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Recent advances in ceramic implants as drug delivery systems for biomedical applications

机译:陶瓷植入物作为生物医学应用药物输送系统的最新进展

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摘要

Research in the development of new bioceramics with local drug delivery capability for bone regeneration technologies is receiving great interest by the scientific biomedical community. Among bioceramics, silica-based ordered mesoporous materials are excellent candidates as bone implants due to two main reasons: first, the bioactive behavior of such materials in contact with simulated body fluids, ie, a carbonate hydroxyapatite similar to the mineral phase of bone is formed onto the materials surfaces. Second, their capability of acting as delivery systems of a large variety of biologically active molecules, including drugs to treat bone infection, inflammation or diseases, and molecules that promote bone tissue regeneration, such as peptides, proteins, growth factors, and other osteogenic agents. The recent chemical and technological advances in the nanometer scale has allowed the design of mesoporous silicas with tailored structural and textural properties aimed at achieving a better control over molecule loading and release kinetics. Moreover organic modification of mesoporous silica walls has been revealed as a key strategy to modulate molecule adsorption and delivery rates.
机译:具有局部药物递送能力的新型生物陶瓷的骨再生技术的研究正在引起科学生物医学界的极大兴趣。在生物陶瓷中,基于二氧化硅的有序介孔材料非常适合作为骨植入物,这有两个主要原因:首先,这种材料与模拟体液接触即具有类似于骨骼矿物质的碳酸盐羟基磷灰石的生物活性。到材料表面上。其次,它们充当多种生物活性分子(包括治疗骨感染,炎症或疾病的药物)以及促进骨组织再生的分子(例如肽,蛋白质,生长因子和其他成骨剂)的传递系统的能力。纳米级化学领域的最新化学进展使得介孔二氧化硅的设计具有定制的结构和质地特性,旨在更好地控制分子的负载和释放动力学。此外,已经发现介孔二氧化硅壁的有机修饰是调节分子吸附和输送速率的关键策略。

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