糖内酯对cyp介导的外源性代谢的影响。

Dayanidhi Behera, Pankaj Jain, Vishwanath Kurawattimath, Nagaraj Gowda
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引用次数: 0

摘要

背景:糖内酯在体外微粒体和重组尿苷二磷酸葡萄糖醛酸转移酶(rUGTs)培养中用作β-葡萄糖醛酸酶抑制剂,以增强葡萄糖醛酸途径,从而促进葡萄糖醛酸代谢产物的形成。我们利用人肝微粒体(HLM)和第1期和第2期辅助因子,研究了其对CYP介导的药物(化合物-174、非那西丁和奎尼丁)代谢的影响。方法:化合物在添加辅助因子的HLM中孵育,评估第1期(NADPH)和第2期(NADPH、alamethiin、saccharolactone和UDPGA)代谢。化合物-174在HLM(±1-ABT)和人重组CYP亚型中进行了CYP表型测定。在HLM中也产生了糖内酯对CYP的抑制谱。结果:化合物-174、非那西丁和奎尼丁在添加alamethicin、糖内酯和UDPGA的反应中代谢明显降低,表明糖内酯的加入抑制了代谢。非那西丁和奎尼丁是CYP1A2和CYP3A4亚型的已知底物。1-ABT的存在显著抑制了HLM中化合物- 174的代谢,并且发现CYP3A4和CYP2C8亚型是其代谢的主要亚型。进一步评估的CYP抑制高表示saccharolactone强烈抑制CYP1A2, 2 d6, 3 a4和2 c8亚型的IC50值小于4 mM.Conclusion:研究结果表明,saccharolactone强烈抑制CYP1A2, 2 d6, 3 a4和2 c8亚型(IC50 < 4毫米),导致显著的抑制代谢化合物- 174,非那西汀和奎尼丁的问题和应该注意使用适当浓度的滴定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Saccharolactone on CYP-mediated Metabolism of Xenobiotics.

Background: Saccharolactone is used as a β-glucuronidase inhibitor in in vitro microsomal and recombinant uridine diphosphoglucuronosyl transferases (rUGTs) incubations to enhance glucuronide pathway and, thereby, formation of glucuronide metabolites. We investigated its effect on CYP mediated metabolism of drugs (compound-174, phenacetin and quinidine) using human liver microsomes (HLM) supplemented with Phase-1 and Phase-2 co-factors.

Methods: Compounds were incubated in HLM supplemented with co-factors to assess Phase-1 (NADPH) and Phase-2 (NADPH, alamethicin, saccharolactone and UDPGA) metabolism. CYP phenotype assay for compound-174 was conducted in HLM (± 1-ABT) and human recombinant CYP isoforms. CYP inhibition profile of saccharolactone was also generated in HLM.

Results: The metabolism of compound-174, phenacetin and quinidine in HLM significantly decreased in reactions containing additional components like alamethicin, saccharolactone and UDPGA and indicated that the addition of saccharolactone inhibited the metabolism. Phenacetin and quinidine are known substrates of CYP1A2 and CYP3A4 isoforms. The metabolism of compound- 174 was significantly inhibited in the presence of 1-ABT in HLM, and CYP3A4 and CYP2C8 isoforms were found to be the predominant isoforms responsible for its metabolism. Further evaluation of CYP inhibition in HLM indicated saccharolactone to be a strong inhibitor of CYP1A2, 2D6, 3A4 and 2C8 isoforms with IC50 values of less than 4 mM.

Conclusion: The findings indicated that saccharolactone being a strong inhibitor of CYP1A2, 2D6, 3A4 and 2C8 isoforms (IC50 < 4 mM), resulted in significant inhibition of the metabolism of compound-174, phenacetin and quinidine in HLM and caution should be exercised in using it with proper titration of the concentrations.

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