在凋亡动物模型中,烟酰胺-肉桂酸鸡尾酒通过ERK1/2信号通路影响胰腺β细胞存活和胰岛素分泌。

Syed Ali Raza Shah, M Israr Khan, Hira Jawaid, Urooj Qureshi, Zaheer Ul-Haq, M Rahman Hafizur
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引用次数: 0

摘要

目的:胰腺β细胞保护是糖尿病患者胰岛素分泌的重要组成部分。在此背景下,我们采用链脲佐菌素(STZ)诱导的胰腺细胞凋亡模型,研究肉桂酸联合烟酰胺对胰岛素分泌和胰腺β细胞凋亡的调节作用。方法:采用组织病理学、免疫荧光、分子对接、RT-PCR等方法研究烟酰胺(NA)-肉桂酸(CA)处理大鼠胰脏,并结合血清葡萄糖和胰岛素水平进行研究。结果:生化数据显示,NA和CA联合急性治疗可显著提高血清胰岛素水平,从而降低体内血糖水平。从组织学结果来看,NA-CA预处理对stz细胞凋亡趋势有明显的保护作用,改善胰岛素分泌,并将stz诱导的细胞形态重现于正常对照。stz处理引起的caspases表达上调,在NA-CA的免疫荧光检测和翻译水平上分别显著下调。我们发现密集的ERK½-胰岛素染色和p-ERK½表达,这进一步得到了基于硅分析的强ERK½残基-配体相互作用的支持。结论:从临床前数据,我们得出NA-CA鸡尾酒通过靶向ERK 1 / 2通路在胰腺β细胞中发挥胰岛素释放和生存的双重作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Nicotinamide-cinnamic acid cocktail exerts pancreatic β-cells survival coupled with insulin secretion through ERK1/2 signaling pathway in an animal model of apoptosis.

Nicotinamide-cinnamic acid cocktail exerts pancreatic β-cells survival coupled with insulin secretion through ERK1/2 signaling pathway in an animal model of apoptosis.

Purpose: Pancreatic β-cells protection is integral to insulin secretion in diabetic conditions. In this context, we investigated cinnamic acid in combination with nicotinamide on the regulation of insulin secretion and apoptosis in pancreatic β-cells using streptozotocin (STZ)-induced apoptotic model in vivo.

Methods: The pancreata of nicotinamide (NA)-cinnamic acid (CA) treated rats were studied using histopathological, immunofluorescence, molecular docking, and RT-PCR analyses, supported by serum glucose and insulin levels.

Results: The biochemical data revealed that the acute treatment of NA and CA in combination significantly increased serum insulin, thereby lowering blood glucose level in vivo. From histological findings, NA-CA pre-treatment displayed significant protection against STZ-apoptotic trends, improved insulin secretion, and recapitulated the STZ-induced morphology to normal control. The upregulated expressions of caspases, caused by STZ-treatments, were significantly downregulated with NA-CA in immunofluorescent detection and their translational levels, respectively. We found dense ERK½-insulin staining and p-ERK½ expression, which was further supported by strong ERK½ residues-ligands interactions based on in silico analysis.

Conclusion: From the pre-clinical data, we thus conclude that NA-CA cocktail exerts dual insulin releasing and survival effects in pancreatic β-cells by targeting ERK½ pathway.

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