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黑色素的功能化:策略与生物应用。

Functionalization of and through Melanin: Strategies and Bio-Applications.

机构信息

Department of Chemistry "Giacomo Ciamician", University of Bologna, Via Selmi 2, 40126 Bologna, Italy.

出版信息

Int J Mol Sci. 2023 Jun 2;24(11):9689. doi: 10.3390/ijms24119689.

Abstract

A unique feature of nanoparticles for bio-application is the ease of achieving multi-functionality through covalent and non-covalent functionalization. In this way, multiple therapeutic actions, including chemical, photothermal and photodynamic activity, can be combined with different bio-imaging modalities, such as magnetic resonance, photoacoustic, and fluorescence imaging, in a theragnostic approach. In this context, melanin-related nanomaterials possess unique features since they are intrinsically biocompatible and, due to their optical and electronic properties, are themselves very efficient photothermal agents, efficient antioxidants, and photoacoustic contrast agents. Moreover, these materials present a unique versatility of functionalization, which makes them ideal for the design of multifunctional platforms for nanomedicine integrating new functions such as drug delivery and controlled release, gene therapy, or contrast ability in magnetic resonance and fluorescence imaging. In this review, the most relevant and recent examples of melanin-based multi-functionalized nanosystems are discussed, highlighting the different methods of functionalization and, in particular, distinguishing pre-functionalization and post-functionalization. In the meantime, the properties of melanin coatings employable for the functionalization of a variety of material substrates are also briefly introduced, especially in order to explain the origin of the versatility of melanin functionalization. In the final part, the most relevant critical issues related to melanin functionalization that may arise during the design of multifunctional melanin-like nanoplatforms for nanomedicine and bio-application are listed and discussed.

摘要

纳米粒子在生物应用方面的一个独特特点是,通过共价和非共价功能化很容易实现多功能性。通过这种方式,可以将多种治疗作用(包括化学、光热和光动力作用)与不同的生物成像方式(如磁共振、光声和荧光成像)相结合,实现治疗诊断一体化。在这种情况下,黑色素相关的纳米材料具有独特的特性,因为它们本质上是生物相容的,并且由于其光学和电子特性,本身就是非常有效的光热剂、高效抗氧化剂和光声对比剂。此外,这些材料具有独特的多功能化功能,使其成为设计多功能纳米医学平台的理想选择,这些平台可以整合新的功能,如药物输送和控制释放、基因治疗或磁共振和荧光成像中的对比能力。在这篇综述中,讨论了基于黑色素的多功能纳米系统的最相关和最新的例子,强调了不同的功能化方法,特别是区分预功能化和后功能化。同时,还简要介绍了可用于各种材料基底功能化的黑色素涂层的特性,特别是为了解释黑色素功能化多功能性的起源。在最后一部分,列出并讨论了与黑色素功能化相关的最相关的关键问题,这些问题可能会在用于纳米医学和生物应用的多功能类黑色素纳米平台的设计中出现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dcfb/10253489/63637afa934e/ijms-24-09689-g001.jpg

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