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黑色素及黑色素相关聚合物作为具有生物医学和生物技术应用的材料——以乌贼墨和贻贝足蛋白为灵感的生物分子。

Melanin and Melanin-Related Polymers as Materials with Biomedical and Biotechnological Applications-Cuttlefish Ink and Mussel Foot Proteins as Inspired Biomolecules.

机构信息

Department of Biochemistry and Molecular Biology B and Immunology, School of Medicine and LAIB-IMIB, University of Murcia, 30100 Murcia, Spain.

出版信息

Int J Mol Sci. 2017 Jul 18;18(7):1561. doi: 10.3390/ijms18071561.

Abstract

The huge development of bioengineering during the last years has boosted the search for new bioinspired materials, with tunable chemical, mechanical, and optoelectronic properties for the design of semiconductors, batteries, biosensors, imaging and therapy probes, adhesive hydrogels, tissue restoration, photoprotectors, etc. These new materials should complement or replace metallic or organic polymers that cause cytotoxicity and some adverse health effects. One of the most interesting biomaterials is melanin and synthetic melanin-related molecules. Melanin has a controversial molecular structure, dependent on the conditions of polymerization, and therefore tunable. It is found in animal hair and skin, although one of the common sources is cuttlefish (Sepia officinalis) ink. On the other hand, mussels synthesize adhesive proteins to anchor these marine animals to wet surfaces. Both melanin and mussel foot proteins contain a high number of catecholic residues, and their properties are related to these groups. Dopamine (DA) can easily polymerize to get polydopamine melanin (PDAM), that somehow shares properties with melanin and mussel proteins. Furthermore, PDAM can easily be conjugated with other components. This review accounts for the main aspects of melanin, as well as DA-based melanin-like materials, related to their biomedical and biotechnological applications.

摘要

近年来,生物工程的巨大发展推动了对新型仿生材料的研究,这些材料具有可调节的化学、机械和光电性能,可用于设计半导体、电池、生物传感器、成像和治疗探针、黏附水凝胶、组织修复、光保护剂等。这些新材料应补充或替代金属或有机聚合物,因为后者会引起细胞毒性和一些不良的健康影响。最有趣的生物材料之一是黑色素和合成的黑色素相关分子。黑色素的分子结构具有争议性,取决于聚合条件,因此具有可调性。它存在于动物的毛发和皮肤中,尽管常见的来源之一是乌贼(Sepia officinalis)墨。另一方面,贻贝合成黏附蛋白将这些海洋动物固定在潮湿的表面上。黑色素和贻贝足蛋白都含有大量儿茶酚残基,其性质与这些基团有关。多巴胺(DA)很容易聚合得到聚多巴胺黑色素(PDAM),它在某种程度上与黑色素和贻贝蛋白具有相似的性质。此外,PDAM 很容易与其他成分结合。本文综述了黑色素以及基于 DA 的黑色素样材料的主要方面,及其在生物医学和生物技术方面的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/314d/5536049/ec78ceda8bc8/ijms-18-01561-g001.jpg

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