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Osteoinductivity of Porous Biphasic Calcium Phosphate Ceramic Spheres with Nanocrystalline and Their Efficacy in Guiding Bone Regeneration

机译:多孔双相磷酸钙陶瓷球与纳米晶体的骨诱导性及其在引导骨再生中的功效

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Conventional biphasic calcium phosphate (BCP) bioceramics are facing many challenges to meet the demands of regenerative medicine, and their biological properties are limited to a large extent due to the large grain size in comparison with nanocrystalline of natural bone mineral. Herein, this study aimed to fabricate porous BCP ceramic spheres with nanocrystalline (BCP-N) by combining alginate gelatinizing with microwave hybrid sintering methods and investigated their in vitro and in vivo combinational osteogenesis potential. For comparison, spherical BCP granules with microcrystalline (BCP-G) and commercially irregular BCP granules (BAM, BCP-I) were selected as control. The obtained BCP-N with specific nanotopography could well initiate and regulate in vitro biological response, such as degradation, protein adsorption, bone-like apatite formation, cell behaviors, and osteogenic differentiation. In vivo canine intramuscular implantation and rabbit mandible critical-sized bone defect repair further confirmed that nanotopography in BCP-N might be responsible for the stronger osteoinductivity and bone regenerative ability than BCP-G and BCP-I. Collectedly, due to nanotopographic similarities with nature bone apatite, BCP-N has excellent efficacy in guiding bone regeneration and holds great potential to become a potential alternative to standard bone grafts in bone defect filling applications.
机译:常规的双相磷酸钙(BCP)生物陶瓷在符合再生药物需求的情况下面临着许多挑战,并且由于与天然骨矿物的纳米晶体相比,它们的生物学特性受到很大程度上的限制。这里,该研究旨在通过用微波杂化烧结方法组合藻酸盐凝胶化并在体外和体内组合成骨内发生潜力中制造与纳米晶(BCP-N)的多孔BCP陶瓷球体。为了比较,选择具有微晶(BCP-G)和商业不规则的BCP颗粒(BAM,BCP-I)的球形BCP颗粒作为对照。获得的具有特异性纳米术的BCP-N可以很好地引发和调节体外生物反应,例如降解,蛋白质吸附,骨状磷灰石形成,细胞行为和成骨分化。在体内甘氨酸肌肉内植入和兔下颌骨临界骨缺损修复进一步证实,BCP-N中的纳米发作可能对比BCP-G和BCP-1更强的骨诱导性和骨再生能力负责。收集的是,由于与自然骨磷灰石的纳米传输学相似,BCP-N具有优异的在引导骨再生中的功效,并且具有巨大的潜力,成为骨缺损填充应用中标准骨移植物的潜在替代。

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