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卵磷脂有机凝胶:治疗皮肤病的一种有前景的载体。

Lecithin Organogel: A Promising Carrier for the Treatment of Skin Diseases.

作者信息

Raut Sushil, Azheruddin Mohammed, Kumar Rajeev, Singh Shivani, Giram Prabhanjan S, Datta Deepanjan

机构信息

Department of Pharmaceutics, Dr. DY Patil Institute of Pharmaceutical Sciences and Research, Pimpri, Pune, Maharashtra 411018, India.

Lloyd Institute of Management and Technology, Plot No. 11, Knowledge Park-II, Greater Noida, Uttar Pradesh 201306, India.

出版信息

ACS Omega. 2024 Feb 20;9(9):9865-9885. doi: 10.1021/acsomega.3c05563. eCollection 2024 Mar 5.

Abstract

Skin is the largest organ of the human body, as it protects the body from the external environment. Nowadays, skin diseases and skin problems are more common, and millions of people are affected daily. Skin diseases are due to numerous infectious pathogens or inflammatory conditions. The increasing demand for theoretical research and practical applications has led to the rising prominence of gel as a semisolid material. To this end, organogels has been widely explored due to their unique composition, which includes organic solvents and mineral or vegetable oils, among others. Organogels can be described as semisolid systems wherein an organic liquid phase is confined within a three-dimensional framework consisting of self-assembled, cross-linked, or entangled gelator fibers. These gels have the ability to undergo significant expansion and retain substantial amounts of the liquid phase, reaching up to 99% swelling capacity. Furthermore, they respond to a range of physical and chemical stimuli, including temperature, light, pH, and mechanical deformation. Notably, due to their distinctive properties, they have aroused significant interest in a variety of practical applications. Organogels favor the significant encapsulation and enhanced permeation of hydrophobic molecules when compared with hydrogels. Accordingly, organogels are characterized into lecithin organogels, pluronic lecithin organogels, sorbitan monostearate-based organogels, and eudragit organogels, among others, based on the nature of their network and the solvent system. Lecithin organogels contain lecithin (natural and safe as a living cell component) as an organogelator. It acts as a good penetration enhancer. In this review, first we have summarized the fundamental concepts related to the elemental structure of organogels, including their various forms, distinctive features, methods of manufacture, and diverse applications. Nonetheless, this review also sheds light on the delivery of therapeutic molecules entrapped in the lecithin organogel system into deep tissue for the management of skin diseases and provides a synopsis of their clinical applications.

摘要

皮肤是人体最大的器官,它保护身体免受外部环境的侵害。如今,皮肤疾病和皮肤问题更为常见,每天都有数百万人受到影响。皮肤疾病是由多种传染性病原体或炎症引起的。对理论研究和实际应用的需求不断增加,使得凝胶作为一种半固体材料的重要性日益凸显。为此,有机凝胶因其独特的组成(包括有机溶剂以及矿物油或植物油等)而得到广泛研究。有机凝胶可被描述为半固体体系,其中有机液相被限制在由自组装、交联或缠结的凝胶剂纤维组成的三维框架内。这些凝胶能够发生显著膨胀并保留大量液相,溶胀能力可达99%。此外,它们能对一系列物理和化学刺激做出反应,包括温度、光、pH值和机械变形。值得注意的是,由于其独特的性质,它们在各种实际应用中引起了极大的兴趣。与水凝胶相比,有机凝胶有利于疏水分子的大量包封和增强渗透。因此,根据其网络性质和溶剂体系,有机凝胶可分为卵磷脂有机凝胶、普朗尼克卵磷脂有机凝胶、脱水山梨醇单硬脂酸酯基有机凝胶和丙烯酸树脂有机凝胶等。卵磷脂有机凝胶含有卵磷脂(作为活细胞成分天然且安全)作为有机凝胶剂。它是一种良好的渗透促进剂。在这篇综述中,首先我们总结了与有机凝胶基本结构相关的基本概念,包括它们的各种形式、独特特征、制造方法和不同应用。尽管如此,本综述还阐明了包裹在卵磷脂有机凝胶系统中的治疗分子向深部组织的递送,用于皮肤疾病的治疗,并概述了它们的临床应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe85/10918684/9c2102e3e5c6/ao3c05563_0001.jpg

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