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Fabrication of nano-hydroxyapatite/collagen/osteonectin composites for bone graft applications

机译:纳米羟基磷灰石/胶原蛋白/骨连接素复合材料的制备

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摘要

Mineralized type I collagen (collagen I) nanofibers and their nanofibril bundles make up the microstructure of natural bone tissue, which range from nanometers to micrometers. However, attempts to achieve this hierarchically assembled structure in vitro have been unsuccessful. In this study, we added osteonectin into the collagen I solution, either at a high or low weight ratio (osteonectin:collagen I=1:30 or 1:90) before co-precipitation. Results indicated that spindle-like nano-hydroxyapatite (nano-HA) was deposited on collagen/osteonectin and pure osteonectin (control) groups. Furthermore, transmission electron microscope (TEM) and scanning electron microscope (SEM) results showed that the assembled mineralized fiber bundles were formed randomly at different levels from 50 nm, 250 nm to 1100 nm. However, when we replaced collagen I with collagen II, osteonectin addition did not induce the formation of mineralized fiber bundles. The participation of osteonectin in the assembly of the mineralized fibers could provide new insights into the novel mineralization function of osteonectin for bone development in vivo and advancing new biomimetic methods for bone graft applications.
机译:矿化的I型胶原蛋白(胶原I)纳米纤维及其纳米纤丝束构成了天然骨组织的微观结构,其范围从纳米到微米。然而,尝试在体外实现这种分层组装的结构是不成功的。在这项研究中,我们在共沉淀之前以高或低的重量比(骨连接蛋白:胶原蛋白I = 1:30或1:90)将骨连接蛋白添加到了胶原蛋白I溶液中。结果表明纺锤状纳米羟基磷灰石(nano-HA)沉积在胶原/骨连接蛋白和纯骨连接蛋白(对照组)上。此外,透射电子显微镜(TEM)和扫描电子显微镜(SEM)的结果表明,组装的矿化纤维束在50nm,250nm至1100nm的不同水平随机形成。但是,当我们用胶原蛋白II代替胶原蛋白I时,骨粘连蛋白的添加不会诱导矿化纤维束的形成。骨连接素参与矿化纤维的组装可以提供新的见解,以了解骨连接素在体内骨骼发育中的新型矿化功能,并为骨移植应用提供新的仿生方法。

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