离子透入皮肤给药研究进展。

Expert opinion on drug delivery Pub Date : 2025-06-01 Epub Date: 2025-04-13 DOI:10.1080/17425247.2025.2490267
Idejan P Gross, Ana Luiza Lima, Livia L Sá-Barreto, Guilherme M Gelfuso, Marcilio Cunha-Filho
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引用次数: 0

摘要

离子透入已被广泛研究用于局部和透皮给药,以刺激分子的吸收,这些分子很难被动地通过皮肤的最外层。最近的研究重点是将其与基于纳米粒子的系统或微针相结合,以扩大其治疗应用。涵盖领域:本文探讨了离子透入的基本原理,重点讨论了影响其药物转运机制的关键因素,并对该领域的现状进行了讨论。对2024年发表或在线可获得的文章进行了全面分析,根据其应用领域、药物传递系统、离子吸附条件和实验局限性对研究进行了分类。专家意见:研究结果揭示了最近对伤口愈合和皮肤修复的关注,以及治疗炎症、疼痛和皮肤癌的进展。市场翻译需要标准化的实验方案,特别是离子电泳参数和临床前模型,以及开发具有成本效益的商业设备。此外,虽然皮肤药物递送的进步越来越多地受益于机器学习方法,但它们在离子导入中的应用仍未得到充分探索。随着人们对将离子透入与物联网联系起来的兴趣日益浓厚,这种整合,如果与人工智能工具相结合,可能为现代皮肤病学和治疗系统的个性化、实时治疗提供有希望的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent advances in cutaneous drug delivery by iontophoresis.

Introduction: Iontophoresis has been extensively studied for topical and transdermal drug delivery to stimulate the absorption of molecules that would hardly pass through the outermost layer of the skin passively. Recent research has focused on its combination with nanoparticle-based systems or microneedles to expand its therapeutic applications.

Areas covered: This review explores the fundamental principles of iontophoresis, focusing on key factors influencing its drug transport mechanisms, and provides a discussion of the field's current state. A comprehensive analysis of articles published or available online in 2024 was conducted, categorizing studies by their application areas, drug delivery systems, iontophoretic conditions, and experimental limitations.

Expert opinion: The findings reveal a recent focus on wound healing and skin repair, and advancements in treating inflammation, pain, and skin cancer. Market translation requires standardized experimental protocols, particularly for iontophoretic parameters and preclinical models, along with the development of cost-effective commercial devices. Additionally, while advancements in cutaneous drug delivery have increasingly benefited from machine learning approaches, their application to iontophoresis remains underexplored. With the growing interest in associating iontophoresis with the Internet of Things, such an integration, if combined with AI tools, could offer promising opportunities for personalized, real-time treatments in modern dermatology, and therapeutic systems.

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