A microfluidic cell stretch device was developed to investigate the effects of stretching stress on pulmonary artery smooth muscle cell (PASMC) proliferation in pulmonary arterial hypertension (PAH). The microfluidic device harbors upper cell culture and lower control channels, separated by a stretchable poly(dimethylsiloxane) membrane that acts as a cell culture substrate. The lower channel inlet was connected to a vacuum pump via a digital switch-controlled solenoid valve. For cyclic stretch at heartbeat frequency (80 bpm), the open or close time for each valve was set to 0.38 s. Proliferation of normal PASMCs and those obtained from patients was enhanced by the circumferential stretching stimulation. This is the first report showing pati...
A novel, inexpensive, and uniformly characterized uniaxial stretch device was developed to study t...
Vascular smooth muscle cells regulate blood flow by contracting and relaxing blood vessels. Vascular...
The success of cardiovascular tissue engineering (TE) strategies largely depends on the mechanical e...
Despite extensive past lung cancer research, there still lacks an understanding of the relationship ...
Vascular hypertrophy has been identified as an important process in the development of essential hyp...
During the progression of pulmonary arterial hypertension (PAH), the smooth muscle of the pulmonary ...
This paper introduces a compact mechanical stimulation device suitable for applications to study cel...
Abstract The pulsatile nature of blood flow exposes vascular smooth muscle cells (VSMC...
In the recent decades, it has become widely known that the physiological changes in cells can be ind...
Mechanical stretch plays an important role in the control of cardiomyocyte behavior, as well as in t...
Bone marrow mesenchymal stem cells (MSCs) are capable of differentiating into a variety of cell type...
Mechanical stress reduces podocyte proliferation in vitro.BackgroundMechanical stretch, a consequenc...
Vascular endothelial cells are subjected to hemodynamic forces such as mechanical stretch due to the...
Biological cells are constantly subjected to mechanical forces such as tension, compression and shea...
The proposal of the role of mechanical forces as a localizing factor of atherosclerosis has led many...
A novel, inexpensive, and uniformly characterized uniaxial stretch device was developed to study t...
Vascular smooth muscle cells regulate blood flow by contracting and relaxing blood vessels. Vascular...
The success of cardiovascular tissue engineering (TE) strategies largely depends on the mechanical e...
Despite extensive past lung cancer research, there still lacks an understanding of the relationship ...
Vascular hypertrophy has been identified as an important process in the development of essential hyp...
During the progression of pulmonary arterial hypertension (PAH), the smooth muscle of the pulmonary ...
This paper introduces a compact mechanical stimulation device suitable for applications to study cel...
Abstract The pulsatile nature of blood flow exposes vascular smooth muscle cells (VSMC...
In the recent decades, it has become widely known that the physiological changes in cells can be ind...
Mechanical stretch plays an important role in the control of cardiomyocyte behavior, as well as in t...
Bone marrow mesenchymal stem cells (MSCs) are capable of differentiating into a variety of cell type...
Mechanical stress reduces podocyte proliferation in vitro.BackgroundMechanical stretch, a consequenc...
Vascular endothelial cells are subjected to hemodynamic forces such as mechanical stretch due to the...
Biological cells are constantly subjected to mechanical forces such as tension, compression and shea...
The proposal of the role of mechanical forces as a localizing factor of atherosclerosis has led many...
A novel, inexpensive, and uniformly characterized uniaxial stretch device was developed to study t...
Vascular smooth muscle cells regulate blood flow by contracting and relaxing blood vessels. Vascular...
The success of cardiovascular tissue engineering (TE) strategies largely depends on the mechanical e...