Momotyuk Ekaterina, Ebrahim Nour, Shakirova Ksenia, Dashinimaev Erdem
Center for Precision Genome Editing and Genetic Technologies for Biomedicine, Pirogov Russian National Research Medical University, Moscow, Russia.
Front Mol Biosci. 2025 Mar 7;12:1538806. doi: 10.3389/fmolb.2025.1538806. eCollection 2025.
The cytoskeleton plays a crucial role in regulating cellular behavior, acting as both a structural framework and a mediator of mechanical and biochemical signals that influence cell fate. In the context of cellular reprogramming, modifications to the cytoskeleton can have profound effects on lineage commitment and differentiation efficiency. This review explores the impact of mechanical forces such as substrate stiffness, topography, extracellular fluid viscosity, and cell seeding density on cytoskeletal organization and mechanotransduction pathways, including Rho/ROCK and YAP/TAZ signaling. Additionally, we examine the influence of biochemical agents that modulate cytoskeletal dynamics, such as actin and microtubule polymerization inhibitors, and their effects on stem cell differentiation. By understanding how cytoskeletal remodeling governs cellular identity, this review highlights potential strategies for improving reprogramming efficiency and directing cell fate by manipulating mechanical and biochemical cues.
细胞骨架在调节细胞行为中起着至关重要的作用,它既是一个结构框架,也是影响细胞命运的机械和生化信号的介质。在细胞重编程的背景下,细胞骨架的修饰可对谱系定向和分化效率产生深远影响。本综述探讨了诸如底物硬度、拓扑结构、细胞外液粘度和细胞接种密度等机械力对细胞骨架组织和机械转导途径的影响,包括Rho/ROCK和YAP/TAZ信号传导。此外,我们研究了调节细胞骨架动力学的生化试剂的影响,如肌动蛋白和微管聚合抑制剂,以及它们对干细胞分化的作用。通过了解细胞骨架重塑如何控制细胞身份,本综述强调了通过操纵机械和生化线索来提高重编程效率和引导细胞命运的潜在策略。