Igarashi M, Yamatani K, Fukase N, Daimon M, Ohnuma H, Ogawa A, Tominaga M, Sasaki H
Third Department of Internal Medicine, Yamagata University School of Medicine.
Tohoku J Exp Med. 1993 Mar;169(3):205-13. doi: 10.1620/tjem.169.205.
To assess the mechanism of insulin resistance in metabolic acidosis, we investigated insulin receptor binding and glucose uptake in isolated rat epididymal adipocytes at three pHs, acidic (pH 6.8), neutral (pH 7.4) and alkaline (pH 8.0) groups. After male Sprague-Dawley rats weighing 220-240 g were submitted under chloral hydrate anesthesia, epididymal fat pads were dissected and isolated. [125I]-insulin binding rate was not different between alkaline and neutral groups, but that of acidic group was markedly decreased to approximately 30% of neutral group at maximum specific insulin binding rate. Scatchard analysis showed that numbers of insulin receptors were not different among three groups, but values of binding affinity in acidic group was significantly lower than those of the others. 2-[3H]deoxy-D-glucose uptake of alkaline and neutral groups were increased to reach steady state immediately, but that of acidic group increased slowly and reached at maximum which was lower than the other two groups. Furthermore, 2-deoxy-D-glucose uptake against amount of bound insulin was lower in acidic group than other two groups. From these results, it is suggested that insulin resistance in metabolic acidosis resulted from the combined defects in binding affinity and post-binding process in the insulin receptor.
为了评估代谢性酸中毒中胰岛素抵抗的机制,我们在酸性(pH 6.8)、中性(pH 7.4)和碱性(pH 8.0)三组条件下,研究了分离的大鼠附睾脂肪细胞中的胰岛素受体结合及葡萄糖摄取情况。体重220 - 240 g的雄性Sprague-Dawley大鼠在水合氯醛麻醉下处理后,解剖并分离出附睾脂肪垫。在最大特异性胰岛素结合率时,碱性组和中性组的[125I] -胰岛素结合率无差异,但酸性组的结合率显著降低至中性组的约30%。Scatchard分析表明,三组间胰岛素受体数量无差异,但酸性组的结合亲和力值显著低于其他两组。碱性组和中性组的2 - [3H]脱氧 - D -葡萄糖摄取立即增加并达到稳态,而酸性组增加缓慢,且达到的最大值低于其他两组。此外,酸性组中相对于结合胰岛素量的2 -脱氧 - D -葡萄糖摄取低于其他两组。从这些结果表明,代谢性酸中毒中的胰岛素抵抗是由胰岛素受体结合亲和力和结合后过程的联合缺陷导致的。