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电化学引发的高分子膜组装过程及其生物医学应用综述。

Review of Electrochemically Triggered Macromolecular Film Buildup Processes and Their Biomedical Applications.

机构信息

Université de Strasbourg, CNRS, Institut Charles Sadron UPR 22 , 23 rue du Loess, F-67034 Strasbourg Cedex, France.

INSERM, Unité 1121 "Biomaterials and Bioengineering" , 11 rue Humann, F-67085 Strasbourg Cedex, France.

出版信息

ACS Appl Mater Interfaces. 2017 Aug 30;9(34):28117-28138. doi: 10.1021/acsami.7b06319. Epub 2017 Aug 16.

Abstract

Macromolecular coatings play an important role in many technological areas, ranging from the car industry to biosensors. Among the different coating technologies, electrochemically triggered processes are extremely powerful because they allow in particular spatial confinement of the film buildup up to the micrometer scale on microelectrodes. Here, we review the latest advances in the field of electrochemically triggered macromolecular film buildup processes performed in aqueous solutions. All these processes will be discussed and related to their several applications such as corrosion prevention, biosensors, antimicrobial coatings, drug-release, barrier properties and cell encapsulation. Special emphasis will be put on applications in the rapidly growing field of biosensors. Using polymers or proteins, the electrochemical buildup of the films can result from a local change of macromolecules solubility, self-assembly of polyelectrolytes through electrostatic/ionic interactions or covalent cross-linking between different macromolecules. The assembly process can be in one step or performed step-by-step based on an electrical trigger affecting directly the interacting macromolecules or generating ionic species.

摘要

高分子涂层在许多技术领域都扮演着重要的角色,从汽车工业到生物传感器等领域都有涉及。在不同的涂层技术中,电化学触发过程极为强大,因为它可以在微电极上实现对薄膜生长的空间限制,最高可达微米级。在这里,我们回顾了在水溶液中进行的电化学触发高分子薄膜生长过程的最新进展。我们将讨论所有这些过程,并将它们与防腐蚀、生物传感器、抗菌涂层、药物释放、阻隔性能和细胞封装等多种应用联系起来。特别强调了在生物传感器这个快速发展的领域中的应用。使用聚合物或蛋白质,可以通过局部改变大分子的溶解度、通过静电/离子相互作用进行聚电解质的自组装或不同大分子之间的共价交联来实现薄膜的电化学生长。组装过程可以是一步完成,也可以基于直接影响相互作用大分子或产生离子物种的电触发进行分步完成。

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