Impact of CYP2C9 polymorphism found in the Chinese population on the metabolism of propofol in vitro

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Abstract

The microsomal CYP2C9 alleles involved in the biotransformation of propofol, a widely used anesthetic agent, were investigated in vitro. To examine the enzymatic activity of the CYP2C9 alleles, kinetic parameters for propofol 4-hydroxylation were determined in recombinant human P450s CYP2C9 microsomes from Sf21 insects cells carrying CYP2C9∗1 and other variants. Some of the variants showed decreased enzyme activity compared with the wild type, as previously reported. Two variants (CYP2C9∗36 and∗56) were found substantially to increase intrinsic clearance relative to the wild type variant. Most variants significantly (p<0.05) decreased intrinsic clearance of propofol compared with the wild type, except∗11,∗47, and∗54. This study is the first to report these rare alleles for propofol metabolism, providing fundamental data for further clinical studies on CYP2C9 alleles for propofol metabolism in vivo.

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Lian, Q. Q., Pan, P. P., Li, J. W., Lin, H., Hu, G. X., Zuo, M. Z., & Cai, J. P. (2015). Impact of CYP2C9 polymorphism found in the Chinese population on the metabolism of propofol in vitro. Biological and Pharmaceutical Bulletin, 38(4), 531–535. https://doi.org/10.1248/bpb.b14-00671

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