首页> 美国卫生研究院文献>Pharmaceuticals >Supramolecular Complexes of β-Cyclodextrin with Clomipramine and Doxepin: Effect of the Ring Substituent and Component of Drugs on Their Inclusion Topologies and Structural Flexibilities
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Supramolecular Complexes of β-Cyclodextrin with Clomipramine and Doxepin: Effect of the Ring Substituent and Component of Drugs on Their Inclusion Topologies and Structural Flexibilities

机译:β-环糊精的超分子复合物具有氯甲吡喃菊酯和己肽:环取代基的作用和药物组分对其包涵体拓扑和结构柔韧性

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摘要

Depression is a global threat. Tricyclic antidepressants (TCAs) are still efficacious in treating depression, albeit with more side effects. Cyclodextrins (CDs) with a suitable nanocavity are potential drug carriers and can enhance the drug bioavailability. Aiming for an atomistic understanding of the CD encapsulation facilitating the improvement of drug stability and the reduction of side effects, a comprehensive study series of the β-CD–TCA inclusion complexes through single crystal X-ray diffraction and density functional theory (DFT) calculation was undertaken. This work reports the supramolecular complexes of β-CD with two pivotal TCAs, clomipramine (CPM; 1) and doxepin (DXP; 2). The different inclusion topologies of the β-CD–TCA complexes were notable. X-ray analysis revealed that, in 1, the CPM B-ring (without chloro group) was entrapped in the β-CD cavity, whereas, in 2, the E-DXP A-ring and the Z-DXP B-ring were disordered in the cavity, yielding energetically favorable complexes primarily maintained by intermolecular C–H⋯π interactions, as indicated by DFT calculation. Because both wings of TCAs were similar, an alternative inclusion scenario of the A-ring was evidenced crystallographically in four other TCA complexes. The enhanced TCA thermodynamic stabilities via CD inclusion complexation helped to reduce the side effects and to increase the bioavailability. Moreover, the scrutinization of six TCAs in different lattice circumstances revealed the greater TCA structural flexibilities for their optimum pharmacological activity while binding with proteins.
机译:抑郁症是一个全球威胁。三环抗抑郁药(TCAs)仍然有效地治疗抑郁症,尽管具有更多的副作用。具有合适的纳米恒温的环糊精(CDS)是潜在的药物载体,可以增强药物生物利用度。旨在对CD包封的原子理解促进药物稳定性的提高和副作用的减少,通过单晶X射线衍射和密度泛函理论(DFT)计算β-CD-TCA包合物的综合研究系列正在开展。这项工作报告了β-CD的超分子复合物,具有两个关键TCA,Clomipramine(CPM; 1)和Doxepin(DXP; 2)。 β-CD-TCA复合物的不同夹杂物拓扑是值得注意的。 X射线分析显示,在1中,在β-CD腔中捕获CPM B环(没有氯基),而在2中,E-DXP A-RONG和Z-DXP B环如DFT计算所示,在腔内混乱,产生主要由分子间C-Hππ相互作用的良好良好的复合物。因为TCA的两个翼都相似,所以在其他四个TCA复合物中,α环的替代包含场景被证明。通过CD包合物络合增强的TCA热力学稳定有助于降低副作用并增加生物利用度。此外,在不同晶格环境中六个TCA的仔细化揭示了其最佳药理活性的TCA结构灵活性,同时与蛋白质结合。

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