首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Time-Dependent Migratory Behaviors in the Long-Term Studies of Fibroblast Durotaxis on a Hydrogel Substrate Fabricated with a Soft Band
【24h】

Time-Dependent Migratory Behaviors in the Long-Term Studies of Fibroblast Durotaxis on a Hydrogel Substrate Fabricated with a Soft Band

机译:长期研究成纤维细胞在软带制成的水凝胶基质上的Durotaxis的时变迁移行为。

获取原文
获取原文并翻译 | 示例
           

摘要

Durotaxis, biased cell movement up a stiffness gradient on culture substrates, is one of the useful taxis behaviors for manipulating cell migration on engineered biomaterial surfaces. In this study, long-term durotaxis was investigated on gelatinous substrates containing a soft band of 20, 50, and 150 μm in width fabricated using photolithographic elasticity patterning; sharp elasticity boundaries with a gradient strength of 300 kPa/50 μm were achieved. Timedependent migratory behaviors of 3T3 fibroblast cells were observed during a time period of 3 days. During the first day, most of the cells were strongly repelled by the soft band independent of bandwidth, exhibiting the typical durotaxis behavior. However, the repellency by the soft band diminished, and more cells crossed the soft band or exhibited other mixed migratory behaviors during the course of the observation. It was found that durotaxis strength is weakened on the substrate with the narrowest soft band and that adherent affinity-induced entrapment becomes apparent on the widest soft band with time. Factors, such as changes in surface topography, elasticity, and/or chemistry, likely contributing to the apparent diminishing durotaxis during the extended culture were examined. Immunofluorescence analysis indicated preferential collagen deposition onto the soft band, which is derived from secretion by fibroblast cells, resulting in the increasing contribution of haptotaxis toward the soft band over time. The deposited collagen did not affect surface topography or surface elasticity but did change surface chemistry, especially on the soft band. The observed time-dependent durotaxis behaviors are the result of the mixed mechanical and chemical cues. In the studies and applications of cell migratory behavior under a controlled stimulus, it is important to thoroughly examine other (hidden) compounding stimuli in order to be able to accurately interpret data and to design suitable biomaterials to manipulate cell migration.
机译:Durotaxis使细胞在培养基质上沿刚度梯度向上移动,这是操纵工程化生物材料表面上细胞迁移的有用滑行行为之一。在这项研究中,研究了使用胶版印刷弹性图案制作的,宽度为20、50和150μm的软带的凝胶状基质的长期旋转度;获得了具有300 kPa / 50μm梯度强度的尖锐弹性边界。在3天的时间内观察到了3T3成纤维细胞的时间依赖性迁移行为。在第一天,大多数细胞都受到与带宽无关的软带的强烈排斥,表现出典型的durotaxis行为。然而,在观察过程中,软带的排斥力减弱,更多的细胞越过软带或表现出其他混合的迁移行为。发现在具有最窄软​​带的基底上,durotaxis强度被削弱,并且随着时间的过去,在最宽的软带上粘附亲和力诱导的夹带变得明显。检查了可能在扩展培养过程中造成表面旋转度明显降低的因素,例如表面形貌,弹性和/或化学性质的变化。免疫荧光分析表明,胶原蛋白优先沉积在软带上,这是由成纤维细胞分泌产生的,导致触觉对软带的贡献随着时间的推移而增加。沉积的胶原蛋白不会影响表面形貌或表面弹性,但会改变表面化学性质,尤其是在软带上。观察到的与时间有关的durotaxis行为是机械和化学提示混合的结果。在受控刺激下的细胞迁移行为的研究和应用中,重要的是彻底检查其他(隐藏的)复合刺激,以便能够准确解释数据并设计合适的生物材料来操纵细胞迁移。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号