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首页> 外文期刊>ACS applied materials & interfaces >Biocompatible Mesoporous Nanotubular Structured Surface to Control Cell Behaviors and Deliver Bioactive Molecules
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Biocompatible Mesoporous Nanotubular Structured Surface to Control Cell Behaviors and Deliver Bioactive Molecules

机译:具有生物相容性的中孔纳米管结构表面,可控制细胞行为并传递生物活性分子

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Biocompatible nanostructured surfaces control the cell behaviors and tissue integration process of medical devices and implants. Here we develop a novel biocompatible nanostructured surface based on mesoporous silica nanotube (MSNT) by means of an electrodeposition. MSNTs, replicated from carbon nanotubes of 25 nm x 1200 nm size, were interfaced in combination with fugitive biopolymers (chitosan or collagen) onto a Ti metallic substrate. The MSNT-biopolymer deposits uniformly covered the substrate with weight gains controllable by the electrodeposition conditions. Random nanotubular networks were generated successfully, which alongside the high mesoporosity provided unique nanotopological properties for the cell responses and the loading/delivery of biomolecules. Of note, the adhesion and spreading behaviors of mesenchyrnal stem cells (MSCs) were significantly altered, revealing more rapid cell anchorage and extensive nanofilopodia development along the nanotubular networks. Furthermore, the nanotubular surface improved the loading capacity of biomolecules (dexamethasone and bovine serum albumin) up to 5-7 times. The release of the biomolecules was highly sustained, exhibiting a diffusion-controlled pattern over 15 days. The therapeutic efficacy of the delivered biomolecules was also confirmed in the osteogenic differentiation of MSCs. While in vivo performance and applicability studies are needed further, the current biocompatible nanostructured surface may be considered as a novel biointerfacing platform to control cellular behaviors and biomolecular delivery.
机译:生物相容性纳米结构表面控制着医疗设备和植入物的细胞行为和组织整合过程。在这里,我们通过电沉积技术开发了一种基于介孔二氧化硅纳米管(MSNT)的新型生物相容性纳米结构表面。从25 nm x 1200 nm尺寸的碳纳米管复制的MSNT与逃生生物聚合物(壳聚糖或胶原蛋白)结合到Ti金属基底上。 MSNT-生物聚合物沉积物均匀覆盖基材,其重量增加可通过电沉积条件控制。成功生成了随机的纳米管网络,它与高介孔性一起为细胞反应和生物分子的负载/传递提供了独特的纳米拓扑特性。值得注意的是,间质干细胞(MSCs)的粘附和扩散行为发生了显着变化,揭示了沿纳米管网络的更快的细胞锚定和广泛的纳米丝足病发展。此外,纳米管表面将生物分子(地塞米松和牛血清白蛋白)的负载能力提高了5-7倍。生物分子的释放高度持续,在15天内呈现出扩散控制的模式。在MSC的成骨分化中也证实了所递送的生物分子的治疗功效。虽然还需要进行体内性能和适用性研究,但当前的生物相容性纳米结构表面可被视为控制细胞行为和生物分子传递的新型生物接口平台。

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