Lin Qian-Meng, Li Ying-Hui, Liu Qian, Pang Ni-Hong, Xu Ren-Ai, Cai Jian-Ping, Hu Guo-Xin
School of Pharmaceutical Sciences, Wenzhou Medical University, Wenzhou 325035, People's Republic of China.
Department of Pharmacy, The First Affiliated Hospital of Wenzhou Medical University, Wenzhou 325035, People's Republic of China.
Infect Drug Resist. 2019 Sep 10;12:2809-2817. doi: 10.2147/IDR.S215129. eCollection 2019.
Cytochrome P450 3A4 (CYP3A4) appears to be genetically polymorphic, which in turn contributes to interindividual variability in response to therapeutic drugs. Loperamide, identified as a CYP3A4 substrate, is prone to misuse and abuse and has high risks of life-threatening cardiotoxicity.
Thus, this study is designed to evaluate the enzymatic characteristics of 29 CYP3A4 alleles toward loperamide in vitro, including the 7 novel CYP3A4 variants (*28-*34). The incubation system (containing CYP3A4 enzyme, cytochrome b5, 0.5-20 μM loperamide, potassium phosphate buffer and nicotinamide adenine dinucleotide phosphate) was subject to 40-mins incubation at 37°C and the concentrations of N-demethylated loperamide were quantified by UPLC-MS/MS.
As a result, CYP3A4.6, .17, .20 and .30 showed extremely low activity or no activity and the rest of CYP3A4 variants presented varying degrees of decrements in catalytical activities when compared with CYP3A4.1.
As the first study to identify the properties of these CYP3A4 variants toward loperamide metabolism, our investigation may establish the genotype-phenotype relationship for loperamide, predict an individual's capability in response to loperamide, and provide some guidance of clinical medication and treatment for loperamide.
细胞色素P450 3A4(CYP3A4)似乎具有基因多态性,这进而导致个体对治疗药物反应的差异。洛哌丁胺被确定为CYP3A4底物,容易被滥用且具有危及生命的心脏毒性风险。
因此,本研究旨在体外评估29种CYP3A4等位基因对洛哌丁胺的酶促特性,包括7种新型CYP3A4变体(*28 - *34)。孵育系统(包含CYP3A4酶、细胞色素b5、0.5 - 20 μM洛哌丁胺、磷酸钾缓冲液和烟酰胺腺嘌呤二核苷酸磷酸)在37°C下孵育40分钟,通过超高效液相色谱 - 串联质谱法对N - 去甲基洛哌丁胺的浓度进行定量。
结果显示,与CYP3A4.1相比,CYP3A4.6、.17、.20和.30表现出极低活性或无活性,其余CYP3A4变体的催化活性呈现不同程度的下降。
作为首次鉴定这些CYP3A4变体对洛哌丁胺代谢特性的研究,我们的调查可能建立洛哌丁胺的基因型 - 表型关系,预测个体对洛哌丁胺的反应能力,并为洛哌丁胺的临床用药和治疗提供一些指导。