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奥氮平的自由基清除和抗铁死亡分子机制:计算分析的见解。

Radical Scavenging and Anti-Ferroptotic Molecular Mechanism of Olanzapine: Insight from a Computational Analysis.

机构信息

Dipartimento di Scienze Chimiche, Università degli Studi di Padova, Via Marzolo 1, 35131 Padova, Italy.

Dipartimento di Medicina Molecolare e Traslazionale, Università degli Studi di Brescia, Viale Europa 11, 25123 Brescia, Italy.

出版信息

Inorg Chem. 2024 Nov 18;63(46):21856-21867. doi: 10.1021/acs.inorgchem.4c02534. Epub 2024 Sep 17.

DOI:10.1021/acs.inorgchem.4c02534
PMID:39287358
Abstract

Olanzapine is an antipsychotic drug that has been reported to suppress ferroptosis, a recently discovered form of regulated cell death. In this work, the scavenging activity of olanzapine and some of its metabolites is investigated using state-of-the-art density functional theory calculations (level of theory: (SMD)-M06-2X/6-311+G(d,p)//M06-2X/6-31G(d)). Indeed, this reactivity is linked to the therapeutic activity of many antipsychotic drugs and ferroptosis inhibitors. Furthermore, the distinction between hydrogen atom transfer (HAT) and concerted proton coupled electron transfer (cPCET) is elucidated for the most reactive sites of the studied molecules. Then, a promising experimentally guided anti-ferroptotic cyclic mechanism is proposed for ferrostatin-1, a well-known ferroptosis inhibitor, involving the oxidation of Fe to Fe, the quenching of hydroperoxyl radicals, and the subsequent regeneration of the reactant (level of theory: M06/6-311+G(d,p),def2TZVP//M06/6-31G(d),LANL2DZ). An analogous cyclic process is investigated for liproxstatin-1 and olanzapine, whose activity has been reported in the literature and compared to ferrostatin-1. Finally, the effect of water solvation is evaluated unveiling that the anti-ferroptotic activity of olanzapine is likely less efficient in polar media.

摘要

奥氮平是一种抗精神病药物,据报道它能抑制铁死亡,这是一种新发现的细胞死亡形式。在这项工作中,使用最先进的密度泛函理论计算(理论水平:(SMD)-M06-2X/6-311+G(d,p)//M06-2X/6-31G(d))研究了奥氮平和其一些代谢物的清除活性。事实上,这种反应性与许多抗精神病药物和铁死亡抑制剂的治疗活性有关。此外,阐明了研究分子中最活性部位的氢原子转移(HAT)和协同质子耦合电子转移(cPCET)之间的区别。然后,针对一种已知的铁死亡抑制剂——ferrostatin-1,提出了一种有前途的、经实验指导的抗铁死亡循环机制,涉及到 Fe 到 Fe 的氧化、氢过氧基自由基的猝灭以及反应物的随后再生(理论水平:M06/6-311+G(d,p),def2TZVP//M06/6-31G(d),LANL2DZ)。还研究了 liproxstatin-1 和奥氮平的类似循环过程,它们的活性在文献中有报道,并与 ferrostatin-1 进行了比较。最后,评估了水溶剂化的影响,揭示了奥氮平的抗铁死亡活性在极性介质中可能效率较低。

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