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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Effect of cold-setting calcium- and magnesium phosphate matrices on protein expression in osteoblastic cells
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Effect of cold-setting calcium- and magnesium phosphate matrices on protein expression in osteoblastic cells

机译:冷固性磷酸钙和磷酸镁基质对成骨细胞蛋白表达的影响

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Bone loss due to accidents or tissue diseases requires replacement of the structure by either autografts, allografts, or artificial materials. Reactive cements, which are based on calcium phosphate chemistry, are commonly used in nonload bearing areas such as the craniofacial region. Some of these materials are resorbed by the host under physiological conditions and replaced by bone. The aim of this study was to test different calcium and magnesium cement composites in vitro for their use as bone substitution material. Phase composition of calcium deficient hydroxyapatite (Ca 9(PO 4) 5HPO 4OH), brushite (CaHPO 4?·2H 2O), and struvite (MgNH 4PO 4?·6H 2O) specimens has been determined by means of X-ray diffraction, and compressive strength was measured. Cell growth and activity of osteoblastic cells (MG 63) on the different surfaces was determined, and the expression of bone marker proteins was analyzed by western blotting. Cell activity normalized to cell number revealed higher activity of the osteoblasts on brushite and struvite when compared to hydroxyapatite and also the expression of osteoblastic marker proteins was highest on brushite scaffolds. While brushite sets under acidic conditions, formation of struvite occurs under physiological pH, similar to hydroxyapatite cements, providing the possibility of additional modifications with proteins or other active components.
机译:由于事故或组织疾病导致的骨丢失需要通过自体移植,同种异体移植或人工材料替换结构。基于磷酸钙化学的反应性水泥通常用于非承重区域,例如颅面区域。这些物质中的某些物质在生理条件下会被宿主吸收,并被骨骼取代。这项研究的目的是在体外测试不同的钙和镁水泥复合材料作为骨替代材料的用途。通过X射线衍射确定了钙缺乏的羟基磷灰石(Ca 9(PO 4)5HPO 4OH),透钙磷石(CaHPO 4?·2H 2O)和鸟粪石(MgNH 4PO 4?·6H 2O)的相组成,并测量抗压强度。测定细胞在不同表面上的生长和成骨细胞(MG 63)的活性,并通过蛋白质印迹分析骨标记蛋白的表达。归一化为细胞数的细胞活性表明,与羟基磷灰石相比,成骨细胞对透钙磷石和鸟粪石具有更高的活性,并且成骨细胞标记蛋白的表达在透钙磷石支架上最高。当透钙磷石在酸性条件下凝固时,鸟粪石的形成在生理pH下发生,类似于羟基磷灰石胶结物,从而提供了用蛋白质或其他活性成分进行其他修饰的可能性。

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