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Daniele Muser, Massimo Tritto, Marco Valerio Mariani, A. Monaco, Paolo Compagnucci, Michele Accogli, R. D. Ponti, Fabrizio Guarracini
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引用次数: 9

Abstract

Bioinspired nanomaterials are ideal components for nanomedicine, by virtue of their expected biocompatibility or even complete lack of toxicity. Natural and artificial melanin-based nanoparticles (MNP), including polydopamine nanoparticles (PDA NP), excel for their extraordinary combination of additional optical, electronic, chemical, photophysical, and photochemical properties. Thanks to these features, melanin plays an important multifunctional role in the design of new platforms for nanomedicine where this material works not only as a mechanical support or scaffold, but as an active component for imaging, even multimodal, and simple or synergistic therapy. The number of examples of bio-applications of MNP increased dramatically in the last decade. Here, we review the most recent ones, focusing on the multiplicity of functions that melanin performs in theranostics platforms with increasing complexity. For the sake of clarity, we start analyzing briefly the main properties of melanin and its derivative as well as main natural sources and synthetic methods, moving to imaging application from mono-modal (fluorescence, photoacoustic, and magnetic resonance) to multi-modal, and then to mono-therapy (drug delivery, anti-oxidant, photothermal, and photodynamic), and finally to theranostics and synergistic therapies, including geneand immunoin combination to photothermal and photodynamic. Nanomedicine aims not only at the treatment of diseases, but also to their prevention, and melanin in nature performs a protective action, in the form of nanopigment, against UV-Vis radiations and oxidants. With these functions being at the border between nanomedicine and cosmetics nanotechnology, recently examples of applications of artificial MNP in cosmetics are increasing, paving the road to the birth of the new science of nanocosmetics. In the last part of this review, we summarize and discuss these important recent results that establish evidence of the interconnection between nanomedicine and cosmetics nanotechnology.
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生物激发纳米材料是纳米医学的理想组成部分,因为它们具有预期的生物相容性,甚至完全没有毒性。天然和人工黑色素纳米粒子(MNP),包括聚多巴胺纳米粒子(PDA NP),因其额外的光学、电子、化学、光物理和光化学性质的非凡组合而出类拔萃。由于这些特点,黑色素在纳米医学新平台的设计中发挥着重要的多功能作用,这种材料不仅可以作为机械支撑或支架,还可以作为成像,甚至多模式,简单或协同治疗的活性成分。在过去十年中,MNP生物应用的实例数量急剧增加。在这里,我们回顾了最近的研究,重点关注黑色素在治疗学平台中随着复杂性的增加而发挥的多种功能。为了清晰起见,我们首先简要分析黑色素及其衍生物的主要性质以及主要的天然来源和合成方法,然后从单模态(荧光、光声、磁共振)到多模态的成像应用,再到单模态(给药、抗氧化、光热、光动力),最后到治疗和协同治疗,包括基因和免疫蛋白联合到光热、光动力。纳米医学不仅旨在治疗疾病,而且还旨在预防疾病,自然界中的黑色素以纳米色素的形式对紫外线-可见辐射和氧化剂起保护作用。由于这些功能处于纳米医学和化妆品纳米技术的边界,近年来人造MNP在化妆品中的应用实例越来越多,为纳米化妆品这门新科学的诞生铺平了道路。在这篇综述的最后一部分,我们总结和讨论了这些重要的最新研究结果,这些研究结果为纳米医学和化妆品纳米技术之间的相互联系提供了证据。
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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