超越皮肤深层:改变透皮给药游戏规则的磷脂基纳米微粒。

IF 3.4 4区 医学 Q2 PHARMACOLOGY & PHARMACY AAPS PharmSciTech Pub Date : 2024-08-13 DOI:10.1208/s12249-024-02896-6
Mohamed A Akl, Muhammad Alaa Eldeen, Abdulsalam M Kassem
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引用次数: 0

摘要

透皮给药技术因其优于口服和肠外给药方法而广受欢迎。无创、自控给药装置可提高患者的依从性并控制药物释放。透皮给药装置与皮肤的屏障功能有很大的关系。超过 500 道尔顿(Da)的分子和离子化化合物无法透过皮肤。将药物封装在以磷脂为基础的囊泡系统中是最有效的皮肤给药技术。囊泡载体包括双层脂质体、超可变形脂质体、乙醇脂质体、转乙硫体和侵袭体。这些技术通过增加配方的溶解度、在皮肤中的分配和脂质屏障的流动性来提高皮肤药物渗透性。基于磷脂的给药系统安全高效,是一种前景广阔的药物和化妆品给药技术。不过,制造给药系统需要了解药物和载体的物理化学特性、制造和工艺变量、皮肤给药机制、技术进步、限制因素和监管要求。因此,本综述涵盖了针对上述问题的最新研究成果。
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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Beyond Skin Deep: Phospholipid-Based Nanovesicles as Game-Changers in Transdermal Drug Delivery.

Transdermal administration techniques have gained popularity due to their advantages over oral and parenteral methods. Noninvasive, self-administered delivery devices improve patient compliance and control drug release. Transdermal delivery devices struggle with the skin's barrier function. Molecules over 500 Dalton (Da) and ionized compounds don't permeate through the skin. Drug encapsulation in phospholipid-based vesicular systems is the most effective skin delivery technique. Vesicular carriers include bi-layered liposomes, ultra-deformable liposomes, ethanolic liposomes, transethosomes, and invasomes. These technologies enhance skin drug permeation by increasing formula solubilization, partitioning into the skin, and fluidizing the lipid barrier. Phospholipid-based delivery systems are safe and efficient, making them a promising pharmaceutical and cosmeceutical drug delivery technique. Still, making delivery systems requires knowledge about the physicochemical properties of the drug and carrier, manufacturing and process variables, skin delivery mechanisms, technological advances, constraints, and regulatory requirements. Consequently, this review covers recent research achievements addressing the mentioned concerns.

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来源期刊
AAPS PharmSciTech
AAPS PharmSciTech 医学-药学
CiteScore
6.80
自引率
3.00%
发文量
264
审稿时长
2.4 months
期刊介绍: AAPS PharmSciTech is a peer-reviewed, online-only journal committed to serving those pharmaceutical scientists and engineers interested in the research, development, and evaluation of pharmaceutical dosage forms and delivery systems, including drugs derived from biotechnology and the manufacturing science pertaining to the commercialization of such dosage forms. Because of its electronic nature, AAPS PharmSciTech aspires to utilize evolving electronic technology to enable faster and diverse mechanisms of information delivery to its readership. Submission of uninvited expert reviews and research articles are welcomed.
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