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Hierarchy of cellular decisions in collective behavior: Implications for wound healing

机译:集体行为中细胞决定的层次:对伤口愈合的影响

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摘要

Collective processes such as wound re-epithelialization result from the integration of individual cellular decisions. To determine which individual cell behaviors represent the most promising targets to engineer re-epithelialization, we examined collective and individual responses of HaCaT keratinocytes seeded upon polyacrylamide gels of three stiffnesses (1, 30, and 100 kPa) and treated with a range of epidermal growth factor (EGF) doses. Wound closure was found to increase with substrate stiffness, but was responsive to EGF treatment only above a stiffness threshold. Individual cell behaviors were used to create a partial least squares regression model to predict the hierarchy of factors driving wound closure. Unexpectedly, cell area and persistence were found to have the strongest correlation to the observed differences in wound closure. Meanwhile, the model predicted a relatively weak correlation between wound closure with proliferation, and the unexpectedly minor input from proliferation was successfully tested with inhibition by aphidicolin. Combined, these results suggest that the poor clinical results for growth factor-based therapies for chronic wounds may result from a disconnect between the individual cellular behaviors targeted in these approaches and the resulting collective response. Additionally, the stiffness-dependency of EGF sensitivity suggests that therapies matched to microenvironmental characteristics will be more efficacious.
机译:诸如伤口再上皮化的集体过程是由单个细胞决定的整合产生的。为了确定哪些个体细胞行为代表着最有希望的工程再上皮化目标,我们检查了接种在三种刚度(1、30和100 kPa)聚丙烯酰胺凝胶上并经一系列表皮生长处理的HaCaT角质形成细胞的集体和个体反应因子(EGF)剂量。发现伤口闭合随着基底刚度而增加,但是仅在刚度阈值以上才对EGF处理有响应。使用单个细胞行为创建偏最小二乘回归模型,以预测驱动伤口闭合的因素的层次结构。出乎意料的是,发现细胞面积和持久性与观察到的伤口闭合差异具有最强的相关性。同时,该模型预测伤口闭合与增生之间的相关性相对较弱,并且成功地检测到了来自增生的出乎意料的微小输入,并受到了蚜虫的抑制作用。综合起来,这些结果表明,针对慢性伤口的基于生长因子的疗法的临床效果不佳,可能是由于这些方法所针对的单个细胞行为与所引起的集体反应之间的脱节。另外,EGF敏感性的刚度依赖性表明,与微环境特征匹配的疗法将更加有效。

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