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氟伏沙明:对其分子特性以及与β-环糊精包合作用的首次全面见解。

Fluvoxamine: First comprehensive insights into its molecular characteristics and inclusion complexation with β-cyclodextrin.

作者信息

Aree Thammarat

机构信息

Department of Chemistry, Faculty of Science, Chulalongkorn University, Bangkok, 10330, Thailand.

出版信息

J Pharm Anal. 2025 Jan;15(1):101040. doi: 10.1016/j.jpha.2024.101040. Epub 2024 Jul 14.

Abstract

Fluvoxamine (FXM) is a well-known selective serotonin reuptake inhibitor (SSRI) for treating depression and has recently been repurposed for efficacious treatment of coronavirus disease 2019. Although cyclodextrin (CD) encapsulation effectively improves the physicochemical properties of structurally diverse SSRIs, the molecular understanding of their associations is deficient. This comprehensive study used single-crystal X-ray diffraction integrated with density functional theory (DFT) calculation to provide deep insights into the conformationally flexible FXM and its inclusion complexation with β-CD. X-ray analysis revealed the first crystallographic evidence of the uncomplexed 3FXM-H·3maleate (). Three FXM-H ions are counter-balanced by three planar maleate ions to form a thin layer stabilized by infinite fused H-bond rings R (12) and R (16) and the interplay of π⋯π, CF⋯π and F⋯F interactions. For 2β-CD·2FXM-H·maleate·23·2HO (), the tail-to-tail β-CD dimer encapsulates two FXM-H 4-(trifluoromethyl)phenyl moieties, which are charge-balanced by the rare non-planar maleate and stabilized by N/OH⋯O H-bonds and F⋯F interactions. This is a host-guest recognition pattern uniquely observed for all β-CD complexes with halogen (X)-bearing SSRIs, indicating the essence of X⋯X interactions and the shielding of X-containing moieties in the wall of the β-CD dimer. DFT calculations unveiled that the monomeric and dimeric β-CD-FXM complexes and FXM isomers are energetically stable, which alleviates the numbness and bitterness of the orally administered drug as previously patented. Additionally, an insightful conformational analysis of FXM emphasizes the importance of drug structural adaptation in pharmacological functions.

摘要

氟伏沙明(FXM)是一种治疗抑郁症的著名选择性5-羟色胺再摄取抑制剂(SSRI),最近已被重新用于有效治疗2019冠状病毒病。尽管环糊精(CD)包封有效地改善了结构多样的SSRI的物理化学性质,但对它们之间关联的分子理解仍不足。这项全面的研究使用单晶X射线衍射结合密度泛函理论(DFT)计算,以深入了解构象灵活的FXM及其与β-CD的包合络合作用。X射线分析揭示了未络合的3FXM-H·3马来酸盐()的首个晶体学证据。三个FXM-H离子由三个平面马来酸根离子平衡,形成一层由无限融合的氢键环R(12)和R(16)以及π⋯π、CF⋯π和F⋯F相互作用的相互作用稳定的薄层。对于2β-CD·2FXM-H·马来酸盐·23·2HO(),尾对尾的β-CD二聚体包封了两个FXM-H 4-(三氟甲基)苯基部分,它们由罕见的非平面马来酸盐电荷平衡,并通过N/OH⋯O氢键和F⋯F相互作用稳定。这是在所有含卤素(X)的SSRI与β-CD络合物中独特观察到的主客体识别模式,表明了X⋯X相互作用的本质以及β-CD二聚体壁中含X部分的屏蔽作用。DFT计算表明,单体和二聚体β-CD-FXM络合物以及FXM异构体在能量上是稳定的,这减轻了口服药物如先前专利所述的麻木和苦味。此外,对FXM的深入构象分析强调了药物结构适应性在药理功能中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9eda/11787589/5ef7df8cd2bb/ga1.jpg

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