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用合成黑色素模拟人类天然头发色素沉着。

Mimicking Natural Human Hair Pigmentation with Synthetic Melanin.

作者信息

Battistella Claudia, McCallum Naneki C, Gnanasekaran Karthikeyan, Zhou Xuhao, Caponetti Valeria, Montalti Marco, Gianneschi Nathan C

机构信息

Department of Chemistry, Department of Materials Science & Engineering, Department of Biomedical Engineering, Department of Pharmacology, International Institute for Nanotechnology, Simpson-Querrey Institute, Chemistry of Life Processes Institute, Northwestern University, Evanston, Illinois 60208, United States.

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

出版信息

ACS Cent Sci. 2020 Jul 22;6(7):1179-1188. doi: 10.1021/acscentsci.0c00068. Epub 2020 Apr 29.

Abstract

Human hair is naturally colored by melanin pigments, which afford myriad colors from black, to brown, to red depending on the chemical structures and specific blends. In recent decades, synthetic efforts have centered on dopamine oxidation to polydopamine, an effective eumelanin similar to the one found in humans. To date, only a few attempts at polydopamine deposition on human hair have been reported, and their translation to widespread usage and potential commercialization is still hampered by the harsh conditions employed. We reasoned that novel, mild, biocompatible approaches could be developed to establish a metal-free route to tunable, nature-inspired, long-lasting coloration of human hair. Herein, we describe synthetic and formulation routes to achieving this goal and show efficacy on a variety of human hair samples via multiple spectroscopic and imaging techniques. Owing to the mild and inexpensive conditions employed, this novel approach has the potential to replace classical harsh hair dyeing conditions that have raised concerns for several decades due to their potential toxicity.

摘要

人类头发的天然颜色是由黑色素赋予的,根据化学结构和特定混合比例,黑色素能呈现出从黑色到棕色再到红色等无数种颜色。近几十年来,合成方面的努力主要集中在将多巴胺氧化为聚多巴胺,聚多巴胺是一种与人类体内发现的真黑素相似的有效真黑素。迄今为止,仅有少数关于在人类头发上沉积聚多巴胺的尝试被报道,并且将其转化为广泛应用和潜在商业化仍受到所采用的苛刻条件的阻碍。我们推断,可以开发新颖、温和且具有生物相容性的方法,以建立一种无金属的途径,实现对人类头发进行可调节的、受自然启发的持久染色。在此,我们描述了实现这一目标的合成和配方路线,并通过多种光谱和成像技术展示了对各种人类头发样本的效果。由于所采用的条件温和且成本低廉,这种新颖的方法有可能取代经典的苛刻染发条件,几十年来,经典染发条件因其潜在毒性一直备受关注。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a97b/7379382/0e9217613501/oc0c00068_0001.jpg

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