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CYP3A4介导的反应性代谢物对CYP1A2的时间依赖性抑制(TDI):非自杀性底物不可逆TDI新机制的提出

Time-dependent inhibition (TDI) of CYP1A2 by a CYP3A4-mediated reactive metabolite: proposal for a novel mechanism of irreversible TDI by a non-suicide substrate.

作者信息

Nishimuta Haruka, Sato Kimihiko, Watanabe Takao, Yabuki Masashi

机构信息

a Preclinical Research Unit , Sumitomo Dainippon Pharma Co. Ltd. , Osaka , Japan.

出版信息

Xenobiotica. 2019 Jun;49(6):636-645. doi: 10.1080/00498254.2018.1488011. Epub 2018 Jul 23.

Abstract
  1. The purpose of this study was to clarify the mechanism of DSP-1053 time-dependent inhibition (TDI) for CYP1A2. 2. DSP-1053 inhibited time- and concentration-dependently CYP1A2 activity in human liver microsomes even in a dilution assay. However, DSP-1053 was not metabolized by recombinant human CYP1A2. These findings indicate that the inhibitory effect of DSP-1053 on CYP1A2 does not follow a general mechanism-based inhibition (MBI) because it did not seem to be a suicide substrate. 3. In fact, CYP1A2 was not inhibited with DSP-1053 pre-incubation in recombinant human CYP1A2. On the other hand, CYP1A2 was potently inhibited after pre-incubation with DSP-1053 in a mixture of human recombinant CYP1A2 and CYP3A4. In addition, DSP-1053 TDI of CYP1A2 in human liver microsomes was drastically reduced not only by addition of a CYP3A4 inhibitor, but also by addition of potassium cyanide (KCN), which is a trapping agent for iminium ions. We also confirmed in this study that CYP1A2 suicide inhibition by DSP-1053 metabolites generated by CYP3A4 had only minimal role in DSP-1053 TDI of CYP1A2. 4. In conclusion, a possible mechanism for DSP-1053 TDI of CYP1A2 is that DSP-1053 iminium ion, which is generated by CYP3A4, departs from CYP3A4 without inhibiting it and covalently binds to CYP1A2.
摘要
  1. 本研究的目的是阐明DSP - 1053对CYP1A2的时间依赖性抑制(TDI)机制。2. DSP - 1053在人肝微粒体中对CYP1A2活性具有时间和浓度依赖性抑制作用,即使在稀释试验中也是如此。然而,DSP - 1053未被重组人CYP1A2代谢。这些发现表明,DSP - 1053对CYP1A2的抑制作用不遵循一般的基于机制的抑制(MBI),因为它似乎不是自杀底物。3. 事实上,在重组人CYP1A2中用DSP - 1053预孵育后,CYP1A2未被抑制。另一方面,在人重组CYP1A2和CYP3A4的混合物中用DSP - 1053预孵育后,CYP1A2被强烈抑制。此外,人肝微粒体中CYP1A2的DSP - 1053 TDI不仅通过添加CYP3A4抑制剂而大幅降低,而且通过添加氰化钾(KCN)(一种亚胺离子捕获剂)也大幅降低。我们在本研究中还证实,由CYP3A4产生的DSP - 1053代谢产物对CYP1A2的自杀抑制在DSP - 1053对CYP1A2的TDI中作用极小。4. 总之,DSP - 1053对CYP1A2的TDI的一种可能机制是,由CYP3A4产生的DSP - 1053亚胺离子在不抑制CYP3A4的情况下从CYP3A4脱离并与CYP1A2共价结合。

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