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分子动力学模拟和实验研究揭示了醉茄酮 A 和醉茄酮在模型细胞膜上的渗透性差异。

Molecular dynamics simulations and experimental studies reveal differential permeability of withaferin-A and withanone across the model cell membrane.

机构信息

AIST-INDIA DAILAB, DBT-AIST International Center for Translational and Environmental Research (DAICENTER), National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, 305 8565, Japan.

DAILAB, Department of Biochemical Engineering and Biotechnology, Indian Institute of Technology (IIT) Delhi, Hauz Khas, New Delhi, 110 016, India.

出版信息

Sci Rep. 2021 Jan 27;11(1):2352. doi: 10.1038/s41598-021-81729-z.

Abstract

Poor bioavailability due to the inability to cross the cell membrane is one of the major reasons for the failure of a drug in clinical trials. We have used molecular dynamics simulations to predict the membrane permeability of natural drugs-withanolides (withaferin-A and withanone) that have similar structures but remarkably differ in their cytotoxicity. We found that whereas withaferin-A, could proficiently transverse through the model membrane, withanone showed weak permeability. The free energy profiles for the interaction of withanolides with the model bilayer membrane revealed that whereas the polar head group of the membrane caused high resistance for the passage of withanone, the interior of the membrane behaves similarly for both withanolides. The solvation analysis further revealed that the high solvation of terminal O5 oxygen of withaferin-A was the major driving force for its high permeability; it interacted with the phosphate group of the membrane that led to its smooth passage across the bilayer. The computational predictions were tested by raising and recruiting unique antibodies that react to withaferin-A and withanone. The time-lapsed analyses of control and treated cells demonstrated higher permeation of withaferin-A as compared to withanone. The concurrence between the computation and experimental results thus re-emphasised the use of computational methods for predicting permeability and hence bioavailability of natural drug compounds in the drug development process.

摘要

由于无法穿过细胞膜导致生物利用度差是药物在临床试验中失败的主要原因之一。我们使用分子动力学模拟来预测具有相似结构但细胞毒性差异显著的天然药物-withanolides(withaferin-A 和 withanone)的膜通透性。我们发现,虽然 withaferin-A 能够有效地穿过模型膜,但 withanone 的通透性较弱。withanolides 与模型双层膜相互作用的自由能曲线表明,虽然膜的极性头基团对 withanone 的通过造成了很高的阻力,但膜的内部对两种 withanolides 的行为相似。溶剂化分析进一步表明,withaferin-A 末端 O5 氧的高溶剂化是其高通透性的主要驱动力;它与膜的磷酸基团相互作用,导致其顺利穿过双层。通过提高和招募专门针对 withaferin-A 和 withanone 的独特抗体来测试计算预测。对对照和处理细胞的时程分析表明,与 withanone 相比,withaferin-A 的渗透性更高。计算结果和实验结果的一致性再次强调了在药物开发过程中使用计算方法预测天然药物化合物的通透性和生物利用度的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d66/7840742/04556bc17dd8/41598_2021_81729_Fig1_HTML.jpg

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