Comparative Study of Conventional and Fatty Acid Vesicular Systems – An Overview

Gayathri Devi K, Lakshmi Pk
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Abstract

: Fatty acid vesicles are suspensions of closed lipid bilayers that are composed of fatty acids and their ionized species which are restricted to a narrow pH range. The fatty acid molecules are oriented in such a way that their hydrocarbon tails are directed toward the membrane interior and the carboxyl groups are in contact with water. Recent innovations provide an opportunity to formulate fatty acid vesicles with distinguishing features such as extension of pH range, insensitivity toward divalent cations, easy alteration in membrane composition, very simple systems in terms of chemical nature and enhanced stability properties. This review contains detail about the present stature of fatty acid vesicles, comparative study of fatty acid vesicles with conventional liposomes, unique features of fatty acid vesicles (dynamicity, stability, matrix effect etc.,) and key evaluation parameters of fatty acid vesicles. Fatty acid vesicles were found to have high penetration capacity, good bio-distribution properties, increased diffusion rate and optimum drug deposition nature than other vesicular forms. They have various applications in transdermal delivery, follicular delivery and in brain targeting drug delivery systems (drugs that are unable to cross blood brain barrier due to high solubility). This review focuses on various researches conducted on fatty acid vesicles with reference to its formulation and evaluation parameters. © 2020 iGlobal Research and Publishing Foundation. All rights reserved.
传统和脂肪酸囊泡系统的比较研究综述
脂肪酸囊泡是封闭脂质双分子层的悬浮液,由脂肪酸及其电离物质组成,这些物质被限制在一个狭窄的pH范围内。脂肪酸分子以这样一种方式定向,即它们的碳氢化合物尾部指向膜内部,羧基与水接触。最近的创新为脂肪酸囊泡的制备提供了机会,这些囊泡具有独特的特征,如pH范围的扩展、对二价阳离子的不敏感、膜组成的容易改变、化学性质非常简单的系统和增强的稳定性。本文综述了脂肪酸囊泡的现状、脂肪酸囊泡与常规脂质体的比较研究、脂肪酸囊泡的独特性(动态性、稳定性、基质效应等)以及脂肪酸囊泡的关键评价参数。脂肪酸囊泡比其他囊泡具有高渗透能力、良好的生物分布特性、更快的扩散速率和最佳的药物沉积性质。它们在透皮递送、滤泡递送和脑靶向药物递送系统(由于高溶解度而无法穿过血脑屏障的药物)中有各种应用。本文综述了脂肪酸囊泡的各种研究进展,并对其配方和评价参数进行了综述。©2020全球研究与出版基金会。版权所有。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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