机械生物学
刺激
物理刺激
机械转化
伤口愈合
神经科学
生物医学工程
数据驱动
组织重塑
组织工程
细胞
再生(生物学)
组织修复
计算机科学
利用
医学
再生医学
细胞生长
功能性电刺激
细胞迁移
体外
电池类型
生物
细胞生物学
电刺激
材料科学
过程(计算)
纳米技术
化学
作者
Matthew K. Burgess,Ellen F Marsh,Veronica M. Lucian,Malavika Nair
摘要
This review explores the role of in vitro electrical and mechanical stimulation in modulating wound-healing behavior, with a primary focus on the predominant skin cell types: fibroblasts and keratinocytes. By analyzing the existing literature, we delineate the complex relationships between stimulation parameters-such as voltage, current, frequency, and mechanical strain-and cellular responses, including proliferation and migration. Our data-driven approach compiled more than 390 experimental data points for electrical stimulation and over 170 for mechanical stimulation in vitro, constructing a comprehensive library of cell responses that were previously fragmented and difficult to compare across studies. We critically evaluate various stimulation platforms and configurations, emphasizing their influence on cellular mechanobiology and their translational potential in regenerative medicine. Ultimately, this review underscores the necessity of a multi-parameter optimization strategy to effectively exploit electromechanical cues for targeted skin tissue regeneration.
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