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用于可控药物递送的光响应水凝胶。

Light responsive hydrogels for controlled drug delivery.

作者信息

Xing Yanghui, Zeng Buhui, Yang Wang

机构信息

Department of Biomedical Engineering, Shantou University, Shantou, China.

出版信息

Front Bioeng Biotechnol. 2022 Dec 16;10:1075670. doi: 10.3389/fbioe.2022.1075670. eCollection 2022.

Abstract

Light is an easy acquired, effective and non-invasive external stimulus with great flexibility and focusability. Thus, light responsive hydrogels are of particular interests to researchers in developing accurate and controlled drug delivery systems. Light responsive hydrogels are obtained by incorporating photosensitive moieties into their polymeric structures. Drug release can be realized through three major mechanisms: photoisomerization, photochemical reaction and photothermal reaction. Recent advances in material science have resulted in great development of photosensitizers, such as rare metal nanostructures and black phosphorus nanoparticles, in order to respond to a variety of light sources. Hydrogels incorporated with photosensitizers are crucial for clinical applications, and the use of ultraviolet and near-infrared light as well as up-conversion nanoparticles has greatly increased the therapeutic effects. Existing light responsive drug delivery systems have been utilized in delivering drugs, proteins and genes for chemotherapy, immunotherapy, photodynamic therapy, gene therapy, wound healing and other applications. Principles associated with site-specific targeting, metabolism, and toxicity are used to optimize efficacy and safety, and to improve patient compliance and convenience. In view of the importance of this field, we review current development, challenges and future perspectives of light responsive hydrogels for controlled drug delivery.

摘要

光作为一种易于获取、有效且非侵入性的外部刺激,具有极大的灵活性和聚焦性。因此,光响应水凝胶在开发精确且可控的药物递送系统方面特别受研究人员关注。通过将光敏部分引入其聚合物结构可获得光响应水凝胶。药物释放可通过三种主要机制实现:光异构化、光化学反应和光热反应。材料科学的最新进展促使了光敏剂的巨大发展,例如稀有金属纳米结构和黑磷纳米颗粒,以便能响应各种光源。掺入光敏剂的水凝胶对临床应用至关重要,并且紫外线、近红外光以及上转换纳米颗粒的使用极大地提高了治疗效果。现有的光响应药物递送系统已被用于递送药物、蛋白质和基因,用于化疗、免疫疗法、光动力疗法、基因疗法、伤口愈合及其他应用。与位点特异性靶向、代谢和毒性相关的原理被用于优化疗效和安全性,并提高患者的依从性和便利性。鉴于该领域的重要性,我们综述了用于可控药物递送的光响应水凝胶的当前发展、挑战及未来展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d04b/9800804/4d19693e8c7c/fbioe-10-1075670-g001.jpg

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