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Melanin‐Like Nanomaterials for Advanced Biomedical Applications: A Versatile Platform with Extraordinary Promise

机译:用于高级生物医学应用的类似黑色素的纳米材料:具有非凡承诺的多功能平台

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摘要

Developing efficient, sustainable, and biocompatible high‐tech nanoplatforms derived from naturally existing components in living organisms is highly beneficial for diverse advanced biomedical applications. Melanins are nontoxic natural biopolymers owning widespread distribution in various biosystems, possessing fascinating physicochemical properties and playing significant physiological roles. The multifunctionality together with intrinsic biocompatibility renders bioinspired melanin‐like nanomaterials considerably promising as a versatile and powerful nanoplatform with broad bioapplication prospects. This panoramic Review starts with an overview of the fundamental physicochemical properties, preparation methods, and polymerization mechanisms of melanins. A systematical and well‐bedded description of recent advancements of melanin‐like nanomaterials regarding diverse biomedical applications is then given, mainly focusing on biological imaging, photothermal therapy, drug delivery for tumor treatment, and other emerging biomedicine‐related implementations. Finally, current challenges toward clinical translation with an emphasis on innovative design strategies and future striving directions are rationally discussed. This comprehensive and detailed Review provides a deep understanding of the current research status of melanin‐like nanomaterials and is expected to motivate further optimization of the design of novel tailorable and marketable multifunctional nanoplatforms in biomedicine.
机译:从活生物体中天然存在的成分中开发出高效,可持续和生物相容的高科技纳米平台,对各种先进的生物医学应用具有极大的益处。黑色素是无毒的天然生物聚合物,在各种生物系统中具有广泛的分布,具有令人着迷的理化特性,并发挥重要的生理作用。多功能性和固有的生物相容性使受生物启发的黑色素样纳米材料成为具有广泛生物应用前景的多功能,强大的纳米平台,前景十分可观。本综述首先概述了黑色素的基本理化性质,制备方法和聚合机理。然后给出了关于黑色素样纳米材料在各种生物医学应用方面的最新进展的系统化和良好的描述,主要侧重于生物成像,光热疗法,用于肿瘤治疗的药物递送以及其他新兴的生物医学相关实现。最后,合理地讨论了当前临床翻译面临的挑战,重点是创新的设计策略和未来的发展方向。这份全面而详尽的综述深入了解了类黑色素纳米材料的当前研究状况,并有望推动进一步优化生物医学中可定制和销售的新型多功能纳米平台的设计。

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