首页> 外文期刊>Journal of biomedical materials research, Part A >Sustained delivery of vascular endothelial growth factor from mesoporous calcium-deficient hydroxyapatite microparticles promotes in vitro angiogenesis and osteogenesis
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Sustained delivery of vascular endothelial growth factor from mesoporous calcium-deficient hydroxyapatite microparticles promotes in vitro angiogenesis and osteogenesis

机译:来自中孔钙缺乏羟基磷灰石微粒的血管内皮生长因子的持续递送促进体外血管生成和骨质发生

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Promoting the growth of blood vessels within engineered tissues remains one of the main challenge in bone tissue engineering. One way to improve angiogenesis is the use of vascular endothelial growth factor (VEGF) as it holds the ability to increase the formation of a vascular network. In the present study, collagen scaffolds with VEGF-releasing hydroxyapatite particles were fabricated, in order to engineer a material both capable of presenting an osteoconductive surface and delivering an angiogenic growth factor in a localized and sustained manner, in order to enhance osteogenesis as well as angiogenesis. To this end, we developed microparticles and characterize their size, chemical properties and Ca/P ratio to validate the formation of hydroxyapatite. We then evaluated the osteogenic potential of HAp when cultured with mesenchymal stem cells and compare it to commercially available hydroxyapatite (SBp). Finally, we characterized the encapsulation and release of VEGF in the HAp and assess the angiogenic potential of the VEGF-HAp when cultured with endothelial cells. We demonstrated the successful fabrication of calcium deficient hydroxyapatite microparticles (CDHAp), with biological properties closer to the bone than stoichiometric, commercially available hydroxyapatite. This CDHAp exhibited a well-defined 3D network of crystalline nanoplates forming mesoporous and hollow structures. The high specific area created by those structures enabled the loading of VEGF with high efficiency when compared to the loading efficiency of SBp. Furthermore, their biological performances were evaluated in vitro. Our results indicate that VEGF-CDHAp can be used to improve both osteogenesis and angiogenesis in vitro.
机译:促进组织工程中血管的生长仍然是骨组织工程的主要挑战之一。改善血管生成的一种方法是使用血管内皮生长因子(VEGF),因为它具有增加血管网络形成的能力。在本研究中,制备了具有释放VEGF的羟基磷灰石颗粒的胶原支架,以设计一种既能呈现骨传导表面,又能以局部和持续的方式传递血管生成生长因子的材料,从而增强成骨和血管生成。为此,我们开发了微粒,并对其大小、化学性质和钙磷比进行了表征,以验证羟基磷灰石的形成。然后,我们评估了HAp与间充质干细胞培养时的成骨潜能,并将其与市售羟基磷灰石(SBp)进行比较。最后,我们描述了VEGF在HAp中的包封和释放,并评估了VEGF-HAp与内皮细胞培养时的血管生成潜能。我们成功制备了缺钙羟基磷灰石微粒(CDHAp),其生物学特性比化学计量的市售羟基磷灰石更接近骨。这种CDHAp展示了一个定义良好的三维晶体纳米板网络,形成介孔和中空结构。与SBp的负载效率相比,这些结构产生的高比表面积使VEGF的负载效率更高。并对其体外生物学性能进行了评价。我们的研究结果表明,VEGF-CDHAp可以在体外促进成骨和血管生成。

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