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OATP2B1 对胰岛β细胞模型中他汀类药物蓄积和毒性的差异影响。

Differential effects of OATP2B1 on statin accumulation and toxicity in a beta cell model.

机构信息

Department of Physiology and Pharmacology, Schulich School of Medicine and Dentistry, Western University, London, Ontario, Canada.

Department of Medicine, Schulich School of Medicine and Dentistry, Western University, London, Ontario, Canada.

出版信息

Toxicol Mech Methods. 2024 Feb;34(2):130-147. doi: 10.1080/15376516.2023.2262568. Epub 2024 Jan 29.

Abstract

An increased risk of new-onset diabetes mellitus has been recently reported for statin therapy, and experimental studies have shown reduced glucose-stimulated insulin secretion (GSIS) and mitochondrial dysfunction in beta cells with effects differing among agents. Organic anion transporting polypeptide (OATP) 2B1 contributes to hepatic uptake of rosuvastatin, atorvastatin and pravastatin, three known substrates. Since OATP2B1 is present in beta cells of the human pancreas, we investigated if OATP2B1 facilitates the local accumulation of statins in a rat beta cell model INS-1 832/13 (INS-1) thereby amplifying statin-induced toxicity. OATP2B1 overexpression in INS-1 cells adenoviral transduction showed 2.5-, 1.8- and 1.4-fold higher cellular retention of rosuvastatin, atorvastatin and pravastatin, respectively, relative to LacZ control, while absolute intracellular concentration was about twice as high for the lipophilic atorvastatin compared to the more hydrophilic rosuvastatin and pravastatin. After 24 h statin treatment at high concentrations, OATP2B1 enhanced statin toxicity involving activation of intrinsic apoptosis (caspase 3/7 activation) and mitochondrial dysfunction (NADH dehydrogenase activity) following rosuvastatin and atorvastatin, which was partly reversed by isoprenoids. OATP2B1 had no effect on statin-induced reduction in GSIS, mitochondrial electron transport chain complex expression or caspase 9 activation. We confirmed a dose-dependent reduction in insulin secretion by rosuvastatin and atorvastatin in native INS-1 with a modest change in cellular ATP. Collectively, our results indicate a role of OATP2B1, which is abundant in human beta cells, in statin accumulation and statin-induced toxicity but not insulin secretion of rosuvastatin and atorvastatin in INS-1 cells.

摘要

他汀类药物治疗最近被报道有新发糖尿病的风险增加,实验研究表明,β细胞中的葡萄糖刺激胰岛素分泌(GSIS)减少和线粒体功能障碍,不同药物的作用也不同。有机阴离子转运多肽(OATP)2B1 有助于洛伐他汀、阿托伐他汀和普伐他汀这三种已知底物在肝脏中的摄取。由于 OATP2B1 存在于人类胰腺的β细胞中,我们研究了 OATP2B1 是否有助于他汀类药物在大鼠β细胞模型 INS-1 832/13(INS-1)中的局部积累,从而放大他汀类药物诱导的毒性。用腺病毒转导 INS-1 细胞过表达 OATP2B1 显示,洛伐他汀、阿托伐他汀和普伐他汀的细胞内保留率分别比 LacZ 对照高 2.5、1.8 和 1.4 倍,而亲脂性阿托伐他汀的绝对细胞内浓度大约是更亲水的洛伐他汀和普伐他汀的两倍。在高浓度他汀类药物治疗 24 小时后,OATP2B1 增强了他汀类药物的毒性,涉及到内在凋亡(半胱天冬酶 3/7 激活)和线粒体功能障碍(NADH 脱氢酶活性),洛伐他汀和阿托伐他汀之后,异戊二烯部分逆转了这种情况。OATP2B1 对他汀类药物诱导的 GSIS 减少、线粒体电子传递链复合物表达或半胱天冬酶 9 激活没有影响。我们证实了洛伐他汀和阿托伐他汀在原代 INS-1 中的胰岛素分泌剂量依赖性减少,同时细胞内 ATP 略有变化。总之,我们的研究结果表明,OATP2B1 在人类β细胞中丰富,在他汀类药物的积累和他汀类药物诱导的毒性中起作用,但在 INS-1 细胞中对洛伐他汀和阿托伐他汀的胰岛素分泌没有作用。

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