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贻贝启发的聚多巴胺的结构、性质和应用。

Structure, properties and applications of mussel-inspired polydopamine.

出版信息

J Biomed Nanotechnol. 2014 Oct;10(10):3063-84. doi: 10.1166/jbn.2014.1888.

Abstract

Mussel-inspired polydopamine (PDA) has emerged as a promising molecule used for anchoring synthetic and biological substances or forming an adhesive layer onto various substrates for biomedical and nanotechnology applications because of its outstanding properties. This review article provides an overview of the recent progress in the PDA-based materials, including synthesis of nanoparticles, capsules, structure-mechanism, physicochemical and biological properties, and medical applications. Frist, to understand how PDA nanoparticles, capsules and films produce the unique properties is insight on the processing parameters. Next, we highlight what is known regarding the mechanism of self-polymerization and the structure features of dopamine (DA), which is based on the formation of covalent bond or through a combination mode between monomers. The inherent hydrophilicity and adhesive property of PDA with the coexistence of catechol and amine functionalities provide desirable surface characteristics without the need for further modification. Finally, successful applications, such as grafting substances, biomineralization, antifouling and antibacterial coatings, drug/gene delivery, and tissue engineering, reported to date involving PDA will be focused. The future study of PDA to develop novel materials with unique properties is emerging for specific nanomedicine applications.

摘要

受贻贝启发的聚多巴胺 (PDA) 因其优异的性能而成为一种有前途的分子,可用于将合成和生物物质固定在各种基质上,或在其上形成粘合层,用于生物医学和纳米技术应用。本文综述了基于 PDA 的材料的最新进展,包括纳米粒子、胶囊、结构-机理、物理化学和生物特性以及医学应用的合成。首先,要了解 PDA 纳米粒子、胶囊和薄膜如何产生独特的特性,需要深入了解加工参数。接下来,我们将重点介绍多巴胺 (DA) 自聚合机制和结构特征的已知内容,这是基于单体之间形成共价键或结合模式。PDA 固有的亲水性和粘附性,以及儿茶酚和胺官能团的共存,提供了理想的表面特性,而无需进一步修饰。最后,将重点介绍迄今为止涉及 PDA 的成功应用,例如物质接枝、生物矿化、防污和抗菌涂层、药物/基因传递和组织工程。未来对 PDA 的研究将开发出具有独特特性的新型材料,以满足特定的纳米医学应用需求。

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