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盖仑:一种具有生物活性的分子,具有计算机预测代谢产物、在大鼠肝微粒体中的体外代谢特征分析,以及与 CYP450 同工酶的计算机结合机制。

Galeon: A Biologically Active Molecule with In Silico Metabolite Prediction, In Vitro Metabolic Profiling in Rat Liver Microsomes, and In Silico Binding Mechanisms with CYP450 Isoforms.

机构信息

Department of Pharmaceutical Chemistry, College of Pharmacy, King Saud University, Riyadh 11451, Saudi Arabia.

College of Pharmacy, Yeungnam University, Gyeongsan 38541, Korea.

出版信息

Molecules. 2020 Dec 13;25(24):5903. doi: 10.3390/molecules25245903.

Abstract

Galeon, a natural cyclic-diarylheptanoid (CDH), which was first isolated from L., is known to have potent cytotoxicity against A549 cell lines, anti-tubercular activity against H37Rv, chemo-preventive potential, and moderate topoisomerase inhibitory activity. Here, in silico metabolism and toxicity prediction of galeon by CYP450, in vitro metabolic profiling study in rat liver microsomes (RLMs), and molecular interactions of galeon-CYP450 isoforms were performed. An in silico metabolic prediction study showed demethyl and mono-hydroxy galeon were the metabolites with the highest predictability. Among the predicted metabolites, mono-hydroxy galeon was found to have plausible toxicities such as skin sensitization, thyroid toxicity, chromosome damage, and carcinogenicity. An in vitro metabolism study of galeon, incubated in RLMs, revealed eighteen Phase-I metabolites, nine methoxylamine, and three glutathione conjugates. Identification of possible metabolites and confirmation of their structures were carried out using ion-trap tandem mass spectrometry. In silico docking analysis of galeon demonstrated significant interactions with active site residues of almost all CYP450 isoforms.

摘要

Galeon,一种天然的环二芳基庚烷(CDH),最初从 L.中分离出来,已知对 A549 细胞系具有很强的细胞毒性,对 H37Rv 具有抗结核活性、化学预防潜力和适度的拓扑异构酶抑制活性。在这里,通过 CYP450 对 galeon 进行了计算机代谢和毒性预测、在大鼠肝微粒体(RLM)中的体外代谢谱研究以及 galeon-CYP450 同工型的分子相互作用。计算机代谢预测研究表明,去甲基和单羟基 galeon 是预测性最高的代谢物。在所预测的代谢物中,单羟基 galeon 被发现具有合理的毒性,如皮肤致敏、甲状腺毒性、染色体损伤和致癌性。在 RLMs 中孵育的 galeon 的体外代谢研究揭示了十八种 I 相代谢物、九种甲氧基胺和三种谷胱甘肽缀合物。使用离子阱串联质谱法对可能的代谢物进行鉴定并确认其结构。galeon 的计算机对接分析表明,与几乎所有 CYP450 同工型的活性位点残基都有显著的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd79/7763192/ed8519650237/molecules-25-05903-g001.jpg

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