Interfacially responsive electron transfer and matter conversion by polydopamine-mediated nanoplatforms for advancing disease theranostics.

Lu Wang, Tingting Zhang, Yuxin Xing, Zhenqiang Wang, Xiyue Xie, Jixi Zhang, K. Cai
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引用次数: 2

Abstract

Polydopamine (PDA) is an artificial melanin polymer that has been spotlighted due to its extraordinary optoelectronic characteristics and advance theranosctic applications in biomaterial fields. Moreover, interactions on the nano-bio interface interplay whereby substances exchange in response to endogenous or exogenous stimuli, and electron transfer driven by light, energy-level transitions, or electric field greatly affect the functional performance of PDA-modified nanoparticles. The full utilization of potential in PDA's interfacial activities, optoelectrical properties and related responsiveness is therefore an attractive means to construct advanced nanostructures for regulating biological processes and metabolic pathways. Herein, we strive to summarize recent advances in the construction of functional PDA-based nanomaterials with state-of-the-art architectures prepared for modulation of photoelectric sensing and redox reversibility, as well as manipulation of photo-activated therapeutics. Meanwhile, contributions of interfacial electron transfer and matter conversion are highlighted by discussing the structure-property-function relationships and the biological effects in their featured applications including disease theranostics, antibacterial activities, tissue repair, and combined therapy. Finally, the current challenges and future perspectives in this emerging research field will also be outlined. Recent advances on polydopamine-based nanotherapeutics with an emphasis on their interfacial activities, optoelectrical properties and related responsiveness are reviewed for providing insightful guidance to the rational design of integrated theranostic nanoplatforms with high performance in the biomedical fields. This article is categorized under: Diagnostic Tools > Diagnostic Nanodevices Therapeutic Approaches and Drug Discovery > Nanomedicine for Oncologic Disease Nanotechnology Approaches to Biology > Nanoscale Systems in Biology.
通过多多巴胺介导的纳米平台促进疾病治疗的界面响应性电子转移和物质转化。
聚多巴胺(PDA)是一种人工黑色素聚合物,因其独特的光电特性和在生物材料领域的广泛应用而备受关注。此外,纳米生物界面上的相互作用使物质在内源性或外源性刺激下交换,以及由光、能级跃迁或电场驱动的电子转移极大地影响了pda修饰纳米颗粒的功能性能。因此,充分利用PDA的界面活性、光电特性和相关响应性的潜力是构建用于调节生物过程和代谢途径的先进纳米结构的一种有吸引力的手段。在此,我们努力总结构建基于pda的功能性纳米材料的最新进展,这些纳米材料具有最先进的结构,可用于光电传感和氧化还原可逆性的调制,以及光激活疗法的操作。同时,通过讨论其结构-性能-功能关系及其在疾病治疗、抗菌活性、组织修复和联合治疗等方面的特色应用中的生物学效应,强调了界面电子转移和物质转换的贡献。最后,概述了这一新兴研究领域当前面临的挑战和未来的展望。本文综述了以聚多巴胺为基础的纳米治疗药物的界面活性、光电特性和相关响应性等方面的研究进展,以期为合理设计高性能的生物医学领域集成治疗纳米平台提供有见地的指导。本文分类如下:诊断工具>诊断纳米设备治疗方法和药物发现>肿瘤疾病的纳米医学>生物学的纳米技术方法>生物学中的纳米级系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
17.60
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