Consequences of Neutralization on the Proliferation and Cytoskeletal Organization of Chondrocytes on Chitosan-Based Matrices

Sandra E. Noriega, A. Subramanian
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引用次数: 35

Abstract

In tissue engineering strategies that seek to repair or regenerate native tissues, adhesion of cells to scaffolds or matrices is essential and has the potential to influence subsequent cellular events. Our focus in this paper is to better understand the impact of cellular seeding and adhesion in the context of cartilage tissue engineering. When scaffolds or surfaces are constructed from chitosan, the scaffolds must be first neutralized with sodium hydroxide and then washed copiously to render the surface, cell compatible. We seek to better understand the effect of surface pretreatment regimen on the cellular response to chitosan-based surfaces. In the present paper, sodium hydroxide concentration was varied between 0.1 M and 0.5 M and two different contacting times were studied: 10 minutes and 30 minutes. The different pretreatment conditions were noted to affect cell proliferation, morphology, and cytoskeletal distribution. An optimal set of experimental parameters were noted for improving cell growth on scaffolds.
中和作用对壳聚糖基质上软骨细胞增殖和细胞骨架组织的影响
在寻求修复或再生原生组织的组织工程策略中,细胞与支架或基质的粘附是必不可少的,并且有可能影响随后的细胞事件。我们在本文中的重点是更好地理解细胞播种和粘附在软骨组织工程背景下的影响。当用壳聚糖构建支架或表面时,支架必须首先用氢氧化钠中和,然后大量洗涤以使表面与细胞相容。我们试图更好地了解表面预处理方案对壳聚糖基表面的细胞反应的影响。本文在0.1 ~ 0.5 M的浓度范围内,研究了10分钟和30分钟两种不同的接触时间。不同的预处理条件会影响细胞的增殖、形态和细胞骨架分布。注意到一组优化的实验参数,以提高细胞在支架上的生长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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