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化学响应型智能介孔硅系统 - 癌症治疗的新兴范例。

Chemoresponsive smart mesoporous silica systems - An emerging paradigm for cancer therapy.

机构信息

Centre for Nanotechnology & Advanced Biomaterials, School of Chemical & Biotechnology, SASTRA Deemed-to-be University, Thanjavur 613 401, India.

Centre for Nanotechnology & Advanced Biomaterials, School of Chemical & Biotechnology, SASTRA Deemed-to-be University, Thanjavur 613 401, India.

出版信息

Int J Pharm. 2018 Dec 20;553(1-2):310-326. doi: 10.1016/j.ijpharm.2018.10.026. Epub 2018 Oct 10.

Abstract

Nanotechnology-based interventions have gained popularity in the past decade for cancer therapy owing to their ability to overcome several shortcomings encountered in conventional therapy. Among the various nanoparticles that have been explored as drug carriers, mesoporous silica possesses certain desirable properties such as regulated pore size, high surface area, chemical and thermal stability, amenability for surface modification and biocompatibility. These systems have been widely investigated for site-specific delivery of single and multiple therapeutic agents as well as for imaging and theranostic applications. In recent times, the concept of targeted and sustained delivery of the therapeutic agent has transformed into a more attractive and effective approach of triggered drug release thereby ushering in an era of 'on-demand' drug delivery. Mesoporous silica due to its tunable surface functionalities has emerged in the forefront of triggered release systems. Though different types of external stimuli have been extensively investigated to bring about triggered drug release from mesoporous silica, chemo-responsive systems offer more therapeutic effectiveness with minimal collateral damage commonly associated with external stimuli. Chemo-responsiveness is generally achieved by introducing an appropriate gate-keeper molecule at the pore surface that regulates the diffusion of the drug molecules. This review analyzes different strategies that have been attempted to achieve 'on-demand' drug release in mesoporous silica carriers in response to various types of chemical stimuli. Emerging trends in the field of chemo-responsive mesoporous silica are also presented in this review.

摘要

基于纳米技术的干预措施在过去十年中因能够克服传统疗法中遇到的几个缺点而在癌症治疗中变得流行。在被探索作为药物载体的各种纳米颗粒中,介孔硅具有一些理想的特性,如可调节的孔径、高表面积、化学和热稳定性、表面修饰的适应性和生物相容性。这些系统已被广泛研究用于单药和多药的靶向递药以及成像和治疗应用。最近,将治疗剂靶向和持续递药的概念转变为更有吸引力和有效的触发药物释放方法,从而开创了“按需”药物递送的时代。介孔硅由于其可调表面功能,已成为触发释放系统的前沿。尽管已经广泛研究了不同类型的外部刺激来实现介孔硅的触发药物释放,但化学响应系统提供了更高的治疗效果,同时通常与外部刺激相关的最小的附带损伤。化学响应性通常通过在孔表面引入适当的门控分子来实现,该分子调节药物分子的扩散。这篇综述分析了为了响应各种类型的化学刺激,在介孔硅载体中实现“按需”药物释放所尝试的不同策略。本文还介绍了化学响应性介孔硅领域的新兴趋势。

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