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Merck

Heat stress pretreatment decreases lipopolysaccharide-induced apoptosis via the p38 signaling pathway in human umbilical vein endothelial cells.

Molecular medicine reports (2016-05-26)
Zhifeng Liu, Tianyu Zhong, Dong Zheng, Inga Cepinskas, Tianqing Peng, Lei Su
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The present study aimed to investigate vascular endothelial apoptosis, and the regulatory molecules involved in the condition of heatstroke caused by direct hyperthermia due to high core temperature and gutโ€‘derived endotoxemia. Human umbilical vascular endothelial cells (HUVECs) were isolated and treated with heat stress (43หšC for 1ย h), lipopolysaccharide (LPS; 1ย ยตg/ml), or a combination of heat stress pretreatment followed by LPS. Caspaseโ€‘3 activity, DNA fragmentation, and cell viability, determined using a 3โ€‘(4, 5โ€‘dimethyl thiazolโ€‘2โ€‘yl)โ€‘2,5โ€‘diphenyl tetrazolium bromide assay, were measured to examine cellular apoptosis. Changes in the expression levels of heat shock protein (HSP) 27, HSP90 and Bโ€‘cell lymphomaย 2 (Bclโ€‘2), and the phosphorylation of p38 were detected using Western blot assays. The specific inhibitor of p38, SB203580, was also used. LPS induced endothelial apoptosis, as indicated by increased caspaseโ€‘3 activity, a high level of DNA fragmentation and low cell viability. LPS also increased p38 phosphorylation and decreased the expression levels of HSP27, HSP90 and Bclโ€‘2. Heat stress pretreatment inhibited LPSโ€‘induced cellular apoptosis, increased the phosphorylation of p38, and increased the expression levels of HSP27, HSP90 and Bclโ€‘2. Pretreatment with SB203580 had effects similar to those of heat stress in the amelioration of LPSโ€‘induced effects. These findings demonstrated that heat stress pretreatment decreased LPSโ€‘induced Bclโ€‘2โ€‘associated apoptosis in HUVECs by attenuating p38 activation, thereby increasing the expression levels of HSP27 and HSP90.

MATERIALS
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Roche
Cell Proliferation Kit I (MTT)