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Effect of Collagen-Polycaprolactone Nanofibers Matrix Coating on the In Vitro Cytocompatibility and In Vivo Bone Responses of Titanium

机译:胶原聚己内酯纳米纤维基质涂层对钛的体外细胞相容性和体内骨反应的影响

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摘要

The objective of this study was to improve the biomechanical performance of titanium (Ti) using a biocompatible electrospun nanofiber matrix. The study is based on the hypothesis that coating a Ti surface with a nanofiber matrix (NFM) made of collagen (CG) and polycaprolactone (PCL) electrospun nanofibers could increase the mechanical fixation of Ti/bone by improving the surface and cytocompatibility properties of Ti. This study prepared Ti samples with and without CG-PCL NFM coatings. This study determined the in vitro effects of each group of Ti samples on the surface topography and cytocompatibility (osteoblast cell adhesion, proliferation, mineralization and protein adsorption) properties. This study also determined in vivo interface shear strength and bone volume fraction of each group of Ti samples with bone using a rabbit model. This study found that the CG-PCL NFM coating on Ti improved the surface roughness, osteoblast cell adhesion, proliferation, mineralization and protein adsorption properties of Ti. In vivo studies found that interface shear strength of CG-PCL NFM-coated Ti/bone samples was significantly higher compared to those values of control Ti/bone samples (p value < 0.05) due to anincrease in the amount of growth of the connective tissue joining the Tiimplant. Therefore, the developed CG-PCL NFM coating technique should further beinvestigated for its potential in clinical applications.
机译:这项研究的目的是使用生物相容性电纺纳米纤维基质来提高钛(Ti)的生物力学性能。该研究基于以下假设:用胶原蛋白(CG)和聚己内酯(PCL)电纺纳米纤维制成的纳米纤维基质(NFM)覆盖Ti表面可以通过改善Ti的表面和细胞相容性来增强Ti /骨的机械固定性。 。这项研究制备了有和没有CG-PCL NFM涂层的Ti样品。这项研究确定了每组钛样品对表面形貌和细胞相容性(成骨细胞粘附,增殖,矿化和蛋白质吸附)特性的体外影响。这项研究还使用兔子模型确定了每组含骨的钛样品的体内界面剪切强度和骨体积分数。这项研究发现,Ti上的CG-PCL NFM涂层改善了Ti的表面粗糙度,成骨细胞粘附,增殖,矿化和蛋白质吸附性能。体内研究发现,CG-PCL NFM涂层Ti /骨样品的界面剪切强度明显高于对照Ti /骨样品的界面剪切强度(p值<0.05),这是由于钛结缔组织生长量增加注入。因此,应进一步开发已开发的CG-PCL NFM涂层技术。研究了其在临床应用中的潜力。

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