3D细胞封闭和细胞外拥挤的机械生物学
Gabriela Da Silva André1, Céline Labouesse1
1Macromolecular Engineering Laboratory, Department of Mechanical and Process Engineering, ETH Zurich, 8092 Zurich, Switzerland.
Biophysical reviews
|January 20, 2025
概括
细胞封闭,特别是在3D培养中,通过改变机械生物学途径和限制通信,影响细胞生存,功能和命运. 了解这些影响对于设计更好的组织工程支架至关重要.
科学领域:
- 机械生物学 机械生物学
- 生物材料科学 生物材料科学
- 细胞工程 细胞工程
背景情况:
- 细胞和组织存在于封闭的微环境中,影响它们的尺寸,体积和流体交换.
- 包括有机体在内的3D细胞培养模型本质上涉及2D系统中缺少的限制.
- 微环境的机械性质,如刚性,是机械敏感的,对被限制的反应.
研究的目的:
- 审查不同程度的限制如何调节机械生物学的途径.
- 探索3D限制对单细胞,有机体和瘤球体的影响.
- 讨论细胞外拥挤对细胞通信和运输的影响.
主要方法:
- 关于被关押下机械生物学途径的文献综述.
- 分析使用微洞,弹性和粘性弹性支架中的3D限制的研究.
- 讨论细胞外拥挤对分子和流体运输的影响.
主要成果:
- 限制级别 (低,中,高) 调节机械生物路径的激活.
- 在各种支架中3D限制会影响细胞的行为和通信.
- 细胞外拥挤显著限制了分子运输和矩阵沉积.
结论:
- 细胞对禁闭的反应对于生存,功能和命运至关重要.
- 了解监禁对于设计模仿本地环境的3D工程组织至关重要.
- 这些知识可以指导用于再生医学的先进生物材料的开发.
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