopolysaccharide (LPS) is a highly proactive molecule that causes in vivo a systemic inflammatory response syndrome and activates in vitro the inflammatory pathway in different cellular types, including endothelial cells (EC). Because the proinflammatory status could lead to EC injury and apoptosis, the expression of proinflammatory genes must be finely regulated through the induction of protective genes. This study aimed at determining whether an LPS exposure is effective in inducing apoptosis in primary cultures of porcine aortic endothelial cells and in stimulating heat shock protein (Hsp)70 and Hsp32 production as well as vascular endothelial growth factor (VEGF) secretion. Cells between third and eighth passage were exposed to 10 μg/mL LPS for 1, 7, 15, and 24 hours (time-course experiments) or to 1, 10, and 100 μg/mL LPS for 7 and 15 hours (dose-response experiments). Apoptosis was not affected by 1 μg/mL LPS but significantly increased in a dose-dependent manner with the highest LPS doses. Furthermore, apoptosis rate increased only till 15 hours of LPS exposure. LPS stimulated VEGF secretion in a dose-dependent manner; its effect became significant after 7 hours and reached a plateau after 15 hours. Both Hsp70 and Hsp32 expressions were induced by LPS in a dose-dependent manner after 7 hours. Subsequent studies were addressed to evaluate the protective role of Hsp32, Hsp70, and VEGF. Hemin, an Hsp32 inducer (5, 20, 50 μM), and recombinant VEGF (100 and 200 ng/mL), were added to the culture 2 hours before LPS (10 μg/mL for 24 hours); to induce Hsp70 expression, cells were heat shocked (42°C for 1 hour) 15 hours before LPS (10 μg/mL for 24 hours). Hemin exposure upregulated Hsp32 expression in a dose-dependent manner and protected cells against LPS-induced apoptosis. Heat shock (HS) stimulated Hsp70 expression but failed to reduce LPS-induced apoptosis; VEGF addition did not protect cells against LPS-induced apoptosis at any dose tested. Nevertheless, when treatments were associated, a reduction of LPS-induced apoptosis was always observed; the reduction was maximal when all the treatments (HS + Hemin + VEGF) were associated. In conclusion, this study demonstrates that LPS is effective in evoking “the heat shock response” with an increase of nonspecific protective molecules (namely Hsp70 and Hsp32) and of VEGF, a specific EC growth factor. The protective role of Hsp32 was also demonstrated. Further investigations are required to clarify the synergic effect of Hsp32, Hsp70, and VEGF, thus elucidating the possible interaction between these molecules.
机译:脂多糖(LPS)是一种高度活跃的分子,可在体内引起全身性炎症反应综合征,并在体外激活包括内皮细胞(EC)在内的不同细胞类型的炎症途径。由于促炎状态可能导致EC损伤和凋亡,因此必须通过诱导保护性基因来精细调节促炎基因的表达。这项研究旨在确定LPS暴露是否有效诱导猪主动脉内皮细胞原代培养中的凋亡以及刺激热休克蛋白(Hsp)70和Hsp32的产生以及血管内皮生长因子(VEGF)的分泌。将第三和第八次传代之间的细胞分别暴露于10μg/ mL LPS 1、7、15和24小时(时程实验)或暴露于1、10和100μg/ mL LPS 7和15小时(剂量-响应实验)。细胞凋亡不受1μg/ mL LPS的影响,但以最高LPS剂量的剂量依赖性方式显着增加。此外,直到LPS暴露15小时,细胞凋亡率才增加。 LPS以剂量依赖性方式刺激VEGF的分泌; 7小时后其作用变得显着,而15小时后达到稳定。 7小时后,LPS以剂量依赖的方式诱导Hsp70和Hsp32的表达。随后的研究旨在评估Hsp32,Hsp70和VEGF的保护作用。在LPS(10μg/ mL持续24小时)前2小时,将Hsp32诱导剂(5、20、50μM)和重组VEGF(100和200 ng / mL)Hemin加入培养液中;为了诱导Hsp70表达,在LPS(10μg/ mL持续24小时)之前15小时将细胞进行热激(42°C持续1小时)。血红素暴露以剂量依赖性方式上调Hsp32表达,并保护细胞抵抗LPS诱导的细胞凋亡。热休克(HS)刺激Hsp70表达,但未能减少LPS诱导的细胞凋亡。在任何测试剂量下,添加VEGF均不能保护细胞抵抗LPS诱导的凋亡。然而,当联合治疗时,总是观察到LPS诱导的凋亡减少。当所有治疗(HS + Hemin + VEGF)都联合使用时,减少量最大。总而言之,这项研究表明LPS可以通过增加非特异性保护分子(即Hsp70和Hsp32)和特定EC生长因子VEGF的作用来有效引起“热休克反应”。还证明了Hsp32的保护作用。需要进一步的研究来阐明Hsp32,Hsp70和VEGF的协同作用,从而阐明这些分子之间可能的相互作用。

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