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受生物启发的胶原蛋白/明胶纳米柱状薄膜作为一种潜在的植入物涂层材料。

Bioinspired Collagen/Gelatin Nanopillared Films as a Potential Implant Coating Material.

作者信息

Erturk Pinar Alpaslan, Altuntas Sevde, Irmak Gulseren, Buyukserin Fatih

机构信息

TOBB University of Economics and Technology, Biomedical Engineering, 06560Ankara, Turkey.

University of Health Sciences Turkey, Tissue Engineering Department, Experimental Medicine Research and Application Center, Validebag Research Park, 34662Istanbul, Turkey.

出版信息

ACS Appl Bio Mater. 2022 Oct 6;5(10):4913-21. doi: 10.1021/acsabm.2c00633.

Abstract

Collagen-based Sharpey's fibers are naturally located between alveolar bone and tooth, and they have critical roles in a well-functioning tooth such as mechanical stability, facile differentiation, and disease protection. The success of Sharpey's fibers in these important roles is due to their unique location, vertical alignment with respect to tooth surface, as well as their micronanofiber architecture. Inspired by these structures, herein, we introduce the use of nanoporous anodic aluminum oxide molds in a drop-casting setup to fabricate biopolymeric films possessing arrays of uniform Collagen:Gelatin (Col:Gel) nanopillars. Obtained structures have diameters of ∼90 nm and heights of ∼300 nm, yielding significantly higher surface roughness values compared to their flat counterparts. More importantly, the nanostructures were parallel to each other but perpendicular to the underlying film surface imitating the natural collagenous structures of Sharpey's fibers regarding nanoscale morphology, geometrical orientation, as well as biochemical content. Viability testing showed that the nanopillared Col:Gel films have high cell viabilities (over 90%), and they display significantly improved attachment (. ∼ 2 times) and mineralization for Saos-2 cells when compared to flat Col:Gel films and Tissue Culture Polystyrene (TCPS) controls, plausibly due to their largely increased surface roughness and area. Hence, such Sharpey's fiber-inspired bioactive nanopillared Col:Gel films can be used as a dental implant coating material or tissue engineering platform with enhanced cellular and osteogenic properties.

摘要

基于胶原蛋白的穿通纤维自然地位于牙槽骨和牙齿之间,并且在功能良好的牙齿中发挥着关键作用,如机械稳定性、易于分化和疾病防护。穿通纤维在这些重要作用方面的成功归因于其独特的位置、相对于牙齿表面的垂直排列以及其微米纳米纤维结构。受这些结构的启发,在此,我们介绍在滴铸装置中使用纳米多孔阳极氧化铝模具来制造具有均匀胶原蛋白:明胶(Col:Gel)纳米柱阵列的生物聚合物薄膜。所获得的结构直径约为90纳米,高度约为300纳米,与平坦的对应物相比,产生了显著更高的表面粗糙度值。更重要的是,这些纳米结构彼此平行,但垂直于下面的薄膜表面,在纳米尺度形态、几何取向以及生化成分方面模仿了穿通纤维的天然胶原结构。活力测试表明,纳米柱状Col:Gel薄膜具有高细胞活力(超过90%),并且与平坦的Col:Gel薄膜和组织培养聚苯乙烯(TCPS)对照相比,它们对Saos-2细胞的附着(约2倍)和矿化有显著改善,这可能是由于其表面粗糙度和面积大幅增加。因此,这种受穿通纤维启发的具有生物活性的纳米柱状Col:Gel薄膜可以用作具有增强细胞和成骨特性的牙科植入物涂层材料或组织工程平台。

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