A Brief Insight to the Electrophoretic Deposition of PEEK-, Chitosan-, Gelatin-, and Zein-Based Composite Coatings for Biomedical Applications: Recent Developments and Challenges

Surfaces Pub Date : 2021-08-04 DOI:10.3390/surfaces4030018
Syeda Ammara Batool, A. Wadood, S. W. Hussain, M. Yasir, M. A. Ur Rehman
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引用次数: 7

Abstract

Electrophoretic deposition (EPD) is a powerful technique to assemble metals, polymer, ceramics, and composite materials into 2D, 3D, and intricately shaped implants. Polymers, proteins, and peptides can be deposited via EPD at room temperature without affecting their chemical structures. Furthermore, EPD is being used to deposit multifunctional coatings (i.e., bioactive, antibacterial, and biocompatible coatings). Recently, EPD was used to architect multi-structured coatings to improve mechanical and biological properties along with the controlled release of drugs/metallic ions. The key characteristics of EPD coatings in terms of inorganic bioactivity and their angiogenic potential coupled with antibacterial properties are the key elements enabling advanced applications of EPD in orthopedic applications. In the emerging field of EPD coatings for hard tissue and soft tissue engineering, an overview of such applications will be presented. The progress in the development of EPD-based polymeric or composite coatings, including their application in orthopedic and targeted drug delivery approaches, will be discussed, with a focus on the effect of different biologically active ions/drugs released from EPD deposits. The literature under discussion involves EPD coatings consisting of chitosan (Chi), zein, polyetheretherketone (PEEK), and their composites. Moreover, in vitro and in vivo investigations of EPD coatings will be discussed in relation to the current main challenge of orthopedic implants, namely that the biomaterial must provide good bone-binding ability and mechanical compatibility.
生物医学应用中PEEK-,壳聚糖-,明胶-和玉米蛋白基复合涂层的电泳沉积:最新发展和挑战
电泳沉积(EPD)是一种强大的技术,可以将金属,聚合物,陶瓷和复合材料组装成2D, 3D和复杂形状的植入物。聚合物、蛋白质和多肽可以在室温下通过EPD沉积而不影响其化学结构。此外,EPD被用于沉积多功能涂层(即生物活性,抗菌和生物相容性涂层)。最近,EPD被用于构建多结构涂层,以改善机械和生物性能,同时控制药物/金属离子的释放。EPD涂层在无机生物活性和血管生成潜力以及抗菌性能方面的关键特性是EPD在骨科应用中的先进应用的关键因素。在硬组织和软组织工程的EPD涂层新兴领域,概述了其应用。本文将讨论基于EPD的聚合物或复合涂层的发展进展,包括它们在骨科和靶向药物递送方法中的应用,重点讨论EPD沉积物中释放的不同生物活性离子/药物的影响。本文讨论了由壳聚糖(Chi)、玉米蛋白、聚醚醚酮(PEEK)及其复合材料组成的EPD涂层。此外,EPD涂层的体外和体内研究将讨论与目前骨科植入物的主要挑战有关的问题,即生物材料必须提供良好的骨结合能力和机械相容性。
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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CiteScore
4.40
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