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BIOACTIVE CALCIUM PHOSPHATES AND NANOCOMPOSITE SCAFFOLDS FOR BONE TISSUE ENGINEERING

机译:用于骨组织工程的生物活性磷酸钙和纳米复合材料支架

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For their use in human body tissue repair, synthetic bioactive calcium phosphates (Ca-P, including bioactive apatites), which are mainly developed for hard tissue replacement, have been under intensive as well as extensive investigations worldwide over the past three decades. Tissue engineering, as a promising means for human tissue repair, emerged two decades ago. Tissue engineering requires the use of (different) cells and the provision initially of an appropriate microenvironment for the cells to attach and proliferate, leading to the formation of new tissue. In scaffold-based bone tissue engineering, biodegradable, three-dimensional porous scaffolds are a key requirement. Synthetic hydroxyapatite or bioactive Ca-P nanoparticles can be incorporated in biodegradable polymers to form scaffolds, imparting scaffolds with osteoconductivity and hence enhancing bone formation. Processes have been developed for synthesizing Ca-P nanoparticles and various methods have been employed to fabricate nanocomposite scaffolds for bone tissue engineering. The influencing factors were also studied.
机译:为了将其用于人体组织修复,过去三十年来,全球主要对合成的生物活性磷酸钙(Ca-P,包括生物活性磷灰石)进行开发以及广泛的研究,磷酸钙主要用于硬组织置换。组织工程,作为人类组织修复的一种有前途的手段,在二十年前就出现了。组织工程需要使用(不同的)细胞,并在开始时为细胞附着和增殖提供适当的微环境,从而导致新组织的形成。在基于支架的骨组织工程中,可生物降解的三维多孔支架是关键要求。可以将合成的羟基磷灰石或具有生物活性的Ca-P纳米颗粒掺入可生物降解的聚合物中以形成支架,使支架具有骨传导性,从而增强骨骼的形成。已经开发了用于合成Ca-P纳米颗粒的方法,并且已经采用了各种方法来制造用于骨组织工程的纳米复合支架。还研究了影响因素。

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