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钙磷酸盐生物活性玻璃复合材料骨替代物的生物学特性:当前的实验证据。

Biological Properties of Calcium Phosphate Bioactive Glass Composite Bone Substitutes: Current Experimental Evidence.

机构信息

Center of Orthopedics, Traumatology, and Spinal Cord Injury, Heidelberg University Hospital, Schlierbacher Landstr. 200a, 69118 Heidelberg, Germany.

ATORG-Aschaffenburg Trauma and Orthopedics Research Group, Center for Trauma Surgery, Orthopedics, and Sports Medicine, Klinikum Aschaffenburg-Alzenau, Am Hasenkopf 1, 63739 Aschaffenburg, Germany.

出版信息

Int J Mol Sci. 2019 Jan 14;20(2):305. doi: 10.3390/ijms20020305.

Abstract

Standard treatment for bone defects is the biological reconstruction using autologous bone-a therapeutical approach that suffers from limitations such as the restricted amount of bone available for harvesting and the necessity for an additional intervention that is potentially followed by donor-site complications. Therefore, synthetic bone substitutes have been developed in order to reduce or even replace the usage of autologous bone as grafting material. This structured review focuses on the question whether calcium phosphates (CaPs) and bioactive glasses (BGs), both established bone substitute materials, show improved properties when combined in CaP/BG composites. It therefore summarizes the most recent experimental data in order to provide a better understanding of the biological properties in general and the osteogenic properties in particular of CaP/BG composite bone substitute materials. As a result, BGs seem to be beneficial for the osteogenic differentiation of precursor cell populations in-vitro when added to CaPs. Furthermore, the presence of BG supports integration of CaP/BG composites into bone in-vivo and enhances bone formation under certain circumstances.

摘要

骨缺损的标准治疗方法是使用自体骨进行生物重建——这是一种治疗方法,但存在一些限制,例如可供采集的骨量有限,以及需要进行可能会引起供体部位并发症的额外干预。因此,已经开发出合成骨替代物,以减少甚至替代自体骨作为移植物的使用。本综述重点关注钙磷(CaP)和生物活性玻璃(BG)这两种已确立的骨替代材料在组合成 CaP/BG 复合材料时是否显示出改善的特性。因此,它总结了最近的实验数据,以便更好地了解 CaP/BG 复合材料骨替代材料的一般生物学特性和特别是成骨特性。结果表明,当添加到 CaP 中时,BG 似乎有利于前体细胞群体的体外成骨分化。此外,BG 的存在支持 CaP/BG 复合材料在体内与骨的整合,并在某些情况下增强骨形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d019/6359412/a471078e1a6c/ijms-20-00305-g001.jpg

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