Structural Bioinformatics Lab, CSIR-Institute of Himalayan Bioresource Technology (CSIR-IHBT), Palampur, HP 176061, India; Biotechnology Division, CSIR-IHBT, Palampur, HP 176061, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad- 201002, India.
Structural Bioinformatics Lab, CSIR-Institute of Himalayan Bioresource Technology (CSIR-IHBT), Palampur, HP 176061, India; Biotechnology Division, CSIR-IHBT, Palampur, HP 176061, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad- 201002, India.
Carbohydr Polym. 2023 Jun 15;310:120729. doi: 10.1016/j.carbpol.2023.120729. Epub 2023 Feb 20.
Formononetin, a naturally occurring isoflavone exhibits a wide range of therapeutic applications including antioxidant, anti-tumor, antiviral, anti-diabetic and neuroprotective activities. However, the low hydro-solubility of formononetin has limited its prospective use in cosmetic, neutraceutical and pharmaceutical industries. Cyclodextrins (CDs), especially β-CD and its derivatives have emerged as promising agents to improve the water solubility of poorly hydrosoluble compounds by the formation of inclusion complexes. We employed multiscale (1000 ns) explicit solvent and umbrella sampling molecular dynamics (MD) simulations to study the interactions and thermodynamic parameters of inclusion complex formation between formononetin and five most commonly used β-CD derivatives. Classical MD simulations revealed two possible binding conformations of formononetin inside the central cavity of hydroxypropyl-β-CD (HP-β-CD), randomly methylated-β-CD (ME-β-CD), and sulfobutylether-β-CD (SBE-β-CD). The binding conformation with the benzopyrone ring of formononetin inside the central cavity of β-CD derivatives was more frequent than the phenyl group occupying the hydrophobic cavity. These interactions were supported by a variety of non-bonded contacts including hydrogen bonds, pi-lone pair, pi-sigma, and pi-alkyl interactions. Formononetin showed favorable end-state MD-driven thermodynamic binding free energies with all the selected β-CD derivatives, except succinyl-β-CD (S-β-CD). Furthermore, umbrella sampling simulations were used to investigate the interactions and thermodynamic parameters of the host-guest inclusion complexes. The SBE-β-CD/formononetin inclusion complex showed the lowest binding energy signifying the highest affinity among all the selected host-guest inclusion complexes. Our study could be used as a standard for analyzing and comparing the ability of different β-CD derivatives to enhance the hydro-solubility of poorly soluble molecules.
芒柄花素是一种天然异黄酮,具有广泛的治疗应用,包括抗氧化、抗肿瘤、抗病毒、抗糖尿病和神经保护活性。然而,芒柄花素的低水溶性限制了其在化妆品、营养保健品和制药行业的潜在用途。环糊精(CDs),特别是β-CD 及其衍生物,已成为提高疏水性差的化合物水溶性的有前途的试剂,通过形成包合物。我们采用多尺度(1000ns)显式溶剂和伞状采样分子动力学(MD)模拟研究了芒柄花素与五种最常用的β-CD 衍生物形成包合物的相互作用和热力学参数。经典 MD 模拟揭示了芒柄花素在羟丙基-β-CD(HP-β-CD)、随机甲基化-β-CD(ME-β-CD)和磺丁基醚-β-CD(SBE-β-CD)的中心腔内的两种可能的结合构象。芒柄花素的苯并吡喃环位于β-CD 衍生物的中心腔内的结合构象比苯环占据疏水性腔更频繁。这些相互作用得到了多种非键相互作用的支持,包括氢键、pi-孤对、pi-σ 和 pi-烷基相互作用。芒柄花素与除琥珀酰-β-CD(S-β-CD)以外的所有选定的β-CD 衍生物均表现出有利的终态 MD 驱动热力学结合自由能。此外,伞状采样模拟用于研究主体-客体包合物的相互作用和热力学参数。SBE-β-CD/芒柄花素包合物的结合能最低,表明在所选择的主体-客体包合物中具有最高的亲和力。我们的研究可作为分析和比较不同β-CD 衍生物提高疏水性差分子水溶性能力的标准。