Svensson C, Sandler S, Hellerström C
Department of Medical Cell Biology, Uppsala University, Sweden.
J Endocrinol. 1993 Feb;136(2):289-96. doi: 10.1677/joe.0.1360289.
Previous studies have shown that 4 weeks after syngeneic transplantation of a suboptimal number of islets into either C57BL/6J (BL/6J) or C57BL/KsJ (BL/KsJ) diabetic mice there is an impaired insulin secretion by the perfused grafts. After normalization of the blood glucose level with a second islet graft, the BL/6J strain showed restored insulin secretion whilst that of the BL/KsJ strain remained impaired. The aim of the present work was to study the effects of glucose on the in-vitro function of islet beta-cells from these two mouse strains, with different sensitivities of their beta-cells to glucose in vivo. Isolated pancreatic islets from each strain were kept for 1 week in tissue culture at 5.6, 11, 28 or 56 mmol glucose/l and were subsequently analysed with regard to insulin release, (pro)-insulin and total protein biosynthesis, insulin, DNA and insulin mRNA contents and glucose metabolism. Islets from both strains cultured at 28 or 56 mmol glucose/l showed an increased accumulation of insulin in the culture medium and an enhanced glucose-stimulated insulin release compared with corresponding control islets cultured at 11 mmol glucose/l. After culture at either 5.6 or 56 mmol/l, rates of (pro)insulin biosynthesis were decreased in BL/KsJ islets in short-term incubations at 17 mmol glucose/l, whereas islets cultured at 56 mmol glucose/l showed a marked increase at 1.7 mmol glucose/l. In BL/6J islets, the (pro)insulin biosynthesis rates were similar to those of the BL/KsJ islets with one exception, namely that no decrease was observed at 56 mmol glucose/l. Islets of both strains showed a decreased insulin content after culture with 56 mmol glucose/l.(ABSTRACT TRUNCATED AT 250 WORDS)
先前的研究表明,将次优数量的胰岛同基因移植到C57BL/6J(BL/6J)或C57BL/KsJ(BL/KsJ)糖尿病小鼠体内4周后,灌注的移植物胰岛素分泌受损。在用第二个胰岛移植物使血糖水平恢复正常后,BL/6J品系的胰岛素分泌恢复,而BL/KsJ品系的胰岛素分泌仍受损。本研究的目的是研究葡萄糖对这两种小鼠品系胰岛β细胞体外功能的影响,这两种品系的β细胞在体内对葡萄糖的敏感性不同。将每个品系分离的胰岛在含有5.6、11、28或56 mmol葡萄糖/升的组织培养基中培养1周,随后分析胰岛素释放、(前)胰岛素和总蛋白生物合成、胰岛素、DNA和胰岛素mRNA含量以及葡萄糖代谢。与在11 mmol葡萄糖/升培养的相应对照胰岛相比,在28或56 mmol葡萄糖/升培养的两个品系的胰岛均显示培养基中胰岛素积累增加,葡萄糖刺激的胰岛素释放增强。在5.6或56 mmol/升培养后,短期在17 mmol葡萄糖/升孵育时,BL/KsJ胰岛的(前)胰岛素生物合成速率降低,而在56 mmol葡萄糖/升培养的胰岛在1.7 mmol葡萄糖/升时显示明显增加。在BL/6J胰岛中,(前)胰岛素生物合成速率与BL/KsJ胰岛相似,唯一的例外是在56 mmol葡萄糖/升时未观察到降低。两个品系的胰岛在56 mmol葡萄糖/升培养后胰岛素含量均降低。(摘要截短于250字)