IF 3.1 Q2 PHARMACOLOGY & PHARMACY
Advanced pharmaceutical bulletin Pub Date : 2024-12-30 Epub Date: 2024-09-15 DOI:10.34172/apb.39294
Rajani Mathur, Sahiba Khan, Ruchi Tripathi, Saima Amin, Saumitra Dey Choudhary
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引用次数: 0

摘要

目的:植物大分子结构复杂,水溶性差,生物稳定性低,限制了其肠道渗透性,导致口服生物利用率低,因此临床应用和疗效往往受到阻碍。芦丁(RT)、槲皮素(QU)和胸腺醌(TQ)是其中少数几种具有强效和治疗作用的植物大分子,有待最大限度地加以利用。为了弥补这一空白,我们尝试开发一种可用于多种植物大分子的增强肠道渗透的单一策略:方法:我们开发了一种简单易用的方法,即使用 Eudragit 基质制备植物大分子 RT、QU、TQ 的纳米颗粒(RT-PNP、QU-PNP、TQ-PNP),并对颗粒特性、EE、体外释放和动力学进行研究。将负载植物大分子的纳米粒子(PNPs)封装在 HPMC 级胶囊壳中,并用常温肠囊法评估其肠道渗透性:结果:RT-PNP、QU-PNP和TQ-PNP的平均粒径分别为446±0.152、39.6±0.006和186±0.513 nm,多分散指数分别为P2、显著(PConclusion:所开发的 PNP 似乎是增加疏水性植物大分子渗透性的一种好方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Developing and Applying a Single Strategy for Improved Intestinal Permeability of Diverse and Complex Phytomolecules: Nanoformulations of Rutin, Quercetin, Thymoquinone Provide Proof-of-Concept.

Purpose: The clinical use and efficacy of phytomolecules are often hampered as their complex structure, poor aqueous solubility and low biological stability restricts their intestinal permeability which results in low oral bioavailability. Rutin (RT), quercetin (QU), thymoquinone (TQ) are few of such potent and therapeutically versatile phytomolecules that await maximal utilization. To address this lacuna, an attempt was made to develop a single strategy for enhanced intestinal permeation that can be applied to diverse phytomolecules.

Methods: A simple idea with easy-to-apply method was developed that involved preparing nanoparticles of the phytomolecules RT, QU, TQ using Eudragit matrix (RT-PNP, QU-PNP, TQ-PNP) and examined for particle characteristics, EE, in vitro release and kinetics. Phytomolecule loaded nanoparticle (PNPs) were encapsulated in HPMC grade capsule shell and evaluated for intestinal permeability by everted gut sac method.

Results: The average particle sizes of RT-PNP, QU-PNP, TQ-PNP were 446±0.152, 39.6±0.006 and 186±0.513 nm, polydispersity indices were<0.5 with negative zeta potential. The % release of respective phytomolecule from RT-PNP, QU-PNP, TQ-PNP was significantly higher (P<0.05) at pH 6.8 than pH 1.2. PNPs followed Higuchi kinetics with non-Fickian diffusion mechanisms. The apparent intestinal permeability (Papp) of RT-PNP, QU-PNP, TQ-PNP were 14.45±4.85, 12.96±1.73 and 30.87±8.75 µg/cm2, respectively, significantly (<0.5) greater vs RT, QU, TQ, respectively. CLSM confirmed significantly higher (P<0.05) intestinal permeation of RT-PNP, QU-PNP, TQ-PNP vs RT, QU, TQ, respectively.

Conclusion: Developed PNPs appear to be a good approach to increase the permeability of hydrophobic phytomolecules.

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来源期刊
Advanced pharmaceutical bulletin
Advanced pharmaceutical bulletin PHARMACOLOGY & PHARMACY-
CiteScore
6.80
自引率
2.80%
发文量
51
审稿时长
12 weeks
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