用于生物材料和医疗应用的表面安装金属有机框架薄膜涂层的最新进展:综述。

IF 8.1 Q1 ENGINEERING, BIOMEDICAL
Mohammad Mehdi Sabzehmeidani, Mahmood Kazemzad
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引用次数: 0

摘要

金属有机框架涂层在医疗植入物、组织工程和药物输送系统的表面改性方面具有潜在的应用前景。因此,开发一种适用于表面安装MOF工程的方法来制备用于植入组织工程的保护涂层是一个关键问题。此外,还对涂层工艺进行了设计,以达到药物输注和对抗化学和机械阻力的效果。在这篇综述中,我们讨论了MOF涂层在体外和体内各种系统中的医学应用技术,如MOFs的原位生长、MOFs浸渍涂层、MOFs.旋涂、逐层法、MOFs-喷涂、MOFs-气相沉积、MOFs-电化学沉积。目前的研究调查了MOF对植入物表面的改性,以改变合金表面的性能,从而提高性能,如减少生物膜粘附、预防感染、提高药物和离子的释放速率以及耐腐蚀性。合金表面的MOF涂层可以被认为是一种机会或限制。合金外层中MOF涂层的存在将显著证明生物、化学和机械效应。此外,还报道了MOF性能和与合金表面的特定相互作用对MOF涂层的抗微生物性、耐腐蚀性和自修复性的影响。因此,综述了多功能方法在提高合金表面附着力、抗微生物性和耐腐蚀性方面的重要性和前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent advances in surface-mounted metal-organic framework thin film coatings for biomaterials and medical applications: a review.

Coatings of metal-organic frameworks (MOFs) have potential applications in surface modification for medical implants, tissue engineering, and drug delivery systems. Therefore, developing an applicable method for surface-mounted MOF engineering to fabricate protective coating for implant tissue engineering is a crucial issue. Besides, the coating process was desgined for drug infusion and effect opposing chemical and mechanical resistance. In the present review, we discuss the techniques of MOF coatings for medical application in both in vitro and in vivo in various systems such as in situ growth of MOFs, dip coating of MOFs, spin coating of MOFs, Layer-by-layer methods, spray coating of MOFs, gas phase deposition of MOFs, electrochemical deposition of MOFs. The current study investigates the modification in the implant surface to change the properties of the alloy surface by MOF to improve properties such as reduction of the biofilm adhesion, prevention of infection, improvement of drugs and ions rate release, and corrosion resistance. MOF coatings on the surface of alloys can be considered as an opportunity or a restriction. The presence of MOF coatings in the outer layer of alloys would significantly demonstrate the biological, chemical and mechanical effects. Additionally, the impact of MOF properties and specific interactions with the surface of alloys on the anti-microbial resistance, anti-corrosion, and self-healing of MOF coatings are reported. Thus, the importance of multifunctional methods to improve the adhesion of alloy surfaces, microbial and corrosion resistance and prospects are summarized.

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