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具有定制界面特性的药物洗脱装置的最新进展。

Recent developments in drug eluting devices with tailored interfacial properties.

机构信息

University of The Basque Country (UPV/EHU), Department of Mining-Metallurgy Engineering and Materials Science & POLYMAT, School of Engineering, Alameda Urquijo s/n, 48013 Bilbao, Spain.

University of The Basque Country (UPV/EHU), Department of Mining-Metallurgy Engineering and Materials Science & POLYMAT, School of Engineering, Alameda Urquijo s/n, 48013 Bilbao, Spain.

出版信息

Adv Colloid Interface Sci. 2017 Nov;249:181-191. doi: 10.1016/j.cis.2017.05.005. Epub 2017 May 4.

Abstract

Drug eluting devices have greatly evolved during past years to become fundamental products of great marketing importance in the biomedical field. There is currently a large diversity of highly specialized devices for specific applications, making the development of these devices an exciting field of research. The replacement of the former bare metal devices by devices loaded with drugs allowed the sustained and controlled release of drugs, to achieve the desired local therapeutic concentration of drug. The newer devices have been "engineered" with surfaces containing micro- and nanoscale features in a well-controlled manner, that have shown to significantly affect cellular and subcellular function of various biological systems. For example, the topography can be structured to form an antifouling surface mimicking the defense mechanisms found in nature, like the skin of the shark. In the case of bone implants, well-controlled nanostructured interfaces can promote osteoblast differentiation and matrix production, and enhance short-term and long-term osteointegration. In any case, the goal of current research is to design implants that induce controlled, guided, and rapid healing. This article reviews recent trends in the development of drug eluting devices, as well as recent developments on the micro/nanotechnology scales, and their future challenges. For this purpose medical devices have been divided according to the different systems of the body they are focused to: orthopedic devices, breathing stents, gastrointestinal and urinary systems, devices for cardiovascular diseases, neuronal implants, and wound dressings.

摘要

在过去的几年中,药物洗脱装置有了很大的发展,成为生物医学领域具有重要市场价值的基础产品。目前有许多高度专业化的设备用于特定的应用,这使得这些设备的开发成为一个令人兴奋的研究领域。从前的裸金属设备被药物负载设备所取代,从而实现了药物的持续和控制释放,以达到所需的局部治疗药物浓度。更新的设备采用了微纳尺度特征的表面,并以可控的方式进行“设计”,这已经表明可以显著影响各种生物系统的细胞和亚细胞功能。例如,通过构造拓扑结构可以形成仿造自然界中发现的防御机制的防污表面,例如鲨鱼的皮肤。在骨植入物的情况下,经过良好控制的纳米结构界面可以促进成骨细胞分化和基质产生,并增强短期和长期的骨整合。在任何情况下,当前研究的目标是设计能够诱导受控、引导和快速愈合的植入物。本文综述了药物洗脱装置的最新发展趋势,以及微纳技术尺度上的最新进展及其未来挑战。为此,根据它们所针对的身体不同系统,将医疗器械分为:骨科器械、呼吸支架、胃肠道和泌尿系统、心血管疾病器械、神经植入物和伤口敷料。

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