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Design of hydroxyapatite bioceramics with micro-/nano-topographies to regulate the osteogenic activities of bone morphogenetic protein-2 and bone marrow stromal cells

机译:羟基磷灰石生物陶瓷的设计微/ nano-topographies调节骨形成成骨的活动protein-2和骨髓基质细胞

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摘要

Biomimicking the nanostructure of natural bone apatite to enhance the bioactivity of hydroxyapatite (HA) biomaterials is an eternal topic in the bone regeneration field. In the present study, we designed four kinds of HA bioceramics with micro- to nanosized grains and investigated the effects of bioceramic topographies on the structures of bone morphogenetic protein-2 (BMP-2) and the effects on the responses of bone marrow stromal cells (BMSCs). Compared to the samples with submicron-scale crystalline particles, HA bioceramics with grain sizes of 104.6 +/- 27.8 nm exhibited increased roughness, improved hydrophilicity and enhanced mechanical properties. The synergistic effects of these surface characteristics could well maintain the conformation of BMP-2, facilitate cell adhesion and spreading, and activate the osteogenic differentiation of BMSCs. Furthermore, SBF immersion and in vivo canine intramuscular implantation confirmed that the HA bioceramics with nanotopography also processed excellent bone-like apatite forming ability and outstanding osteoinductivity. In summary, these findings suggest that the nanotopography of HA bioceramics is a critical factor to enhance their bioactivity and osteoinductivity.
机译:仿生纳米结构自然骨磷灰石增强的生物活性羟磷灰石(HA)生物材料是一种永恒骨再生领域的主题。目前的研究中,我们设计了四种公顷与微-纳米颗粒和生物陶瓷调查bioceramic的影响地形对骨骼的结构形态形成protein-2 (BMP-2)和效果对骨髓基质细胞的反应(综合)。submicron-scale结晶粒子,哈哈生物陶瓷的晶粒尺寸104.6 + / - 27.8海里表现出粗糙度增加,改善亲水性和增强的机械属性。表面特征很可能维持BMP-2构象,促进细胞粘附和传播,激活成骨的bmsc的分化。浸渍和体内犬肌肉植入确认HA生物陶瓷nanotopography也处理好骨突磷灰石形成能力和突出osteoinductivity。建议的nanotopography HA生物陶瓷是一个关键因素,以提高其生物活性和osteoinductivity。

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