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The effects of dissociated rods and rod-surfaced microspheres on bone mesenchymal stem cellular viability

机译:解离的杆和杆表面微球对骨间充质干细胞活力的影响

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Material properties and cellular behaviours seemed to be coupled, implying the existence of reciprocities between cells and materials. Understanding cellular behaviours and material structure is indispensable for materials synthesis and design but has mostly focused on shape, neglecting the status of the sub-structure. Hence we utilized a similar route to regulate the different morphology of HAp particles and then investigated reciprocities between particles and bone marrow mesenchymal stem cells (BMSCs). Based on our cell experiment, we revealed the side effects of dissociated micro-rods on cellular behaviours. Despite the facts that both particles showed modestly cytotoxicity, the multi-structure HAp sphere could positively-regulate the proliferation, viability and differentiation of bone marrow mesenchymal stem cells (BMSCs) which indicated that the dissociated micro-rods may deteriorate the biological properties in vitro.
机译:材料的特性和细胞的行为似乎是耦合的,这意味着细胞与材料之间存在互惠关系。了解细胞行为和材料结构对于材料的合成和设计是必不可少的,但是主要集中在形状上,而忽略了子结构的状态。因此,我们利用相似的途径来调节HAp颗粒的不同形态,然后研究了颗粒与骨髓间充质干细胞(BMSCs)之间的相互关系。基于我们的细胞实验,我们揭示了解离的微棒对细胞行为的副作用。尽管两个颗粒均显示出适度的细胞毒性,但多结构HAp球仍可正向调节骨髓间充质干细胞(BMSCs)的增殖,活力和分化,这表明解离的微棒可能会破坏其生物学特性。 >体外

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