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首页> 外文期刊>Biomaterials >Hierarchically microporous/macroporous scaffold of magnesium-calcium phosphate for bone tissue regeneration.
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Hierarchically microporous/macroporous scaffold of magnesium-calcium phosphate for bone tissue regeneration.

机译:磷酸镁钙的微孔/大孔支架,用于骨骼组织再生。

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Hierarchically 3D microporous/macroporous magnesium-calcium phosphate (micro/ma-MCP) scaffolds containing magnesium ammonium phosphate hexahydrate [NH(4)MgPO(4).6H(2)O] and hydroxyapatite [Ca(10)(PO(4))(6)(OH)(2)] were fabricated from cement utilizing leaching method in the presence of sodium chloride (NaCl) particles and NaCl saturated water solution. NaCl particles produced macroporosity, and NaCl solution acted as both cement liquid and porogens, inducing the formation of microporosity. The micro/ma-MCP scaffolds with porosities varied from 52 to 78% showed well interconnected and open macropores with the sizes of 400-500 microm, and degradation of the scaffolds was significantly enhanced in Tris-HCl solution compared with macroporous MCP (ma-MCP) and corresponding calcium phosphate cement (CPC) scaffolds. Cell attachment and proliferation of MG(63) on micro/ma-MCP were significantly better than ma-MCP and CPC scaffolds because of the presence of microporosity, which enhanced the surface area of the scaffolds. Moreover, the alkaline phosphatase (ALP) activity of the MG(63) cells on micro/ma-MCP was significantly higher than ma-MCP and CPC scaffolds at 7 days, and the MG(63) cells with normal phenotype spread well and formed confluent layers across the macroporous walls of the micro/ma-MCP scaffolds. Histological evaluation confirmed that the micro/ma-MCP scaffolds improved the efficiency of new bone regeneration, and exhibited excellent biocompatibility, biodegradability and faster and more effective osteogenesis in vivo.
机译:分层3D微孔/大孔磷酸镁钙(micro / ma-MCP)支架,包含六水合磷酸铵镁[NH(4)MgPO(4).6H(2)O]和羟基磷灰石[Ca(10)(PO(4)) (6)(OH)(2)]是在氯化钠(NaCl)颗粒和NaCl饱和水溶液存在下,采用浸出法由水泥制成的。 NaCl颗粒产生大孔,而NaCl溶液既是水泥液又是致孔剂,诱导了微孔的形成。孔隙率从52%到78%不等的micro / ma-MCP支架表现出良好的互连性和开放的大孔,尺寸为400-500 microm,与大孔MCP相比,在Tris-HCl溶液中支架的降解显着增强。 MCP)和相应的磷酸钙水泥(CPC)支架。 MG(63)在micro / ma-MCP上的细胞附着和增殖显着好于ma-MCP和CPC支架,因为存在微孔,从而增加了支架的表面积。此外,在第7天,micro / ma-MCP上的MG(63)细胞的碱性磷酸酶(ALP)活性显着高于ma-MCP和CPC支架,具有正常表型的MG(63)细胞可以很好地扩散并形成micro / ma-MCP支架大孔壁上的融合层。组织学评估证实,micro / ma-MCP支架提高了新骨再生的效率,并表现出优异的生物相容性,生物降解性以及体内更快更有效的成骨作用。

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