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Novel Resorbable and Osteoconductive Calcium Silicophosphate Scaffold Induced Bone Formation

机译:新型可吸收和骨传导性硅磷酸钙支架诱导的骨形成

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摘要

This aim of this research was to develop a novel ceramic scaffold to evaluate the response of bone after ceramic implantation in New Zealand (NZ) rabbits. Ceramics were prepared by the polymer replication method and inserted into NZ rabbits. Macroporous scaffolds with interconnected round-shaped pores (0.5–1.5 mm = were prepared). The scaffold acted as a physical support where cells with osteoblastic capability were found to migrate, develop processes, and newly immature and mature bone tissue colonized on the surface (initially) and in the material’s interior. The new ceramic induced about 62.18% ± 2.28% of new bone and almost complete degradation after six healing months. An elemental analysis showed that the gradual diffusion of Ca and Si ions from scaffolds into newly formed bone formed part of the biomaterial’s resorption process. Histological and radiological studies demonstrated that this porous ceramic scaffold showed biocompatibility and excellent osteointegration and osteoinductive capacity, with no interposition of fibrous tissue between the implanted material and the hematopoietic bone marrow interphase, nor any immune response after six months of implantation. No histological changes were observed in the various organs studied (para-aortic lymph nodes, liver, kidney and lung) as a result of degradation products being released.
机译:这项研究的目的是开发一种新型的陶瓷支架,以评估在新西兰(NZ)兔中植入陶瓷后骨骼的反应。通过聚合物复制法制备陶瓷,并将其插入NZ兔中。制备具有相互连接的圆形孔的大孔支架(0.5-1.5 mm =)。支架起到了物理支持的作用,在那里发现具有成骨细胞能力的细胞迁移,发展,并且新近形成的未成熟和成熟的骨组织定植在材料的表面和内部。新的陶瓷诱导了大约62.18%±2.28%的新骨骼,并且在六个月的愈合后几乎完全降解。元素分析表明,钙和硅离子从支架中逐渐扩散到新形成的骨骼中是生物材料吸收过程的一部分。组织学和放射学研究表明,这种多孔陶瓷支架显示出生物相容性,并具有出色的骨整合和骨诱导能力,在植入材料与造血骨髓间期之间没有纤维组织的介入,并且在植入六个月后也没有任何免疫反应。由于释放了降解产物,因此在所研究的各种器官(主动脉旁淋巴结,肝,肾和肺)中均未观察到组织学变化。

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