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AFFECTS OF ALUMINA AND TITANIA NANOPARTICULATES ON BONE CELL FUNCTION

机译:铝和二氧化钛纳米微粒对骨细胞功能的影响

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Proliferation of osteoblasts (bone-forming cells) and chondrocytes (cartilage-synthesizing cells) exposed to different sizes of alumina as well as titania wear debris particles were investigated in the present in vitro study. Such wear debris may result from friction between articulating components of orthopedic implants. Results provided the first evidence of increased osteoblast and chondrocyte proliferation in the presence of nanometer compared to conventional-dimension (i.e., micron) ceramic particles. Studies revealed that the only difference between respective ceramic particles was dimension; specifically, phase, charge, and chemical properties were similar between different size alumina and titania particles, respectively. Evidence of a less detrimental affect of nanometer compared to conventional-dimension wear debris on cell function offers additional evidence that nanophase ceramics may become the next generation of bone prosthetic materials with improved osseointegrative (that is, ability to bond to juxtaposed bone in situ) properties.
机译:在本体外研究中,研究了暴露于不同大小的氧化铝以及二氧化钛磨损碎屑颗粒的成骨细胞(成骨细胞)和软骨细胞(软骨合成细胞)的增殖。这种磨损碎片可能是由于整形外科植入物的关节组件之间的摩擦引起的。结果提供了与常规尺寸(即微米)陶瓷颗粒相比在纳米存在下增加的成骨细胞和软骨细胞增殖的第一个证据。研究表明,各个陶瓷颗粒之间的唯一区别是尺寸。具体而言,不同尺寸的氧化铝和二氧化钛颗粒之间的相,电荷和化学性质分别相似。与常规尺寸的磨损碎片相比,纳米对细胞功能的有害影响较小的证据提供了进一步的证据,表明纳米相陶瓷可能成为下一代骨修复材料,其骨整合性(即与原位并置的骨结合的能力)的特性得到改善。 。

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