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Drug-device systems based on biodegradable metals for bone applications: Potential, development and challenges

机译:基于可生物降解金属的骨骼应用药物器械系统:潜力、发展和挑战

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摘要

Drug-device systems based on biodegradable metals have been of great interest in the last decade due to their local-release regime and the ability of the biodegradable metals to degrade in the physiological environment facilitating tissue growth and gradual load transfer. The biodegradability of the biodegradable metals provides a promising medium that might enable other materials - such as drugs, bioactive materials and therapeutic agents - to be incorporated into the degradable metals to act as a drug-device system that would locally release the drugs or therapeutic agents onto the healing tissue. In comparison to systemic drug delivery, the locally released drug-device system makes the dose control over a specific targeted tissue more efficient and reduces the side effects on non-targeted tissues. This review outlines the current state of development of the biodegradable metals-based drug-device system and focuses in-depth on the potential interactions between the drugs, degradable metallic surfaces, drug carriers, ions and proteins inside the body fluids, which can be a challenge to producing a highly efficient drug-device system. (c) 2022 Nalecz Institute of Biocybernetics and Biomedical Engineering of the Polish Academy of Sciences. Published by Elsevier B.V. All rights reserved.
机译:在过去十年中,基于可生物降解金属的药物设备系统因其局部释放机制以及可生物降解金属在生理环境中降解的能力而引起人们的极大兴趣,从而促进了组织生长和逐渐负荷转移。可生物降解金属的生物降解性提供了一种很有前途的介质,可以使其他材料(如药物、生物活性材料和治疗剂)掺入可降解金属中,作为药物装置系统,将药物或治疗剂局部释放到愈合组织上。与全身给药相比,局部释放的药物装置系统使对特定靶向组织的剂量控制更加有效,并减少了对非靶向组织的副作用。本文综述了基于生物降解金属的药物-器械系统的发展现状,并深入探讨了药物、可降解金属表面、药物载体、离子和体液内蛋白质之间的潜在相互作用,这可能是生产高效药物-器械系统的挑战。(c) 2022 年波兰科学院纳莱茨生物控制论和生物医学工程研究所。由以下开发商制作:Elsevier B.V.保留所有权利。

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