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Reducing Glucokinase Activity Restores Endogenous Pulsatility and Enhances Insulin Secretion in Islets From db/db Mice

机译:减少葡萄糖激酶活性恢复db / db小鼠胰岛中的内源性搏动并增强胰岛素分泌。

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摘要

An early sign of islet failure in type 2 diabetes (T2D) is the loss of normal patterns of pulsatile insulin release. Disruptions in pulsatility are associated with a left shift in glucose sensing that can cause excessive insulin release in low glucose (relative hyperinsulinemia, a hallmark of early T2D) and β-cell exhaustion, leading to inadequate insulin release during hyperglycemia. Our hypothesis was that reducing excessive glucokinase activity in diabetic islets would improve their function. Isolated mouse islets were exposed to glucose and varying concentrations of the glucokinase inhibitor d-mannoheptulose (MH) to examine changes in intracellular calcium ([Ca2+]i) and insulin secretion. Acutely exposing islets from control CD-1 mice to MH in high glucose (20 mM) dose dependently reduced the size of [Ca2+]i oscillations detected by fura-2 acetoxymethyl. Glucokinase activation in low glucose (3 mM) had the opposite effect. We then treated islets from male and female db/db mice (age, 4 to 8 weeks) and heterozygous controls overnight with 0 to 10 mM MH to determine that 1 mM MH produced optimal oscillations. We then used 1 mM MH overnight to measure [Ca2+]i and insulin simultaneously in db/db islets. MH restored oscillations and increased insulin secretion. Insulin secretion rates correlated with MH-induced increases in amplitude of [Ca2+]i oscillations (R2 = 0.57, P < 0.01, n = 10) but not with mean [Ca2+]i levels in islets (R2 = 0.05, not significant). Our findings show that correcting glucose sensing can restore proper pulsatility to diabetic islets and improved pulsatility correlates with enhanced insulin secretion.
机译:2型糖尿病(T2D)的胰岛衰竭的早期迹象是搏动性胰岛素释放的正常模式丧失。搏动性的中断与葡萄糖感应的左移有关,左移可能导致低血糖时胰岛素过度释放(相对高胰岛素血症,早期T2D的标志)和β细胞衰竭,导致高血糖期间胰岛素释放不足。我们的假设是减少糖尿病胰岛中过量的葡萄糖激酶活性会改善其功能。将分离的小鼠胰岛暴露于葡萄糖和不同浓度的葡萄糖激酶抑制剂d-甘露庚糖(MH)中,以检查细胞内钙([Ca 2 + ] i)和胰岛素分泌的变化。将高浓度(20 mM)的对照CD-1小鼠的胰岛急性暴露于MH,可减少通过fura-2乙酰氧基甲基检测到的[Ca 2 + ] i振荡的大小。低葡萄糖(3 mM)中的葡萄糖激酶激活具有相反的作用。然后,我们用雄性和雌性db / db小鼠(4至8周龄)的胰岛和0至10 mM MH的杂合对照处理过夜,以确定1 mM MH产生最佳振荡。然后,我们使用1 mM MH过夜,以同时测量db / db胰岛中的[Ca 2 + ] i和胰岛素。 MH可恢复振荡并增加胰岛素分泌。胰岛素分泌率与MH引起的[Ca 2 + ] i振荡幅度的增加相关(R 2 = 0.57,P <0.01,n = 10),但与胰岛中[Ca 2 + ] i的平均值(R 2 = 0.05,不显着)。我们的研究结果表明,纠正葡萄糖感测可以使糖尿病岛恢复适当的搏动性,而改善的搏动性则与胰岛素分泌增强有关。

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