首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Tricalcium phosphate and glutaraldehyde crosslinked gelatin incorporating bone morphogenetic protein--a viable scaffold for bone tissue engineering.
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Tricalcium phosphate and glutaraldehyde crosslinked gelatin incorporating bone morphogenetic protein--a viable scaffold for bone tissue engineering.

机译:磷酸三钙和戊二醛交联明胶结合了骨形态发生蛋白-一种用于骨组织工程的可行支架。

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Bone defects caused by various etiologies must be filled with suitable substances to promote bone repair. Autogenous iliac crest graft is most frequently used, but is often associated with morbidities. Several bone graft substitutes have been developed to provide osteoconductive matrices as well as to enhance osteoinductivity. A tricalcium phosphate and glutaraldehyde crosslinked gelatin (GTG) scaffold, incorporated with bone morphogenetic proteins (BMPs), was developed to provide an alternative mean of bone tissue engineering. This study investigated differences between GTG and BMP-4 immobilized GTG (GTG-BMP) scaffolds on neonatal rat calvaria osteoblast activities. The GTG scaffold possessed an average pore size of 200 microm and a porosity of 75%. HE staining revealed uniform cell distribution throughout the scaffold 24 h post cell seeding. Alkaline phosphatase (ALP) activity of the GTG samples increased initially and then stabilized at 3 weeks postseeding. ALP activity of the GTG-BMP samples was similar to that of the GTG samples in the second and third weeks, but it continued increasing and became significantly greater than that of the GTG samples by the fourth week. Gla-type osteocalcin (Gla-OC) activity of the GTG-BMP samples was initially lower, but also became significantly greater than that of the GTG samples by the fourth week. An HE stain revealed greater numbers of attached cells and a richer matrix deposits in the GTG-BMP samples. A von Kossa stain showed larger mineralizing nodules, in greater numbers, after 4 weeks of in vitro cultivation. These findings suggest that the GTG scaffold provides an excellent porous structure, conductive to greater cell attachment and osteoblast differentiation, and that utility can be significantly enhanced by the inclusion of BMPs. A GTG-BMP scaffold holds promise as a superior bioactive material for bone tissue engineering.
机译:由各种病因引起的骨缺损必须填充合适的物质以促进骨修复。自体移植最常用,但通常与发病率有关。已经开发了几种骨移植替代物以提供骨传导基质以及增强骨诱导能力。磷酸三钙和戊二醛交联明胶(GTG)支架与骨形态发生蛋白(BMP)结合在一起,可以提供骨组织工程学的替代方法。这项研究调查了GTG和BMP-4固定的GTG(GTG-BMP)支架对新生大鼠颅盖成骨细胞活性的差异。 GTG支架的平均孔径为200微米,孔隙率为75%。 HE染色显示细胞接种后24小时,整个支架内细胞均匀分布。 GTG样品的碱性磷酸酶(ALP)活性最初增加,然后在播种后3周稳定下来。 GTG-BMP样品的ALP活性在第二周和第三周与GTG样品相似,但到第四周它仍继续增加并显着高于GTG样品。 GTG-BMP样品的Gla型骨钙素(Gla-OC)活性最初较低,但到第四周时,其活性明显高于GTG-BMP样品。 HE染色显示GTG-BMP样品中附着的细胞数量更多,基质沉积更丰富。在体外培养4周后,von Kossa染色显示出较大的矿化结节,数量更多。这些发现表明,GTG支架提供了出色的多孔结构,有助于更大的细胞附着和成骨细胞分化,并且通过加入BMP可以显着提高其实用性。 GTG-BMP支架有望成为骨组织工程学中一种优异的生物活性材料。

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