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首页> 外文期刊>ACS applied materials & interfaces >Nanopatterned Titanium Implants Accelerate Bone Formation In Vivo
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Nanopatterned Titanium Implants Accelerate Bone Formation In Vivo

机译:纳米透明构件钛植入体内加速骨形成

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摘要

Accelerated de novo formation of bone is a highly desirable aim of implants targeting musculoskeletal injuries. To date, this has primarily been addressed by biologic factors. However, there is an unmet need for robust, highly reproducible yet economic alternative strategies that strongly induce an osteogenic cell response. Here, we present a surface engineering method of translating bioactive nanopatterns from polymeric in vitro studies to clinically relevant material for orthopedics: three-dimensional, large area metal. We use a titanium-based sol-gel whereby metal implants can be engineered to induce osteoinduction both in vitro and in vivo. We show that controlled disordered nanotopographies presented as pillars with 15-25 nm height and 100 nm diameter on titanium dioxide effectively induce osteogenesis when seeded with STRO-1-enriched human skeletal stem cells in vivo subcutaneous implantation in mice. After 28 days, samples were retrieved, which showed a 20-fold increase in osteogenic gene induction of nanopatterned substrates, indicating that the sol-gel nanopatterning method offers a promising route for translation to future clinical orthopedic implants.
机译:加速De Novo形成骨是植入物靶向肌肉骨骼损伤的非常理想的目标。迄今为止,这主要是通过生物因素解决的。然而,对强大的高度可再现的且经济的替代策略存在未满足的需求,其强烈地诱导了成骨细胞反应。这里,我们介绍了一种将生物活性纳米图转化为从聚合物的体外研究将生物活性纳米图转化为透明材料的临床相关材料:三维,大面积金属。我们使用基于钛的溶胶 - 凝胶,可以设计金属植入物,以在体外和体内诱导骨诱导。我们表明,当用在小鼠中,在小鼠中,在小鼠中,在小鼠中,有效地呈现为15-25nm高度和100nm直径的受控无序纳米自行调整术。 28天后,检索样品,其显示出纳米透明基质的骨质原基因诱导的20倍,表明溶胶 - 凝胶纳米透明理由方法为未来的临床整形外科植入物提供了有希望的途径。

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