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细胞与生物材料的黏附:表面电荷、表面粗糙度、吸附蛋白和细胞形态之间的相关性。

Cell adhesion to biomaterials: correlations between surface charge, surface roughness, adsorbed protein, and cell morphology.

作者信息

Hallab N J, Bundy K J, O'Connor K, Clark R, Moses R L

机构信息

Biomedical Dept., Tulane University, New Orleans, LA 70118, USA.

出版信息

J Long Term Eff Med Implants. 1995;5(3):209-31.

Abstract

Adhesion of cells to a biomaterial surface can be a major factor mediating its biocompatibility. In this investigation, jet impingement techniques were used to quantify strength of cellular adhesion to various material surfaces. The metals tested: HS25 (a cobalt-based alloy similar to F75), 316L stainless steel, Ti-6Al-4V, and commercially pure tantalum, exhibited nearly a fivefold increase in adhesion strength above that characteristic of the polymeric materials tested (PTFE, silicone rubber, and HDPE). The present study examines physical and biological factors that might influence fibroblast adhesion to the biomaterial surface. The relation between surface charge and cellular adhesion was investigated in a controlled manner by measuring adhesion strength over a range of charge densities. The cells showed charge and electrical potential-dependent adhesion maxima, suggesting that surface alloying for optimum adherence may be possible. In a preliminary series of experiments adsorbed serum protein layers on a series of materials of differing adherence were investigated using gel electrophoresis to assess protein composition. Analysis of adsorbed proteins revealed little difference in relative abundance or total adsorption quantity. SEM micrographs of cells on Ti-6Al-4V and silicone rubber (high and low adhesion materials, respectively) demonstrated differences in cell morphology and cell density.

摘要

细胞与生物材料表面的粘附可能是介导其生物相容性的一个主要因素。在本研究中,采用喷射冲击技术来量化细胞对各种材料表面的粘附强度。所测试的金属:HS25(一种类似于F75的钴基合金)、316L不锈钢、Ti-6Al-4V和工业纯钽,其粘附强度比所测试的聚合物材料(聚四氟乙烯、硅橡胶和高密度聚乙烯)的特征粘附强度高出近五倍。本研究考察了可能影响成纤维细胞与生物材料表面粘附的物理和生物学因素。通过在一系列电荷密度范围内测量粘附强度,以可控方式研究了表面电荷与细胞粘附之间的关系。细胞表现出电荷和电位依赖性的粘附最大值,这表明通过表面合金化实现最佳粘附可能是可行的。在一系列初步实验中,使用凝胶电泳研究了吸附在一系列粘附性不同的材料上的血清蛋白层,以评估蛋白质组成。对吸附蛋白的分析显示,相对丰度或总吸附量几乎没有差异。Ti-6Al-4V和硅橡胶(分别为高粘附性和低粘附性材料)上细胞的扫描电子显微镜图像显示了细胞形态和细胞密度的差异。

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