Identification of a Discrete Diglucuronide of GDC-0810 in Human Plasma after Oral Administration

葡萄糖醛酸化 代谢物 微粒体 葡萄糖醛酸 体外 活性代谢物 药理学 口服 体内 人血浆 药代动力学 化学 人体乳房 微粒体 生物化学 生物 癌症 色谱法 乳腺癌 遗传学 生物技术
作者
Chenghong Zhang,Dian Su,Edna F. Choo,Lichuan Liu,Sudheer Bobba,Jamie D. Jorski,Quynh Ho,Jing Wang,Jane R. Kenny,S. Cyrus Khojasteh,Donglu Zhang
出处
期刊:Drug Metabolism and Disposition [American Society for Pharmacology and Experimental Therapeutics]
卷期号:51 (10): 1284-1294 被引量:4
标识
DOI:10.1124/dmd.122.001071
摘要

GDC-0810 is a small molecule therapeutic agent having potential to treat breast cancer. In plasma of the first-in-human study, metabolite M2, accounting for 20.7% of total drug-related materials, was identified as a discrete diglucuronide that was absent in rats. Acyl glucuronide M6 and N-glucuronide M4 were also identified as prominent metabolites in human plasma. Several in vitro studies were conducted in incubations of [14C]GDC-0810, synthetic M6 and M4 with liver microsomes, intestinal microsomes, and hepatocytes of different species as well as recombinant UDP-glucuronosyltransferase (UGT) enzymes to further understand the formation of M2. The results suggested that 1) M2 was more efficiently formed from M6 than from M4, and 2) acyl glucuronidation was mainly catalyzed by UGT1A8/7/1 that is highly expressed in the intestines whereas N-glucuronidation was mainly catalyzed by UGT1A4 that is expressed in the human liver. This complicated mechanism presented challenges in predicting M2 formation using human in vitro systems. The absence of M2 and M4 in rats can be explained by low to no expression of UGT1A4 in rodents. M2 could be the first discrete diglucuronide that was formed from both acyl- and N-glucuronidation on a molecule identified in human plasma. SIGNIFICANCE STATEMENT: A discrete diglucuronidation metabolite of GDC-0810, a breast cancer drug candidate, was characterized as a unique circulating metabolite in humans that was not observed in rats or little formed in human in vitro system.

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