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基于碳纳米管的先进皮肤治疗学:当前趋势和未来潜力。

Carbon nanotubes (CNTs) based advanced dermal therapeutics: current trends and future potential.

机构信息

Department of Pharmaceutics, National Institute of Pharmaceutical Education and Research (NIPER) - Ahmedabad, Opposite Air Force Station Palaj, Gandhinagar, Gujarat 382355, India.

出版信息

Nanoscale. 2018 May 17;10(19):8911-8937. doi: 10.1039/c8nr01383g.

Abstract

The search for effective and non-invasive delivery modules to transport therapeutic molecules across skin has led to the discovery of a number of nanocarriers (viz.: liposomes, ethosomes, dendrimers, etc.) in the last few decades. However, available literature suggests that these delivery modules face several issues including poor stability, low encapsulation efficiency, and scale-up hurdles. Recently, carbon nanotubes (CNTs) emerged as a versatile tool to deliver therapeutics across skin. Superior stability, high loading capacity, well-developed synthesis protocol as well as ease of scale-up are some of the reason for growing interest in CNTs. CNTs have a unique physical architecture and a large surface area with unique surface chemistry that can be tailored for vivid biomedical applications. CNTs have been thus largely engaged in the development of transdermal systems such as tuneable hydrogels, programmable nonporous membranes, electroresponsive skin modalities, protein channel mimetic platforms, reverse iontophoresis, microneedles, and dermal buckypapers. In addition, CNTs were also employed in the development of RNA interference (RNAi) based therapeutics for correcting defective dermal genes. This review expounds the state-of-art synthesis methodologies, skin penetration mechanism, drug liberation profile, loading potential, characterization techniques, and transdermal applications along with a summary on patent/regulatory status and future scope of CNT based skin therapeutics.

摘要

在过去的几十年中,人们一直在寻找有效的、非侵入式的输送模块,以将治疗分子输送穿过皮肤,从而发现了许多纳米载体(例如:脂质体、醇质体、树枝状大分子等)。然而,现有文献表明,这些输送模块存在一些问题,包括稳定性差、包封效率低和放大障碍。最近,碳纳米管(CNTs)作为一种将治疗剂输送穿过皮肤的多功能工具而崭露头角。CNTs 具有优越的稳定性、高载药能力、完善的合成方案以及易于放大等特点,这是人们对 CNTs 越来越感兴趣的部分原因。CNTs 具有独特的物理结构和大的表面积,具有独特的表面化学性质,可以针对各种生物医学应用进行定制。因此,CNTs 在开发透皮系统方面得到了广泛应用,例如可调水凝胶、可编程无孔膜、电响应皮肤模式、蛋白质通道模拟平台、反向离子电渗、微针和皮肤巴基纸。此外,CNTs 还被用于开发基于 RNA 干扰(RNAi)的治疗药物,以纠正有缺陷的皮肤基因。本文综述了 CNTs 的最新合成方法、皮肤渗透机制、药物释放特性、载药潜力、表征技术以及透皮应用,并对基于 CNT 的皮肤治疗的专利/监管状况和未来前景进行了总结。

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