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Increased osteoblast cell density on nanostructured PLGA-coated nanostructured titanium for orthopedic applications

机译:用于整形外科的纳米PLGA涂层纳米钛上增加的成骨细胞密度

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摘要

There are more than 30,000 orthopedic implant revision surgeries necessary each year in part due to poor implant fixation with juxtaposed bone. A further emphasis on the current problems associated with insufficient bone implant performance is the fact that many patients are receiving hip implants earlier in life, remaining active older, and that the human lifespan is continuously increasing. Collectively, it is clear that there is a strong clinical need to improve implant performance through proper, prolonged fixation. For these reasons, the objective of the present in vitro study was to improve the performance of titanium (Ti), one of the most popular orthopedic implant materials. Accordingly, the proliferative response of osteoblasts (bone-forming cells) on novel nanostructured Ti/PLGA (poly-lactic-co-glycolic acid) composites was examined. This study showed that nano-topography can be easily applied to Ti (through anodization) and porous PLGA (through NaOH chemical etching) to enhance osteoblast cell proliferation which may lead to better orthopedic implant performance. This straight forward application of nano-topography on current bone implant materials represents a new direction in the design of enhanced biomaterials for the orthopedic industry.
机译:每年需要进行30,000多例骨科植入物翻修手术,部分原因是并列骨的植入物固定不良。对当前与骨植入物性能不足相关的问题的进一步强调是以下事实:许多患者在生命的早期就接受髋关节植入物,保持活跃的年龄更大,并且人类的寿命正在不断增加。总之,很明显,强烈需要通过适当的长时间固定来改善植入物的性能。由于这些原因,本体外研究的目的是提高钛(Ti)的性能,钛是最流行的整形外科植入材料之一。因此,检查了成骨细胞(成骨细胞)对新型纳米结构Ti / PLGA(聚乳酸-乙醇酸共聚物)复合材料的增殖反应。这项研究表明,纳米形貌可以很容易地应用于Ti(通过阳极氧化)和多孔PLGA(通过NaOH化学蚀刻)以增强成骨细胞的增殖,这可能导致更好的整形外科植入物性能。纳米形貌在当前骨植入材料上的直接应用代表了骨科行业增强型生物材料设计的新方向。

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