乙硫体:一种潜在的纳米囊状载体,可增强皮肤屏障的给药效果。

IF 3 4区 医学 Q2 CHEMISTRY, APPLIED
Journal of microencapsulation Pub Date : 2024-05-01 Epub Date: 2024-03-08 DOI:10.1080/02652048.2024.2326085
Huma Hameed, Saleha Faheem, Mahtab Ahmad Khan, Anam Hameed, Nelofer Ereej, Hafsa Ihsan
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引用次数: 0

摘要

乙硫体是一种类似于脂质体的结构,主要由乙醇组成,由于其具有增强药物经皮肤渗透的潜力,因此备受关注。文章讨论了乙硫体的配方和制备方法,深入探讨了影响其大小、形状和稳定性的各种因素。此外,文章还探讨了用于评估乙硫体理化性质及其对给药效果影响的技术。文章还阐明了乙硫体增强皮肤渗透性的机制,强调了乙硫体改变角质层脂质结构和流动性的能力。此外,这篇综述还研究了乙硫体在各种给药方案中的应用,包括小分子、肽和植物成分的给药。综述强调了乙硫体在提高药物生物利用度、延长药物释放时间以及实现向特定皮肤层或下层组织靶向给药等方面的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ethosomes: a potential nanovesicular carrier to enhancing the drug delivery against skin barriers.

Ethosomes, which are liposomes like structures, mainly composed primarily of ethanol, have attracted considerable attention due to their potential to enhance the drug permeation via skin. The article discusses the formulation and preparation methods of ethosomes, offering insights into the various factors that influence their size, shape, and stability. Moreover, it explores the techniques used to assess the physicochemical properties of ethosomes and their impact on drug delivery effectiveness. The article also elucidates the mechanism by which ethosomes enhance skin permeation, emphasising their ability to modify the lipid structure and fluidity of the stratum corneum. Additionally, the review investigates the applications of ethosomes in diverse drug delivery scenarios, including the delivery of small molecules, peptides, and phytoconstituents. It highlights the potential of ethosomes to improve drug bioavailability, extend drug release, and achieve targeted delivery to specific skin layers or underlying tissues.

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来源期刊
Journal of microencapsulation
Journal of microencapsulation 工程技术-工程:化工
CiteScore
6.30
自引率
2.60%
发文量
39
审稿时长
3 months
期刊介绍: The Journal of Microencapsulation is a well-established, peer-reviewed journal dedicated to the publication of original research findings related to the preparation, properties and uses of individually encapsulated novel small particles, as well as significant improvements to tried-and-tested techniques relevant to micro and nano particles and their use in a wide variety of industrial, engineering, pharmaceutical, biotechnology and research applications. Its scope extends beyond conventional microcapsules to all other small particulate systems such as self assembling structures that involve preparative manipulation. The journal covers: Chemistry of encapsulation materials Physics of release through the capsule wall and/or desorption from carrier Techniques of preparation, content and storage Many uses to which microcapsules are put.
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