Cell mechanotransduction is an area of intense research focus. Until now, very limited tools have existed to study how cells respond to changes in the extracellular matrix beyond, for example, mechanical deformation studies and twisting cytometry. However, emerging are a range of elastic, viscoelastic and even purely viscous materials that deform and dissipate on cellular length and timescales. This article reviews developments in these materials, typically translating from 2D model surfaces to 3D microenvironments and explores how cells interact with them. Specifically, it focuses on emerging concepts such as the molecular clutch model, how different extracellular matrix proteins engage the clutch under viscoelastic‐stress relaxation condi...
The cell microenvironment (ME) varies among a wide range of tissues and influences critical cell pro...
The cell microenvironment (ME) varies among a wide range of tissues and influences critical cell pro...
Spatiotemporal changes in viscoelasticity are a key component of the morphogenesis of living systems...
Substantial research over the past two decades has established that extracellular matrix (ECM) elast...
Cell response to matrix rigidity has been explained by the mechanical properties of the actin-talin-...
Cell response to matrix rigidity has been explained by the mechanical properties of the actin-talin-...
Cell response to matrix rigidity has been explained by the mechanical properties of the actin-talin-...
The extracellular matrix (ECM) is a scaffold of molecules, constructed and maintained by cells, that...
Living cells are constantly exposed to mechanical stimuli arising from the surrounding extracellular...
Living cells are constantly exposed to mechanical stimuli arising from the surrounding extracellular...
This work addresses the mechanisms underlying the interfacial interactions between cells and a surro...
This is the final version of the article. Available from the publisher via the DOI in this record.Al...
In mammals, mechanics at multiple stages - nucleus to cell to ECM - underlie multiple physiological ...
The cell microenvironment (ME) varies among a wide range of tissues and influences critical cell pro...
The cell microenvironment (ME) varies among a wide range of tissues and influences critical cell pro...
The cell microenvironment (ME) varies among a wide range of tissues and influences critical cell pro...
The cell microenvironment (ME) varies among a wide range of tissues and influences critical cell pro...
Spatiotemporal changes in viscoelasticity are a key component of the morphogenesis of living systems...
Substantial research over the past two decades has established that extracellular matrix (ECM) elast...
Cell response to matrix rigidity has been explained by the mechanical properties of the actin-talin-...
Cell response to matrix rigidity has been explained by the mechanical properties of the actin-talin-...
Cell response to matrix rigidity has been explained by the mechanical properties of the actin-talin-...
The extracellular matrix (ECM) is a scaffold of molecules, constructed and maintained by cells, that...
Living cells are constantly exposed to mechanical stimuli arising from the surrounding extracellular...
Living cells are constantly exposed to mechanical stimuli arising from the surrounding extracellular...
This work addresses the mechanisms underlying the interfacial interactions between cells and a surro...
This is the final version of the article. Available from the publisher via the DOI in this record.Al...
In mammals, mechanics at multiple stages - nucleus to cell to ECM - underlie multiple physiological ...
The cell microenvironment (ME) varies among a wide range of tissues and influences critical cell pro...
The cell microenvironment (ME) varies among a wide range of tissues and influences critical cell pro...
The cell microenvironment (ME) varies among a wide range of tissues and influences critical cell pro...
The cell microenvironment (ME) varies among a wide range of tissues and influences critical cell pro...
Spatiotemporal changes in viscoelasticity are a key component of the morphogenesis of living systems...