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Design Synthesis and Biological Evaluation of Phenol Bioisosteric Analogues of 3-Hydroxymorphinan

机译:3-羟基吗啡喃的酚类生物立体异构体的设计合成及生物学评价

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摘要

The neuroprotective agent 3-hydroxymorphinan (3-HM) is a well-documented and highly safe therapeutic intervention for the inflammatory-related effects of Parkinson’s disease (PD). However, the bioavailability of 3-HM is very low due to the rapid first-pass metabolism of the phenolic moiety. In the present study, we sought to improve the metabolic stability and overall pharmacokinetic profile of 3-HM. Based on an iterative design process that a suitably arranged heterocycle with an NH group would serve as the metabolically stable isostere of the phenolic group, we designed and synthesized two analogues of 3-HM. Benzimidazolone compound >8 (imidazolone-morphinan) was comparable in activity to 3-HM against lipopolysaccharide (LPS)-induced inflammatory responses in microglial BV2 cells and in vivo animal experiments (MPTP-induced PD mouse model). Moreover, the in vitro study showed that imidazolone-morphinan was non-toxic to microglia, indicating its high safety. Considering the favourable and unique preclinical profiles, compound >8 was nominated as a candidate for further clinical development.
机译:神经保护剂3-羟吗啡喃(3-HM)是针对帕金森氏病(PD)的炎症相关作用的有据可查且高度安全的治疗性干预措施。然而,由于酚部分的快速首过代谢,3-HM的生物利用度非常低。在本研究中,我们试图改善3-HM的代谢稳定性和整体药代动力学。基于一个迭代设计过程,其中一个带有NH基团的杂环被适当地安排为酚基团的代谢稳定等排体,我们设计并合成了3-HM的两个类似物。苯并咪唑酮化合物> 8 (咪唑啉酮-吗啡喃)的活性与3-HM在小胶质BV2细胞和体内动物实验(MPTP诱导的PD小鼠模型)中针对脂多糖(LPS)诱导的炎症反应相当。此外,体外研究表明咪唑酮-吗啡喃对小胶质细胞无毒,表明其安全性高。考虑到有利且独特的临床前研究,化合物> 8 被提名为进一步临床开发的候选药物。

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