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Surface And Interface Investigation Of Aluminosilicate Biomaterial By The 'in Vivo' Experiments

机译:通过“体内”实验研究铝硅酸盐生物材料的表面和界面

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Porous mixtures of aluminosilicate/calcium phosphate have been studied for biomaterials applications. Aluminosilicates formed with an inorganic polymeric constitution present amorphous zeolites because of their 3D network structure and present the ability to link to bone matrix. Amorphous geopolymers of the potassium-poly(sialate)-nanopolymer type were synthesised at low temperature and studied for their use as potential biomaterials. They were mixed with 13% weight of calcium phosphate like biphasic hydroxyapatite and β-tricalcium phosphate. In this study, "in vivo" experiments were monitored to evaluate the biocompatibility, the surface and the interface behaviour of these composites when used as bone implants. Moreover, it has been demonstrated using histological and physicochemical studies that the developed materials exhibited a remarkable bone bonding when implanted in a rabbit's thighbone for a period of 1 month. The easy synthesis conditions (low temperature) of this composite and the fast intimate links with bone constitute an improvement of synthetic bone graft biomaterial.
机译:已经研究了铝硅酸盐/磷酸钙的多孔混合物用于生物材料的应用。具有无机聚合物结构的硅铝酸盐由于其3D网络结构而呈现出无定形沸石,并具有与骨基质连接的能力。在低温下合成了钾-聚(唾液酸)-纳米聚合物类型的非晶态地质聚合物,并研究了其作为潜在生物材料的用途。将它们与13%重量的磷酸钙混合,如双相羟基磷灰石和β-磷酸三钙。在这项研究中,监测“体内”实验以评估这些复合材料用作骨植入物时的生物相容性,表面和界面行为。此外,使用组织学和物理化学研究已经证明,当将这种材料植入兔子的大腿骨中1个月时,它们会表现出显着的骨粘合性。该复合材料的容易合成条件(低温)以及与骨骼的快速紧密联系构成了合成骨移植生物材料的一种改进。

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