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纳米晶体作为一种新兴的纳米载体用于皮肤病的治疗。

Nanocrystals as an emerging nanocarrier for the management of dermatological diseases.

作者信息

Parveen Neha, Abourehab Mohammed A S, Thanikachalam Punniyakoti Veeraveedu, Khar Roop K, Kesharwani Prashant

机构信息

Department of Pharmaceutics, School of Pharmaceutical Education and Research, Jamia Hamdard, New Delhi 110062, India.

Department of Pharmaceutics, College of Pharmacy, Umm Al-Qura University, Makkah 21955, Saudi Arabia.

出版信息

Colloids Surf B Biointerfaces. 2023 May;225:113231. doi: 10.1016/j.colsurfb.2023.113231. Epub 2023 Feb 28.

Abstract

Skin conditions are amongst the most prevalent health issues in the world and come with a heavy economic, social, and psychological burden. Incurable and chronic skin conditions like eczema, psoriasis, fungal infections are linked to major morbidity in the manner of physical pain and a reduction in quality life of patients. Several drugs have difficulties for penetrating the skin due to the barrier mechanism of the skin layers and the incompatible physicochemical characteristics of the drugs. This has led to the introduction of innovative drug delivery methods. Currently, formulations depend on nanocrystals have indeed been researched for topical administration of drugs and have resulted in enhanced skin penetration. This review focuses on skin penetration barriers, modern methods to enhance topical distribution, and the use of nanocrystals to overcome these barriers. By means of mechanisms such as adherence to skin, creation of diffusional corona, targeting of hair follicles, and the generation of a greater concentration gradient throughout the skin, nanocrystals could enhance transport across the skin. Scientists working on product formulations incorporating chemicals that are "challenging-to-deliver" topically may find the most current findings to be of relevance.

摘要

皮肤疾病是世界上最普遍的健康问题之一,带来了沉重的经济、社会和心理负担。湿疹、牛皮癣、真菌感染等无法治愈的慢性皮肤疾病会导致身体疼痛,并降低患者的生活质量,从而引发严重的发病情况。由于皮肤各层的屏障机制以及药物不相容的物理化学特性,几种药物难以穿透皮肤。这促使了创新药物递送方法的出现。目前,依赖纳米晶体的制剂确实已被研究用于药物的局部给药,并提高了皮肤渗透性。本综述重点关注皮肤渗透屏障、增强局部分布的现代方法以及使用纳米晶体克服这些屏障。通过诸如粘附于皮肤、形成扩散晕、靶向毛囊以及在整个皮肤中产生更大浓度梯度等机制,纳米晶体可以增强药物透过皮肤的运输。致力于将局部给药“具有挑战性”的化学品纳入产品配方的科学家可能会发现最新研究结果具有相关性。

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