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磺脲类药物的胰腺外效应——格列美脲与传统磺脲类药物的比较

Extrapancreatic effects of sulfonylureas--a comparison between glimepiride and conventional sulfonylureas.

作者信息

Müller G, Satoh Y, Geisen K

机构信息

Hoechst AG Frankfurt, Pharmaceutical Research Division, SBU Metabolic Diseases, Germany.

出版信息

Diabetes Res Clin Pract. 1995 Aug;28 Suppl:S115-37. doi: 10.1016/0168-8227(95)01089-v.

Abstract

The contribution of extrapancreatic effects of sulfonylureas to the blood glucose-decreasing activity was reevaluated in vivo and in vitro with several conventional sulfonylureas and with the new one glimepiride. In vivo, in dogs, after single approximately equipotent blood glucose-decreasing doses, the sulfonylureas were tested for a ranking in the ratios of mean plasma insulin-increasing and blood glucose-decreasing activity. Studies were also performed in hyperglycemic hyperinsulinemic KK-Ay mice under once daily treatment for 8 weeks. In vitro, glimepiride and glibenclamide were tested for the ranking of their extrapancreatic activity with respect to the stimulation of glucose transport and glucose metabolizing processes in normal and insulin-resistant fat cells as well as in the isolated diaphragm. Furthermore, in vitro studies were performed, especially with glimepiride, in order to characterize the molecular mechanism for the extrapancreatic activity. The dog studies revealed a marked ranking in the ratios of plasma insulin-increasing and blood glucose-decreasing activity between the different sulfonylureas (glimepiride < glipizide < gliclazide < glibenclamide). In the hyperglycemic hyperinsulinemic KK-Ay mice, glimepiride reduced blood glucose by 40%, plasma insulin by 50% and HBA1c by 33%, whereas glibenclamide and gliclazide had no effect on these parameters. In vitro, glimepiride and glibenclamide had extrapancreatic effects within the lower microM range, with glimepiride exhibiting 2-3-fold lower ED50 values than glibenclamide. In the absence of insulin, both stimulated glucose transport--up to 60% of the maximum insulin response in the rat diaphragm and up to 35% in 3T3 adipocytes. Glycogenesis was stimulated in the rat diaphragm--up to 55% of the maximum insulin effect; lipogenesis in 3T3 adipocytes--up to 40%. The studies on the molecular mechanism of extrapancreatic activity with rat adipocytes and diaphragm suggest that these direct insulin-mimetic effects rely on the induction of GLUT4 translocation from internal stores to the plasma membrane and on the activation of the key metabolic enzymes, glycogen synthase and glycerol-3-phosphate acyltransferase. These processes occur within the same drug concentration range and with the same ranking between glimepiride and glibenclamide as observed for glucose utilization and transport. The direct effects of sulfonylureas may ultimately be regulated by a glycosyl-phosphatidylinositol-specific phospholipase C, shown to be activated by glimepiride in rat adipocytes. Lipolytic cleavage products thereby generated from glycolipidic structures may in turn stimulate specific protein phosphatases which activate key regulatory proteins/enzymes of glucose and lipid metabolism.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

利用几种传统磺脲类药物以及新型药物格列美脲,在体内和体外重新评估了磺脲类药物的胰腺外效应对其降血糖活性的作用。在体内,对犬单次给予降血糖作用大致相当的剂量后,检测磺脲类药物平均血浆胰岛素升高活性与降血糖活性的比值排名。还对高血糖高胰岛素血症的KK-Ay小鼠进行了为期8周的每日一次治疗研究。在体外,检测了格列美脲和格列本脲在正常及胰岛素抵抗脂肪细胞以及离体膈肌中对葡萄糖转运和葡萄糖代谢过程刺激作用的胰腺外活性排名。此外,尤其针对格列美脲进行了体外研究,以明确胰腺外活性的分子机制。犬类研究显示,不同磺脲类药物之间血浆胰岛素升高活性与降血糖活性的比值存在显著排名(格列美脲<格列吡嗪<格列齐特<格列本脲)。在高血糖高胰岛素血症的KK-Ay小鼠中,格列美脲使血糖降低40%,血浆胰岛素降低50%,糖化血红蛋白降低33%,而格列本脲和格列齐特对这些参数无影响。在体外,格列美脲和格列本脲在较低微摩尔浓度范围内具有胰腺外效应,格列美脲的半数有效浓度(ED50)值比格列本脲低2至3倍。在无胰岛素的情况下,二者均刺激葡萄糖转运——在大鼠膈肌中可达最大胰岛素反应的60%,在3T3脂肪细胞中可达35%。大鼠膈肌中的糖原生成受到刺激——可达最大胰岛素效应的55%;3T3脂肪细胞中的脂肪生成——可达40%。对大鼠脂肪细胞和膈肌胰腺外活性分子机制的研究表明,这些直接的胰岛素模拟效应依赖于葡萄糖转运蛋白4(GLUT4)从内部储存部位向质膜的转位诱导以及关键代谢酶糖原合酶和甘油-3-磷酸酰基转移酶的激活。这些过程在相同的药物浓度范围内发生,格列美脲和格列本脲之间的排名与葡萄糖利用和转运情况相同。磺脲类药物的直接效应最终可能由糖基磷脂酰肌醇特异性磷脂酶C调节,已证实在大鼠脂肪细胞中该酶可被格列美脲激活。由此从糖脂结构产生的脂解裂解产物可能反过来刺激特定的蛋白磷酸酶,后者激活葡萄糖和脂质代谢的关键调节蛋白/酶。(摘要截选至400字)

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