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用于按需局部药物递送的光子和磁性材料。

Photonic and magnetic materials for on-demand local drug delivery.

机构信息

BioNanoSurf Group, Instituto de Nanociencia y Materiales de Aragón (INMA,CSIC-UNIZAR), Edificio I +D, 50018 Zaragoza, Spain.

BioNanoSurf Group, Instituto de Nanociencia y Materiales de Aragón (INMA,CSIC-UNIZAR), Edificio I +D, 50018 Zaragoza, Spain.

出版信息

Adv Drug Deliv Rev. 2022 Dec;191:114584. doi: 10.1016/j.addr.2022.114584. Epub 2022 Oct 21.

Abstract

Nanomedicine has been considered a promising tool for biomedical research and clinical practice in the 21st century because of the great impact nanomaterials could have on human health. The generation of new smart nanomaterials, which enable time- and space-controlled drug delivery, improve the limitations of conventional treatments, such as non-specific targeting, poor biodistribution and permeability. These smart nanomaterials can respond to internal biological stimuli (pH, enzyme expression and redox potential) and/or external stimuli (such as temperature, ultrasound, magnetic field and light) to further the precision of therapies. To this end, photonic and magnetic nanoparticles, such as gold, silver and iron oxide, have been used to increase sensitivity and responsiveness to external stimuli. In this review, we aim to report the main and most recent systems that involve photonic or magnetic nanomaterials for external stimulus-responsive drug release. The uniqueness of this review lies in highlighting the versatility of integrating these materials within different carriers. This leads to enhanced performance in terms of in vitro and in vivo efficacy, stability and toxicity. We also point out the current regulatory challenges for the translation of these systems from the bench to the bedside, as well as the yet unresolved matter regarding the standardization of these materials.

摘要

纳米医学被认为是 21 世纪生物医学研究和临床实践的有前途的工具,因为纳米材料可能对人类健康产生重大影响。新型智能纳米材料的出现使药物的时间和空间控制释放成为可能,改善了传统治疗方法的局限性,如非特异性靶向、生物分布和通透性差。这些智能纳米材料可以响应内部生物刺激(pH 值、酶表达和氧化还原电位)和/或外部刺激(如温度、超声、磁场和光),以进一步提高治疗的精度。为此,已经使用光学生物和磁性纳米粒子(如金、银和氧化铁)来提高对外部刺激的敏感性和响应性。在这篇综述中,我们旨在报告主要和最新的系统,这些系统涉及用于外部刺激响应药物释放的光学生物或磁性纳米材料。本综述的独特之处在于强调了将这些材料整合到不同载体中的多功能性。这导致了体外和体内功效、稳定性和毒性方面的性能提升。我们还指出了这些系统从实验室转化到临床应用所面临的当前监管挑战,以及这些材料标准化方面尚未解决的问题。

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