EndoC-βH1 细胞系是人胰岛β细胞的有效模型,适用于筛选以鉴定新的药物靶点候选物。

The EndoC-βH1 cell line is a valid model of human beta cells and applicable for screenings to identify novel drug target candidates.

机构信息

Novo Nordisk A/S, Diabetes Research, Department of Islet & Stem Cell Biology, Novo Nordisk Park, 2760, Maaloev, Denmark; University of Copenhagen, Department of Biomedical Sciences, Blegdamsvej 3B, DK-2200, Copenhagen, Denmark.

Novo Nordisk A/S, Diabetes Research, GLP-1 & T2D Pharmacology, Novo Nordisk Park, 2760, Maaloev, Denmark.

出版信息

Mol Metab. 2018 Feb;8:144-157. doi: 10.1016/j.molmet.2017.12.007. Epub 2017 Dec 19.

Abstract

OBJECTIVE

To characterize the EndoC-βH1 cell line as a model for human beta cells and evaluate its beta cell functionality, focusing on insulin secretion, proliferation, apoptosis and ER stress, with the objective to assess its potential as a screening platform for identification of novel anti-diabetic drug candidates.

METHODS

EndoC-βH1 was transplanted into mice for validation of in vivo functionality. Insulin secretion was evaluated in cells cultured as monolayer and as pseudoislets, as well as in diabetic mice. Cytokine induced apoptosis, glucolipotoxicity, and ER stress responses were assessed. Beta cell relevant mRNA and protein expression were investigated by qPCR and antibody staining. Hundreds of proteins or peptides were tested for their effect on insulin secretion and proliferation.

RESULTS

Transplantation of EndoC-βH1 cells restored normoglycemia in streptozotocin induced diabetic mice. Both in vitro and in vivo, we observed a clear insulin response to glucose, and, in vitro, we found a significant increase in insulin secretion from EndoC-βH1 pseudoislets compared to monolayer cultures for both glucose and incretins. Apoptosis and ER stress were inducible in the cells and caspase 3/7 activity was elevated in response to cytokines, but not affected by the saturated fatty acid palmitate. By screening of various proteins and peptides, we found Bombesin (BB) receptor agonists and Pituitary Adenylate Cyclase-Activating Polypeptides (PACAP) to significantly induce insulin secretion and the proteins SerpinA6, STC1, and APOH to significantly stimulate proliferation. ER stress was readily induced by Tunicamycin and resulted in a reduction of insulin mRNA. Somatostatin (SST) was found to be expressed by 1% of the cells and manipulation of the SST receptors was found to significantly affect insulin secretion.

CONCLUSIONS

Overall, the EndoC-βH1 cells strongly resemble human islet beta cells in terms of glucose and incretin stimulated insulin secretion capabilities. The cell line has an active cytokine induced caspase 3/7 apoptotic pathway and is responsive to ER stress initiation factors. The cells' ability to proliferate can be further increased by already known compounds as well as by novel peptides and proteins. Based on its robust performance during the functionality assessment assays, the EndoC-βH1 cell line was successfully used as a screening platform for identification of novel anti-diabetic drug candidates.

摘要

目的

将 EndoC-βH1 细胞系鉴定为人类β细胞模型,并评估其β细胞功能,重点关注胰岛素分泌、增殖、凋亡和内质网应激,旨在评估其作为新型抗糖尿病药物候选物筛选平台的潜力。

方法

将 EndoC-βH1 移植到小鼠体内以验证其体内功能。评估单层和假性胰岛培养以及糖尿病小鼠中的胰岛素分泌。评估细胞因子诱导的凋亡、糖脂毒性和内质网应激反应。通过 qPCR 和抗体染色研究与β细胞相关的 mRNA 和蛋白表达。测试了数百种蛋白质或肽对胰岛素分泌和增殖的影响。

结果

移植 EndoC-βH1 细胞可使链脲佐菌素诱导的糖尿病小鼠恢复正常血糖。无论是在体外还是在体内,我们都观察到葡萄糖明显刺激胰岛素分泌,并且体外研究发现,与单层培养相比,EndoC-βH1 假性胰岛对葡萄糖和肠降血糖素的胰岛素分泌显著增加。细胞可诱导凋亡和内质网应激,细胞因子可激活半胱天冬酶 3/7,但饱和脂肪酸棕榈酸不影响其活性。通过筛选各种蛋白质和肽,我们发现蛙皮素 (BB) 受体激动剂和垂体腺苷酸环化酶激活肽 (PACAP) 可显著诱导胰岛素分泌,SerpinA6、STC1 和 APOH 蛋白可显著刺激增殖。用衣霉素容易诱导内质网应激,导致胰岛素 mRNA 减少。发现生长抑素 (SST) 由 1%的细胞表达,并且操纵 SST 受体显著影响胰岛素分泌。

结论

总体而言,EndoC-βH1 细胞在葡萄糖和肠降血糖素刺激胰岛素分泌能力方面与人类胰岛β细胞非常相似。该细胞系具有活跃的细胞因子诱导的半胱天冬酶 3/7 凋亡途径,并对内质网应激起始因子有反应。细胞的增殖能力可以通过已经已知的化合物以及新的肽和蛋白质进一步提高。基于其在功能评估实验中的出色表现,EndoC-βH1 细胞系成功用作新型抗糖尿病药物候选物的筛选平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0dba/5985049/207de4430722/gr1.jpg

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