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Mdr1a、Bcrp 和 Mrp2 通过改变马钱子碱和新马钱子碱在组织中的蓄积和体内滞留来调节其疗效和毒性。

Mdr1a, Bcrp and Mrp2 regulate the efficacy and toxicity of mesaconitine and hypaconitine by altering their tissue accumulation and in vivo residence.

机构信息

International Institute for Translational Chinese Medicine, School of Pharmaceutical Sciences, Guangzhou University of Chinese Medicine, Guangzhou, Guangdong Province 510006, PR China.

International Institute for Translational Chinese Medicine, School of Pharmaceutical Sciences, Guangzhou University of Chinese Medicine, Guangzhou, Guangdong Province 510006, PR China.

出版信息

Toxicol Appl Pharmacol. 2020 Dec 15;409:115332. doi: 10.1016/j.taap.2020.115332. Epub 2020 Nov 7.

Abstract

Mesaconitine (MA) and hypaconitine (HA) are the main bioactive/toxic alkaloids of Aconitum carmichaelii Debx, and MDR1, BCRP and MRP2 are involved in their efflux in vitro. This study aimed to explore the effects of Mdr1a, Bcrp and Mrp2 on the efficacy/toxicity of MA and HA by using efflux transporter gene knockout mouse models. The analgesic and anti-inflammatory effects, neurotoxicity/cardiotoxicity, and pharmacokinetic profiles of MA and HA were studied. Compared to wild-type mice, the analgesic effects of MA or HA were significantly enhanced in Mdr1a, Bcrp1 and Mrp2 mice, and the anti-inflammatory effects notably increased in Bcrp1 and Mrp2 mice. Compared to wild-type mice, Mdr1a, Bcrp1 and Mrp2 mice suffered from severe karyopyknosis and edema in the brain after MA or HA treatment. Meanwhile, significant arrhythmia appeared, and the heart rate and RR-interval were greatly altered in Mdr1a, Bcrp1 and Mrp2 mice. Additionally, obvious disorder of cardiomyocytes were observed, and the CK and cTnT (indicators of heart injury) levels were greatly enhanced in efflux transporter gene knockout mice. The brain levels of MA and HA were markedly increased in Mdr1a, Bcrp1 and Mrp2 mice, and the heart levels of MA and HA enhanced greatly in Mdr1a mice. The MRT values of MA and HA were remarkably enhanced in most efflux transporter gene knockout mice. In conclusion, Mdr1a, Bcrp and Mrp2 were all involved in regulating the efficacy/toxicity of MA and HA by altering their tissue accumulation and in vivo residence. Among the three efflux transporters, Mdr1a had a superior regulatory effect.

摘要

麻乌头碱(MA)和高乌头碱(HA)是乌头属植物中主要的生物活性/毒性生物碱,多药耐药相关蛋白 1(MDR1)、乳腺癌耐药蛋白(BCRP)和多药耐药相关蛋白 2(MRP2)参与其体外外排。本研究旨在通过使用外排转运体基因敲除小鼠模型,探讨 Mdr1a、Bcrp 和 Mrp2 对 MA 和 HA 疗效/毒性的影响。研究了 MA 和 HA 的镇痛、抗炎作用、神经毒性/心脏毒性和药代动力学特征。与野生型小鼠相比,MA 或 HA 在 Mdr1a、Bcrp1 和 Mrp2 小鼠中的镇痛作用显著增强,而在 Bcrp1 和 Mrp2 小鼠中的抗炎作用显著增强。与野生型小鼠相比,MA 或 HA 处理后 Mdr1a、Bcrp1 和 Mrp2 小鼠大脑出现严重核固缩和水肿。同时,Mdr1a、Bcrp1 和 Mrp2 小鼠出现明显的心律失常,心率和 RR 间隔发生很大改变。此外,还观察到明显的心肌细胞紊乱,在外排转运体基因敲除小鼠中,CK 和 cTnT(心脏损伤标志物)水平显著升高。Mdr1a、Bcrp1 和 Mrp2 小鼠脑内 MA 和 HA 水平显著升高,Mdr1a 小鼠心内 MA 和 HA 水平显著升高。MA 和 HA 的 MRT 值在大多数外排转运体基因敲除小鼠中明显升高。综上所述,Mdr1a、Bcrp 和 Mrp2 通过改变其组织蓄积和体内停留时间,共同参与调节 MA 和 HA 的疗效/毒性。在这三种外排转运体中,Mdr1a 具有优越的调节作用。

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