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首页> 外文期刊>Materials >Biological Activation of Inert Ceramics: Recent Advances Using Tailored Self-Assembled Monolayers on Implant Ceramic Surfaces
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Biological Activation of Inert Ceramics: Recent Advances Using Tailored Self-Assembled Monolayers on Implant Ceramic Surfaces

机译:惰性陶瓷的生物活化:在植入式陶瓷表面上使用定制的自组装单分子膜的最新进展

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摘要

High-strength ceramics as materials for medical implants have a long, research-intensive history. Yet, especially on applications where the ceramic components are in direct contact with the surrounding tissue, an unresolved issue is its inherent property of biological inertness. To combat this, several strategies have been investigated over the last couple of years. One promising approach investigates the technique of Self-Assembled Monolayers (SAM) and subsequent chemical functionalization to create a biologically active tissue-facing surface layer. Implementation of this would have a beneficial impact on several fields in modern implant medicine such as hip and knee arthroplasty, dental applications and related fields. This review aims to give a summarizing overview of the latest advances in this recently emerging field, along with thorough introductions of the underlying mechanism of SAMs and surface cell attachment mechanics on the cell side.
机译:高强度陶瓷作为医疗植入物的材料已有很长的研究密集的历史。然而,特别是在陶瓷组件与周围组织直接接触的应用中,尚未解决的问题是其生物惰性的固有特性。为了解决这个问题,最近几年已经研究了几种策略。一种有前途的方法研究了自组装单分子膜(SAM)的技术和随后的化学功能化,以创建具有生物活性的面向组织的表面层。该方法的实施将对现代植入医学的多个领域产生有益的影响,例如髋关节和膝关节置换术,牙科应用以及相关领域。这篇综述旨在概述这一新兴领域的最新进展,并全面介绍SAM的潜在机制和细胞一侧的表面细胞附着机制。

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