Mechanical signals offer a promising way to control cell and tissue development. It has been established that cells constantly probe their mechanical microenvironment and employ force feedback mechanisms to modify themselves and when possible, their environment, to reach a homeostatic state. Thus, a correct mechanical microenvironment (external forces and mechanical properties and shapes of cellular surroundings) is necessary for the proper functioning of cells. In vitro or in the case of nonbiological implants in vivo, where cells are in an artificial environment, addition of the adequate mechanical signals can, therefore, enable the cells to function normally as in vivo. Hence, a wide variety of approaches have been developed to apply mec...
Both biological and engineering approaches have contributed significantly to the recent advance in t...
Living organisms are made up of a multitude of individual cells that are surrounded by biomolecules ...
Our bodies are immensely complex structures, with various systems, organs, and processes that are no...
Mechanical signals offer a promising way to control cell and tissue development. It has been establi...
Extracellular mechanophysical signals from both static substrate cue and dynamic mechanical loading ...
In mammals, mechanics at multiple stages - nucleus to cell to ECM - underlie multiple physiological ...
Determining how biological cells respond to external factors in the environment can aid in understan...
Stem cell fate decisions are driven by a broad array of signals, both chemical and mechanical. Altho...
It is becoming increasingly clear that the mechanical properties of their environment play a crucial...
Stem cell fate decisions are driven by a broad array of signals, both chemical and mechanical. Altho...
Mechanical forces are critical components of the cellular microenvironment and play a pivotal role i...
Mechanical stimuli are important in directing the fate of stem cells; the effects of mechanical stim...
Recent studies have shown that cells not only respond to chemical signals such as growth factors or ...
Cellular biomechanics is an area of study that is receiving more attention as time progresses. The r...
Biochemical signals, such as growth factors, cytokines, and transcription factors are known to play ...
Both biological and engineering approaches have contributed significantly to the recent advance in t...
Living organisms are made up of a multitude of individual cells that are surrounded by biomolecules ...
Our bodies are immensely complex structures, with various systems, organs, and processes that are no...
Mechanical signals offer a promising way to control cell and tissue development. It has been establi...
Extracellular mechanophysical signals from both static substrate cue and dynamic mechanical loading ...
In mammals, mechanics at multiple stages - nucleus to cell to ECM - underlie multiple physiological ...
Determining how biological cells respond to external factors in the environment can aid in understan...
Stem cell fate decisions are driven by a broad array of signals, both chemical and mechanical. Altho...
It is becoming increasingly clear that the mechanical properties of their environment play a crucial...
Stem cell fate decisions are driven by a broad array of signals, both chemical and mechanical. Altho...
Mechanical forces are critical components of the cellular microenvironment and play a pivotal role i...
Mechanical stimuli are important in directing the fate of stem cells; the effects of mechanical stim...
Recent studies have shown that cells not only respond to chemical signals such as growth factors or ...
Cellular biomechanics is an area of study that is receiving more attention as time progresses. The r...
Biochemical signals, such as growth factors, cytokines, and transcription factors are known to play ...
Both biological and engineering approaches have contributed significantly to the recent advance in t...
Living organisms are made up of a multitude of individual cells that are surrounded by biomolecules ...
Our bodies are immensely complex structures, with various systems, organs, and processes that are no...