Green Alastair D, Vasu Srividya, Moffett R Charlotte, Flatt Peter R
SAAD Centre for Pharmacy & Diabetes, University of Ulster, Coleraine, Northern Ireland, UK.
SAAD Centre for Pharmacy & Diabetes, University of Ulster, Coleraine, Northern Ireland, UK.
Biochimie. 2016 Jun;125:119-25. doi: 10.1016/j.biochi.2016.03.007. Epub 2016 Mar 22.
We investigated the direct effects on insulin releasing MIN6 cells of chronic exposure to GLP-1, glucagon or a combination of both peptides secreted from GLUTag L-cell and αTC1.9 alpha-cell lines in co-culture. MIN6, GLUTag and αTC1.9 cell lines exhibited high cellular hormone content and release of insulin, GLP-1 and glucagon, respectively. Co-culture of MIN6 cells with GLUTag cells significantly increased cellular insulin content, beta-cell proliferation, insulin secretory responses to a range of established secretogogues and afforded protection against exposure cytotoxic concentrations of glucose, lipid, streptozotocin or cytokines. Benefits of co-culture of MIN6 cells with αTC1.9 alphacells were limited to enhanced beta-cell proliferation with marginal positive actions on both insulin secretion and cellular protection. In contrast, co-culture of MIN6 with GLUTag cells plus αTC1.9 cells, markedly enhanced both insulin secretory responses and protection against beta-cell toxins compared with co-culture with GLUTag cells alone. These data indicate important long-term effects of conjoint GLP-1 and glucagon exposure on beta-cell function. This illustrates the possible functional significance of alpha-cell GLP-1 production as well as direct beneficial effects of dual agonism at beta-cell GLP-1 and glucagon receptors.
我们研究了慢性暴露于胰高血糖素样肽-1(GLP-1)、胰高血糖素或共培养的GLUTag L细胞系和αTC1.9 α细胞系分泌的这两种肽的组合对胰岛素释放MIN6细胞的直接影响。MIN6、GLUTag和αTC1.9细胞系分别表现出高细胞激素含量以及胰岛素、GLP-1和胰高血糖素的释放。MIN6细胞与GLUTag细胞共培养显著增加了细胞胰岛素含量、β细胞增殖、对一系列既定促分泌剂的胰岛素分泌反应,并提供了针对暴露于细胞毒性浓度的葡萄糖、脂质、链脲佐菌素或细胞因子的保护作用。MIN6细胞与αTC1.9 α细胞共培养的益处仅限于增强β细胞增殖,对胰岛素分泌和细胞保护有轻微的积极作用。相比之下,与单独与GLUTag细胞共培养相比,MIN6与GLUTag细胞加αTC1.9细胞共培养显著增强了胰岛素分泌反应和对β细胞毒素的保护作用。这些数据表明联合暴露于GLP-1和胰高血糖素对β细胞功能有重要的长期影响。这说明了α细胞产生GLP-1的可能功能意义以及在β细胞GLP-1和胰高血糖素受体上双重激动的直接有益作用。