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首页> 外文期刊>Journal of Materials Science. Materials in Medicine >Interactions of total bone marrow cells with increasing quantities of macroporous calcium phosphate ceramic granules
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Interactions of total bone marrow cells with increasing quantities of macroporous calcium phosphate ceramic granules

机译:总骨髓细胞与数量增加的大孔磷酸钙陶瓷颗粒的相互作用

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The biological properties of synthetic calcium phosphate bioceramics have made them the third choice of material for bone reconstructive surgery, after autologous bone and allografts. Nevertheless, bioceramics lack the osteogenic properties that would allow them to repair large bone defects. One strategy in bone tissue engineering consists of associating a synthetic scaffold with osteogenic cells. Mesenchymal stem cells (MSC) are usually isolated from bone marrow cultured for several weeks and seeded on to a small quantity of bioceramic. We have studied the association of total bone marrow cells, harvested from femurs of rats, with increasing amounts of calcium phosphate ceramic granules (50-250 mg). A cell viability test indicated that a little quantity of bioceramics granules (50 mg) was less detrimental for culturing 1 million nucleated cells from the whole bone marrow population. Cell morphology, viability, adhesion and differentiation were studied after different culture periods. Among the heterogeneous population of bone marrow cells, only a limited amount of cells attached and differentiated on the bioceramics. To explain the influence of the amount of synthetic scaffold on cell viability, media calcium concentrations were measured. Low cell viability could be explained by calcium phosphate precipitation leading to a decrease in calcium concentrations observed with relatively large amounts of scaffold. This study showed that the chemical stability of the ceramic plays a critical role in the viability of bone marrow cells.
机译:合成磷酸钙生物陶瓷的生物学特性使它们成为继自体骨和同种异体移植之后的第三种用于骨重建手术的材料。但是,生物陶瓷缺乏成骨特性,因此无法修复大的骨缺损。骨组织工程学的一种策略是将合成支架与成骨细胞相关联。间充质干细胞(MSC)通常从培养数周的骨髓中分离出来,并接种到少量生物陶瓷上。我们已经研究了从大鼠股骨中收获的总骨髓细胞与增加量的磷酸钙陶瓷颗粒(50-250 mg)的关联。细胞活力测试表明,少量的生物陶瓷颗粒(50 mg)对从整个骨髓群体中培养一百万个有核细胞的危害较小。在不同的培养时间后,研究细胞的形态,活力,粘附和分化。在骨髓细胞的异质群体中,只有有限数量的细胞附着在生物陶瓷上并在生物陶瓷上分化。为了解释合成支架的数量对细胞活力的影响,测量了培养基中钙的浓度。低细胞生存力可以用磷酸钙沉淀来解释,磷酸钙沉淀导致在使用相对大量的支架时观察到的钙浓度降低。这项研究表明,陶瓷的化学稳定性在骨髓细胞的活力中起着至关重要的作用。

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