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首页> 外文期刊>Biomaterials >Accelerated mineralization of dense collagen-nano bioactive glass hybrid gels increases scaffold stiffness and regulates osteoblastic function.
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Accelerated mineralization of dense collagen-nano bioactive glass hybrid gels increases scaffold stiffness and regulates osteoblastic function.

机译:致密胶原蛋白-纳米生物活性玻璃杂化凝胶的加速矿化作用增加了支架的刚度并调节了成骨细胞的功能。

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摘要

Plastically compressed dense collagen (DC) gels mimic the microstructural, mechanical, and biological properties of native osteoid. This study investigated the effect of hybridizing DC with osteoinductive nano-sized bioactive glass (nBG) particles in order to potentially produce readily implantable, and mineralizable, cell seeded hydrogel scaffolds for bone tissue engineering. Due to the high surface area of nBG and increased reactivity, calcium phosphate formation was immediately detected within as processed DC-nGB hybrid gel scaffolds. By day 3 in simulated body fluid, accelerated mineralization was confirmed through the homogeneous growth of carbonated hydroxylapatite on the nanofibrillar collagen framework. At day 7, there was a 13 fold increase in the hybrid gel scaffold compressive modulus. MC3T3-E1 pre-osteoblasts, three-dimensionally seeded at the point of nanocomposite self-assembly, were viable up to day 28 in culture. In the absence of osteogenic supplements, MC3T3-E1 metabolic activity and alkaline phosphatase production were affected by the presence of nBG, indicating accelerated osteogenic differentiation. Additionally, no cell-induced contraction of DC-nBG gel scaffolds was detected. The accelerated mineralization of rapidly produced DC-nBG hybrid gels indicates their potential suitability as osteoinductive cell delivery scaffolds for bone regenerative therapy.
机译:塑性压缩的致密胶原(DC)凝胶模仿天然类骨质的微观结构,机械和生物学特性。这项研究调查了将DC与骨诱导性纳米生物活性玻璃(nBG)颗粒杂交的效果,以便潜在地生产易于植入且可矿化的细胞种子水凝胶支架,用于骨组织工程。由于nBG的高表面积和增加的反应性,在加工过的DC-nGB混合凝胶支架中立即检测到磷酸钙的形成。到第3天,在模拟的体液中,通过碳纳米管胶原骨架上碳酸羟基磷灰石的均匀生长,证实了加速矿化作用。在第7天,杂化凝胶支架的压缩模量增加了13倍。 MC3T3-E1前成骨细胞在纳米复合材料自组装点三维植入,可培养至第28天。在没有成骨性补充剂的情况下,nBG的存在会影响MC3T3-E1的代谢活性和碱性磷酸酶的产生,这表明成骨细胞分化加速。另外,未检测到细胞诱导的DC-nBG凝胶支架的收缩。快速生产的DC-nBG杂化凝胶的加速矿化表明它们潜在的适用性,可作为骨诱导细胞的骨诱导细胞输送支架。

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