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首页> 外文期刊>Journal of biomedical materials research, Part A >Bulk physicochemical, interconnectivity, and mechanical properties of calcium phosphate cements-fibrin glue composites for bone substitute applications.
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Bulk physicochemical, interconnectivity, and mechanical properties of calcium phosphate cements-fibrin glue composites for bone substitute applications.

机译:用于骨替代应用的磷酸钙水泥-纤维蛋白胶复合材料的大物理化学,互连性和机械性能。

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Calcium phosphate cements (CPCs) and fibrin glue (FG) are used for surgical applications. Their combination is promising to create bone substitutes able to promote cell attachment and bone remodeling. This study proposes a novel approach to create CPC-FG composites by simultaneous CPC setting and FG fibrinogenesis. CPC-FG composites were obtained by mixing CPC powders, i.e. α-tricalcium phosphate, dicalcium phosphate anhydrous and precipitated hydroxyapatite, with FG powder components, i.e. fibrinogen and thrombin, and a 2% Na(2) HPO(4) solution. To study the effect of FG quantity and fibrinogenesis kinetics, long and fast setting FGs were evaluated in amounts of 0.125, 0.250, and 0.500 mL on CPC-FG composites. Physicochemical, interconnectivity, and mechanical properties were measured. Scanning electron microscopy, Micro-computed tomography (μ-CT), X-ray diffraction, and Fourier transform Infrared spectroscopy (FTIR) analyzed morphology, structure, crystallographic, and chemical composition, respectively. FG fibrinogenesis was performed within the CPC. FTIR confirmed this and its interfacial bonding with CPC. μ-CT confirmed a good FG distribution. FG addition affected the CPC when compared with pristine CPC. Adding FG to CPC changed their morphology, density, porosity, setting, cohesion, injectability, interconnectivity, crystallographic and chemical composition and mechanical properties. Moreover, 0.500 mL of long setting FG modified the observed fracture behavior of the CPC-FG.
机译:磷酸钙水泥(CPC)和纤维蛋白胶(FG)用于外科手术。它们的结合有望产生能够促进细胞附着和骨骼重塑的骨替代物。这项研究提出了一种通过同时进行CPC设置和FG纤维蛋白生成来创建CPC-FG复合材料的新颖方法。 CPC-FG复合材料是通过将CPC粉末(即α-磷酸三钙,无水磷酸二钙和沉淀的羟基磷灰石)与FG粉末成分(即纤维蛋白原和凝血酶)和2%Na(2)HPO(4)溶液混合而获得的。为了研究FG量和纤维蛋白生成动力学的影响,对CPC和FG复合材料分别以0.125、0.250和0.500 mL的量对长效和快凝FG进行了评估。测量了物理化学,互连性和机械性能。扫描电子显微镜,微型计算机断层扫描(μ-CT),X射线衍射和傅里叶变换红外光谱(FTIR)分别分析了形态,结构,晶体学和化学成分。 FG纤维蛋白发生在CPC内进行。 FTIR证实了这一点及其与CPC的界面联系。 μ-CT确认FG分布良好。与原始CPC相比,添加FG影响了CPC。在CPC中添加FG改变了它们的形态,密度,孔隙率,凝结性,内聚性,可注入性,互连性,晶体学和化学组成以及机械性能。此外,0.500 mL的长期凝固FG改善了CPC-FG的断裂行为。

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