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无定形纳米桑色素在抗癌活性和口服生物利用度方面优于天然分子。

Amorphous nano morin outperforms native molecule in anticancer activity and oral bioavailability.

机构信息

School of Nano Sciences, Central University of Gujarat, Gandhinagar, India.

School of Life Sciences, Central University of Gujarat, Gandhinagar, India.

出版信息

Drug Dev Ind Pharm. 2020 Jul;46(7):1123-1132. doi: 10.1080/03639045.2020.1776318. Epub 2020 Jun 12.

Abstract

In the past decade, naturally occurring phytoconstituents have emerged as potential therapeutic agents and alternative to synthetic drugs. However, efficient delivery of hydrophobic phytoconstituents into the body with desired therapeutic efficacy is a key challenge for the pharmaceutical industries due to their insolubility in water and low oral bioavailability. Nanosuspension formulations have shown promises to improve the delivery of the hydrophobic molecules with simultaneously avoiding the drawbacks like carrier toxicity and scale-up issues of other nanotechnology-based drug delivery systems. In this study, we have used morin hydrate (MH), a flavonol, and developed MH nanosuspension formulation (MHNS) to improve its poor physiochemical properties and low oral bioavailability. Different stabilizers with varying concentrations were investigated for preparing nanosuspension. MHNS was characterized by DLS, TEM, FTIR, DSC, powder XRD and was evaluated for its solubility, dissolution, partition coefficient, in-vitro anticancer activity and pharmacokinetics in rats. The optimized nanosuspension formulation, with a size of <100 nm, is capable of increasing aqueous solubility, dissolution rate, and oral bioavailability of MH. Moreover, the therapeutic efficacy, in terms of cytotoxicity to human lung cancer cells, of MH was also increased after formulating into nanosuspension form.

摘要

在过去的十年中,天然存在的植物化合物已成为有潜力的治疗剂和合成药物的替代品。然而,由于其在水中的不溶性和低口服生物利用度,将疏水性植物化合物有效地递送到体内并达到所需的治疗效果是制药行业面临的一个关键挑战。纳米混悬剂制剂已显示出改善疏水分子传递的潜力,同时避免了其他基于纳米技术的药物传递系统的载体毒性和规模化问题。在这项研究中,我们使用了一种黄酮醇——密蒙花素(MH),并开发了 MH 纳米混悬剂制剂(MHNS),以改善其较差的物理化学性质和低口服生物利用度。研究了不同浓度的不同稳定剂来制备纳米混悬剂。通过 DLS、TEM、FTIR、DSC、粉末 XRD 对 MHNS 进行了表征,并对其溶解度、溶解速率、分配系数、体外抗癌活性和在大鼠体内的药代动力学进行了评价。优化的纳米混悬剂制剂粒径<100nm,能够提高 MH 的水溶解度、溶解速率和口服生物利用度。此外,将 MH 制成纳米混悬剂形式后,其对人肺癌细胞的细胞毒性的治疗效果也得到了提高。

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