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Engineering Scaffolds Integrated with Calcium Sulfate and Oyster Shell for Enhanced Bone Tissue Regeneration

机译:整合了硫酸钙和牡蛎壳的工程支架,可增强骨骼组织的再生

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Engineering scaffolds combinging natural bio-mineral and artificially synthesized material hold promising potential for bone tissue regeneration. In this study, novel bioactive calcium sulfate/oyster shell (CS/OS) composites were prepared. Comparing to CS scaffold, the CS/OS composites with a controllable degradation rate displayed enhanced mineral nodule formation, higher alkaline phosphate (ALP) activity and increased proliferation rate while treated osteocytes. In CS/OS composites group, elevated mRNA levels of key osteogenic genes including bone morphogenetic protein-2 (BMP-2), runt-related transcription factor 2 (Runx2), osterix (Osx), and osteocalcin (OCN) were observed. Furthermore, The up-regulation of BMP-2 and type I collagen (COL-1) was observed for CS/OS composites relative to a CS group. Scaffolds were implanted into critical-sized femur cavity defects in rabbits to investigate the osteogenic capacity of the composites in vivo. The CS/OS scaffolds with proper suitable times and mechanical strength strongly promoted osteogenic tissue regeneration relative to the regeneration capacity of CS scaffolds, as indicated by the results of histological staining. These results suggest that the OS-modified CS engineering scaffolds with improved mechanical properties and bioactivity would facilitate the development of a new strategy for clinic bone defect regeneration.
机译:结合天然生物矿物和人工合成材料的工程支架具有有望再生骨组织的潜力。在这项研究中,制备了新型的生物活性硫酸钙/牡蛎壳(CS / OS)复合材料。与CS支架相比,具有可控降解速率的CS / OS复合材料在处理骨细胞时显示出增强的矿物质结节形成,更高的碱性磷酸盐(ALP)活性和更高的增殖速率。在CS / OS复合材料组中,观察到主要成骨基因的mRNA水平升高,包括骨形态发生蛋白2(BMP-2),矮子相关转录因子2(Runx2),osterix(Osx)和骨钙蛋白(OCN)。此外,相对于CS组,对于CS / OS复合材料,观察到BMP-2和I型胶原(COL-1)的上调。将支架植入家兔的关键尺寸股骨腔缺损中,以研究复合材料在体内的成骨能力。组织学染色的结果表明,相对于CS支架的再生能力,具有合适的合适时间和机械强度的CS / OS支架强烈促进成骨组织的再生。这些结果表明,具有改良的机械性能和生物活性的经OS修饰的CS工程支架将促进临床骨缺损再生的新策略的开发。

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