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首页> 外文期刊>Science and technology of advanced materials >Bioresorbable porous β-tricalcium phosphate chelate-setting cements with poly(lactic-co-glycolic acid) particles as pore-forming agent: fabrication, material properties, cytotoxicity, and in vivo evaluation
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Bioresorbable porous β-tricalcium phosphate chelate-setting cements with poly(lactic-co-glycolic acid) particles as pore-forming agent: fabrication, material properties, cytotoxicity, and in vivo evaluation

机译:具有聚(乳酸 - 共乙醇酸)颗粒作为孔隙成型剂的生物吸收多孔β-β-β-β-β-β-β-β-β-β-β-β-β-β-β-β-β-β-螯合水泥:制造,材料性质,细胞毒性和体内评价

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摘要

Calcium-phosphate cements (CPCs) have been used as bone filling materials in orthopaedic surgery. However, CPCs are set using an acid-base reaction, and then change into stable hydroxyapatite (HAp) in a living body. Therefore, we developed bioresorbable chelate-setting β -tricalcium phosphate ( β -TCP) cements based on surface modifications of inositol phosphate (IP6). In order to improve the bioresorbability, we fabricated IP6/ β -TCP cements hybridized with poly(lactic-co-glycolic acid) (PLGA) particles as a pore-forming agent. The compressive strengths of the cements with the amounts of 5 and 10 mass% PLGA particles were 23.2 and 22.8 MPa, respectively. There was no significant difference from cements without PLGA (23.4 MPa). The setting times of the cement specimens with PLGA particles (30?min) were a little longer than those without PLGA particles (26.3?min). The lack of cytotoxicity of the cement specimens was confirmed using osteoblast-like cells (MC3T3-E1). Cylindrical defects were made by drilling into the tibia of mini-pigs and injecting the prepared cement pastes into the defects. Twelve weeks after implantation the specimens were stained with toluidine blue and histologically evaluated. Histological evaluation of cement specimens with PLGA particles showed enhanced bioresorbability. Newly-formed bone was also observed inside cement specimens with PLGA particles. The IP6/ β -TCP cement specimens with PLGA particles had excellent material properties, such as injectability, compressive strength, high porosity, no cytotoxicity in vitro , bioresorption and bone formation abilities in vivo . Organic-inorganic hybridized CPCs are expected to be valuable as novel biodegradable paste-like artificial bone fillers.
机译:磷酸钙水泥(CPC)已被用作骨科手术中的骨填充材料。然而,使用酸碱反应设定CPC,然后在活体中改变成稳定的羟基磷灰石(HAP)。因此,我们开发了基于肌醇磷酸肌醇(IP6)的表面改性的生物可吸收的螯合型β-磷酸钙(β-TCP)水泥。为了改善生物测量性,我们用聚(乳酸 - 乙醇酸)(PLGA)颗粒作为孔成型剂杂交的IP6 /β-TCP水泥。水泥的抗压强度分别为5和10质量%PLGA颗粒分别为23.2和22.8MPa。没有PLGA的水泥没有显着差异(23.4 MPa)。用PLGA颗粒(30≤min)的水泥样品的设定时间比没有PLGA颗粒的颗粒(26.3≤min)的时间长。使用成骨细胞样细胞(MC3T3-E1)确认水泥样本的细胞毒性缺乏细胞毒性。通过钻入迷你猪的胫骨并将制备的水泥糊剂注入缺陷中来制造圆柱形缺陷。植入后12周,用甲苯胺蓝和组织学评价染色标本。具有PLGA颗粒的水泥标本的组织学评价显示出增强的生物测量性。在具有PLGA颗粒的水泥标本内也观察到新形成的骨骼。具有PLGA颗粒的IP6 /β-TCP水泥样本具有优异的材料性质,例如可注射性,抗压强度,高孔隙率,在体内没有细胞毒性,生物或骨形成能力。有机 - 无机杂交的CPC预期是有价值的,作为新型可生物降解的糊状的人造骨填料。

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