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强力肝毒素乙酰肼的激活的分子机制:初始 N 中心自由基和次级 C 中心自由基中间体的鉴定。

Molecular mechanism for the activation of the potent hepatotoxin acetylhydrazine: Identification of the initial N-centered radical and the secondary C-centered radical intermediates.

机构信息

State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, School of Resources and Environment, The University of the Chinese Academy of Sciences, The Chinese Academy of Sciences, Beijing, 100085, PR China; School of Public Health, Zhejiang Chinese Medical University, Hangzhou, Zhejiang, 310053, China.

State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, School of Resources and Environment, The University of the Chinese Academy of Sciences, The Chinese Academy of Sciences, Beijing, 100085, PR China.

出版信息

Free Radic Biol Med. 2023 Aug 1;204:20-27. doi: 10.1016/j.freeradbiomed.2023.04.010. Epub 2023 Apr 23.

DOI:10.1016/j.freeradbiomed.2023.04.010
PMID:37094755
Abstract

Acetylhydrazine (AcHZ), a major human metabolite of the widely-used anti-tuberculosis drug isoniazid (INH), was considered to be responsible for its serious hepatotoxicity and potentially fatal liver injury. It has been proposed that reactive radical species produced from further metabolic activation of AcHZ might be responsible for its hepatotoxicity. However, the exact nature of such radical species remains not clear. Through complementary applications of ESR spin-trapping and HPLC/MS methods, here we show that the initial N-centered radical intermediate can be detected and identified from AcHZ activated by transition metal ions (Mn(III)Acetate and Mn(III) pyrophosphate) and myeloperoxidase. The exact location of the radical was found to be at the distal-nitrogen of the hydrazine group by N-isotope-labeling techniques via using N-labeled AcHZ we synthesized. Additionally, the secondary C-centered radical was identified unequivocally as the reactive acetyl radical by complementary applications of ESR spin-trapping and persistent radical TEMPO trapping coupled with HPLC/MS analysis. This study represents the first detection and unequivocal identification of the initial N-centered radical and its exact location, as well as the reactive secondary acetyl radical. These findings should provide new perspectives on the molecular mechanism of AcHZ activation, which may have potential biomedical and toxicological significance for future research on the mechanism of INH-induced hepatotoxicity.

摘要

乙酰肼(AcHZ)是广泛使用的抗结核药物异烟肼(INH)的主要人体代谢物,被认为是其严重肝毒性和潜在致命性肝损伤的原因。有人提出,AcHZ 进一步代谢活化产生的反应性自由基可能是其肝毒性的原因。然而,这种自由基的确切性质仍不清楚。通过 ESR 自旋捕获和 HPLC/MS 方法的互补应用,我们在这里表明,初始 N 中心自由基中间体可以从过渡金属离子(醋酸锰(III)和焦磷酸锰(III))和髓过氧化物酶激活的 AcHZ 中检测和识别。通过使用我们合成的 N 标记 AcHZ 进行 N 同位素标记技术,发现自由基的确切位置在肼基团的远端氮上。此外,通过 ESR 自旋捕获和持久自由基 TEMPO 捕获与 HPLC/MS 分析的互补应用,明确鉴定出反应性的次级 C 中心自由基为乙酰基自由基。这项研究代表了初始 N 中心自由基及其确切位置以及反应性次级乙酰基自由基的首次检测和明确鉴定。这些发现应为 AcHZ 活化的分子机制提供新的视角,这对于未来 INH 诱导肝毒性机制的研究可能具有潜在的生物医学和毒理学意义。

相似文献

1
Molecular mechanism for the activation of the potent hepatotoxin acetylhydrazine: Identification of the initial N-centered radical and the secondary C-centered radical intermediates.强力肝毒素乙酰肼的激活的分子机制:初始 N 中心自由基和次级 C 中心自由基中间体的鉴定。
Free Radic Biol Med. 2023 Aug 1;204:20-27. doi: 10.1016/j.freeradbiomed.2023.04.010. Epub 2023 Apr 23.
2
Molecular mechanism for the activation of the anti-tuberculosis drug isoniazid by Mn(III): First detection and unequivocal identification of the critical N-centered isoniazidyl radical and its exact location.锰(III)激活抗结核药物异烟肼的分子机制:关键的 N 中心异烟肼自由基的首次检测和明确鉴定及其确切位置。
Free Radic Biol Med. 2019 Nov 1;143:232-239. doi: 10.1016/j.freeradbiomed.2019.07.012. Epub 2019 Jul 15.
3
First unequivocal identification of the critical acyl radicals from the anti-tuberculosis drug isoniazid and its hydrazide analogs by complementary applications of ESR spin-trapping and HPLC/MS methods.首次通过 ESR 自旋捕获和 HPLC/MS 方法的互补应用,明确鉴定出抗结核药物异烟肼及其酰肼类似物中的关键酰基自由基。
Free Radic Biol Med. 2020 Jul;154:1-8. doi: 10.1016/j.freeradbiomed.2020.04.021. Epub 2020 Apr 30.
4
Metabolism of isoniazid by neutrophil myeloperoxidase leads to isoniazid-NAD(+) adduct formation: A comparison of the reactivity of isoniazid with its known human metabolites.中性粒细胞髓过氧化物酶对异烟肼的代谢导致异烟肼-NAD(+)加合物的形成:异烟肼与其已知人体代谢产物反应性的比较。
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5
Activation of hydrazine derivatives to free radicals in the perfused rat liver: a spin-trapping study.灌注大鼠肝脏中肼衍生物向自由基的激活:一项自旋捕获研究。
Biochim Biophys Acta. 1987 May 19;924(2):261-9. doi: 10.1016/0304-4165(87)90021-3.
6
Spin trapping of free radical intermediates produced during the metabolism of isoniazid and iproniazid in isolated hepatocytes.在分离的肝细胞中异烟肼和异丙烟肼代谢过程中产生的自由基中间体的自旋捕获。
Biochem Pharmacol. 1987 Sep 15;36(18):2913-20. doi: 10.1016/0006-2952(87)90202-4.
7
Enzymatic activation of hydrazine derivatives. A spin-trapping study.肼衍生物的酶促活化。自旋捕获研究。
J Biol Chem. 1983 Jan 25;258(2):796-801.
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[Effects of ascorbic acid on the free radical formations of isoniazid and its metabolites].[抗坏血酸对异烟肼及其代谢产物自由基形成的影响]
Yakugaku Zasshi. 1991 Oct;111(10):600-5. doi: 10.1248/yakushi1947.111.10_600.
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Effects of rifampicin and phenobarbital on the fate of isoniazid and hydrazine in vivo in rats.
Toxicol Lett. 1985 Jun;25(3):313-7. doi: 10.1016/0378-4274(85)90213-9.
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Studies on the role of acetylhydrazine in isoniazid hepatotoxicity.
Arch Toxicol Suppl. 1979(2):1-8. doi: 10.1007/978-3-642-67265-1_1.