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Bioceramics: a review on design concepts toward tailor-made (multi)-functional materials for tissue engineering applications

机译:生物陶瓷:组织工程应用定制(多功能)材料的设计理念综述

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摘要

Abstract Since the second half of the 20th century, bioceramics are widely used as a substitute for hard tissue engineering. Bioceramics including zirconia, alumina, hydroxyapatite, and bioactive glass plays a vital role in the design of tissue engineering scaffolds with tailor-made properties. The bioceramics scaffold has been used to replace or regenerate the tissue of the human body due to its excellent mechanical strength, biocompatibility, chemical stability, corrosion restriction behavior, and wear resistance. The advancement in technology has made the form of bioceramics and their function, structure, and composition more diversified, and manifold. Considering the promising role of the use of bioceramics in tissue engineering, we proposed this review, presenting the classification of bioceramics, their physiochemical properties, degradation pathway, product development so far, and their application in tissue engineering. The calcium phosphate and bioglass-based composite scaffold have also been discussed in detail. Furthermore, this paper also discussed the toxicity evaluation and market perspective of bioceramics. Thus, this review gives a complete insight into bioceramics for tissue engineering applications.
机译:摘要 自20世纪下半叶以来,生物陶瓷被广泛用作硬组织工程的替代品。包括氧化锆、氧化铝、羟基磷灰石和生物活性玻璃在内的生物陶瓷在设计具有定制特性的组织工程支架中起着至关重要的作用。生物陶瓷支架因其优异的机械强度、生物相容性、化学稳定性、耐腐蚀性和耐磨性而被用于替代或再生人体组织。技术的进步使生物陶瓷的形式及其功能、结构和组成更加多样化和多样。考虑到生物陶瓷在组织工程中的应用前景广阔,本文提出了本文综述,介绍了生物陶瓷的分类、理化性质、降解途径、迄今为止的产品开发及其在组织工程中的应用。磷酸钙和生物玻璃基复合支架也进行了详细讨论。此外,本文还讨论了生物陶瓷的毒性评价和市场前景。因此,这篇综述对生物陶瓷在组织工程中的应用有了全面的了解。

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