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建立内质网应激的胰腺微环境模型:槲皮素通过诱导内皮细胞中一氧化氮-cGMP 信号转导减轻β细胞凋亡。

Establishment of pancreatic microenvironment model of ER stress: Quercetin attenuates β-cell apoptosis by invoking nitric oxide-cGMP signaling in endothelial cells.

机构信息

SRM Research Institute, SRM University, Kattankulathur, Chennai - 603 203, India.

Vascular Biology Lab, AU-KBC Research Centre, Anna University, Chromepet, Chennai - 600 044, India.

出版信息

J Nutr Biochem. 2018 May;55:142-156. doi: 10.1016/j.jnutbio.2017.12.012. Epub 2018 Jan 3.

Abstract

The involvement of endoplasmic reticulum (ER) stress in endothelial dysfunction and diabetes-associated complications has been well documented. Inhibition of ER stress represents a promising therapeutic strategy to attenuate endothelial dysfunction in diabetes. Recent attention has focused on the development of small molecule inhibitors of ER stress to maintain endothelial homeostasis in diabetes. Here we have developed a reliable, robust co-culture system that allows a study on the endothelial cells and pancreatic β-cells crosstalk under ER stress and validated using a known ER stress modulator, quercetin. Furthermore, sensitizing of endothelial cells by quercetin (25 μM) confers protection of pancreatic β-cells against ER stress through nitric oxide (NO) signaling. In addition, increased intracellular insulin and NO-mediated cyclic 3',5'-guanosine monophosphate (cGMP) levels in pancreatic β-cells further confirmed the mechanism of protection under co-culture system. In addition, the potential protein targets of quercetin against ER stress in the endothelial cells were investigated through proteomic profiling and its phosphoprotein targets through Bioplex analysis. On the whole, the developed in vitro co-culture set up can serve as a platform to study the signaling network between the endothelial and pancreatic β-cells as well as provides a mechanistic insight for the validation of novel ER stress modulators.

摘要

内质网(ER)应激在内皮功能障碍和糖尿病相关并发症中的作用已得到充分证实。抑制 ER 应激代表了一种有前途的治疗策略,可以减轻糖尿病中的内皮功能障碍。最近的研究重点集中在开发内质网应激的小分子抑制剂上,以维持糖尿病中的内皮稳态。在这里,我们开发了一种可靠、强大的共培养系统,允许在 ER 应激下研究内皮细胞和胰腺β细胞的串扰,并使用已知的 ER 应激调节剂槲皮素进行了验证。此外,通过使用 25 μM 的槲皮素敏化内皮细胞,可以通过一氧化氮(NO)信号赋予胰腺β细胞对抗 ER 应激的保护作用。此外,在共培养系统中,胰腺β细胞中细胞内胰岛素和 NO 介导的环 3',5'-鸟苷酸单磷酸(cGMP)水平的增加进一步证实了保护机制。此外,通过蛋白质组学分析研究了槲皮素在内皮细胞中针对 ER 应激的潜在蛋白质靶标,并通过 Bioplex 分析研究了其磷酸化蛋白靶标。总的来说,开发的体外共培养系统可作为研究内皮细胞和胰腺β细胞之间信号网络的平台,并为验证新型 ER 应激调节剂提供机制见解。

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