Lockwood D H, Maloff B L, Nowak S M, McCaleb M L
Am J Med. 1983 Jan 17;74(1A):102-8. doi: 10.1016/0002-9343(83)90656-3.
Pieces of rat epididymal fat tissue were maintained in a biochemically defined medium for 20 to 44 hours in either the absence or presence of a sulfonylurea at levels known to be effective in humans. Prolonged exposure of adipocytes to sulfonylureas did not influence the number of insulin receptors or their affinity to insulin or the ability of insulin to induce receptor loss (down-regulation). Also, the sulfonylureas did not influence the basal uptake of the D-glucose analogs 2-deoxyglucose and 3-O-methylglucose. However, exposure to these drugs resulted in a potentiation of the stimulatory effects of insulin on hexose transport at submaximal and maximally effective concentrations of insulin. The average potentiation was approximately 30%. In addition, sulfonylureas enhanced stimulation of hexose uptake by the insulin mimickers, hydrogen peroxide and vitamin K5. These oxidants are known to manifest insulin-like actions subsequent to insulin binding. Under conditions in which glucose transport was rate limiting, the conversion of glucose to carbon dioxide and the total lipids mirrored the findings of hexose uptake. However, at a glucose concentration of 50 mM, at which hexose transport is no longer rate limiting, sulfonylureas did not potentiate metabolism in th absence or presence of insulin. These results may help to explain the hypoglycemic action of the drug in view of the recent finding that a postreceptor deficit is present in noninsulin-dependent diabetes mellitus.
将大鼠附睾脂肪组织块置于生化成分明确的培养基中,在不存在或存在已知对人类有效的磺酰脲类药物的情况下培养20至44小时。脂肪细胞长期暴露于磺酰脲类药物下,并不影响胰岛素受体的数量、其对胰岛素的亲和力或胰岛素诱导受体丢失(下调)的能力。此外,磺酰脲类药物不影响D - 葡萄糖类似物2 - 脱氧葡萄糖和3 - O - 甲基葡萄糖的基础摄取。然而,在次最大和最大有效浓度的胰岛素条件下,暴露于这些药物会增强胰岛素对己糖转运的刺激作用。平均增强作用约为30%。此外,磺酰脲类药物增强了胰岛素模拟物过氧化氢和维生素K5对己糖摄取的刺激作用。已知这些氧化剂在胰岛素结合后表现出胰岛素样作用。在葡萄糖转运为限速步骤的条件下,葡萄糖向二氧化碳的转化以及总脂质情况与己糖摄取的结果一致。然而,在葡萄糖浓度为50 mM时,此时己糖转运不再是限速步骤,无论有无胰岛素存在,磺酰脲类药物都不会增强代谢。鉴于最近发现非胰岛素依赖型糖尿病存在受体后缺陷,这些结果可能有助于解释该药物的降血糖作用。