AbstractActin stress fibers (SFs) play an important role in many cellular functions, including morphological stability, adhesion, and motility. Because of their central role in force transmission, it is important to characterize the mechanical properties of SFs. However, most of the existing studies focus on properties of whole cells or of actin filaments isolated outside cells. In this study, we explored the mechanical properties of individual SFs in living endothelial cells by nanoindentation using an atomic force microscope. Our results demonstrate the pivotal role of SF actomyosin contractile level on mechanical properties. In the same SF, decreasing contractile level with 10μM blebbistatin decreased stiffness, whereas increasing contra...
AFM was used to collect the whole force-deformation cell curves. They provide both the elasticity an...
ivascular endothelial cells. Stress fiber tension is also greatly altered in tumor endothelial cells...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...
AbstractActin stress fibers (SFs) play an important role in many cellular functions, including morph...
Stress fibers are actomyosin-based bundles whose structural and contractile properties underlie nume...
AbstractStress fibers are actomyosin-based bundles whose structural and contractile properties under...
Actin filaments assemble into diverse protrusive and contractile structures to provide force for a n...
AbstractKnowledge of how the elastic stiffness of a cell affects its communication with its environm...
The mechanics of the actin cytoskeleton have a central role in the regulation of cells and tissues, ...
Cell migration plays an important role in many physiological processes such as wound healing, embryo...
We study the correlation between cytoskeleton organization and stiffness of three epithelial breast ...
Mechanical signals from the extracellular microenvironment such as substrate stiffness and compressi...
We study the correlation between cytoskeleton organization and stiffness of three epithelial breast ...
Cell migration is a key process underlying embryogenesis, wound healing, and cancer progression. The...
Cell⁻substrate interaction plays an important role in intracellular behavior and function. Adh...
AFM was used to collect the whole force-deformation cell curves. They provide both the elasticity an...
ivascular endothelial cells. Stress fiber tension is also greatly altered in tumor endothelial cells...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...
AbstractActin stress fibers (SFs) play an important role in many cellular functions, including morph...
Stress fibers are actomyosin-based bundles whose structural and contractile properties underlie nume...
AbstractStress fibers are actomyosin-based bundles whose structural and contractile properties under...
Actin filaments assemble into diverse protrusive and contractile structures to provide force for a n...
AbstractKnowledge of how the elastic stiffness of a cell affects its communication with its environm...
The mechanics of the actin cytoskeleton have a central role in the regulation of cells and tissues, ...
Cell migration plays an important role in many physiological processes such as wound healing, embryo...
We study the correlation between cytoskeleton organization and stiffness of three epithelial breast ...
Mechanical signals from the extracellular microenvironment such as substrate stiffness and compressi...
We study the correlation between cytoskeleton organization and stiffness of three epithelial breast ...
Cell migration is a key process underlying embryogenesis, wound healing, and cancer progression. The...
Cell⁻substrate interaction plays an important role in intracellular behavior and function. Adh...
AFM was used to collect the whole force-deformation cell curves. They provide both the elasticity an...
ivascular endothelial cells. Stress fiber tension is also greatly altered in tumor endothelial cells...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...