Mechanical stimulus is of upmost importance in tissues developmental and regeneration processes as well as in maintaining body homeostasis. Classical physiological reactions encompass an increase of blood vessel diameter upon exposure to high blood pressure, or the expansion of cortical bone after continuous high-impact exercise. At a cellular level, it is well established that extracellular stiffness, topography, and remote magnetic actuation are instructive mechanical signals for stem cell differentiation. Based on this, biomaterials and their properties can be designed to act as true stem cell regulators, eventually leading to important advances in conventional tissue engineering techniques. This review identifies the latest adva...
Abstract: Mechanical cues are employed to promote stem cell differentiation and functional tissue fo...
During the last decade, the possibility to remotely control intracellular pathways using physical to...
© AlphaMed Press. Bone requires dynamic mechanical stimulation to form and maintain functional tissu...
Mechanical stimulus is of upmost importance in tissues developmental and regeneration processes as w...
Magnetic nanoparticles (MNP) are extremely versatile tools in bioengineering and medicine with diver...
Mechanical cues are employed to promote stem cell differentiation and functional tissue formation in...
First published: 05 December 2019Tendon tissues connect muscle to bone allowing the transmission of ...
The role of biomechanical stimuli, or mechanotransduction, in normal bone homeostasis and repair is ...
: Mechanical forces play a fundamental role in cellular dynamics from the molecular level to the est...
Mechanical cues play important roles in controlling cell function and have implications fo1' generat...
This work reports on magnetoelectric biomaterials suitable for effective proliferation and different...
The role of biomechanical stimuli, or mechanotransduction, in normal bone homeostasis and repair is ...
Mechanical cues are employed to promote stem cell differentiation and functional tissue formation in...
Cells are able to sense and react to their physical environment by translating a mechanical cue into...
Tendons are mechanosensitive tissues that connect and transmit the forces generated by muscles to bo...
Abstract: Mechanical cues are employed to promote stem cell differentiation and functional tissue fo...
During the last decade, the possibility to remotely control intracellular pathways using physical to...
© AlphaMed Press. Bone requires dynamic mechanical stimulation to form and maintain functional tissu...
Mechanical stimulus is of upmost importance in tissues developmental and regeneration processes as w...
Magnetic nanoparticles (MNP) are extremely versatile tools in bioengineering and medicine with diver...
Mechanical cues are employed to promote stem cell differentiation and functional tissue formation in...
First published: 05 December 2019Tendon tissues connect muscle to bone allowing the transmission of ...
The role of biomechanical stimuli, or mechanotransduction, in normal bone homeostasis and repair is ...
: Mechanical forces play a fundamental role in cellular dynamics from the molecular level to the est...
Mechanical cues play important roles in controlling cell function and have implications fo1' generat...
This work reports on magnetoelectric biomaterials suitable for effective proliferation and different...
The role of biomechanical stimuli, or mechanotransduction, in normal bone homeostasis and repair is ...
Mechanical cues are employed to promote stem cell differentiation and functional tissue formation in...
Cells are able to sense and react to their physical environment by translating a mechanical cue into...
Tendons are mechanosensitive tissues that connect and transmit the forces generated by muscles to bo...
Abstract: Mechanical cues are employed to promote stem cell differentiation and functional tissue fo...
During the last decade, the possibility to remotely control intracellular pathways using physical to...
© AlphaMed Press. Bone requires dynamic mechanical stimulation to form and maintain functional tissu...