Mechanical stress has been proven to be an important factor interfering with many biological functions through mechano-sensitive elements within the cells. Despite the current interest in mechano-transduction, the development of suitable experimental tools is still characterized by the strife to design a compact device that allows high-magnification real-time imaging of the stretched cells, thus enabling to follow the dynamics of cellular response to mechanical stimulations. Here we present a microfluidic multi-layered chip that allows mechanical deformation of adherent cells maintaining a fixed focal plane, while allowing independent control of the soluble microenvironment. The device was optimized with the aid of FEM simulation and fully ...
Organ-on-a-chip (OOC) uses the microfluidic 3D cell culture principle to reproduce organ-or tissue-l...
Determining how biological cells respond to external factors in the environment can aid in understan...
Determining how biological cells respond to external factors in the environment can aid in understan...
In the recent decades, it has become widely known that the physiological changes in cells can be ind...
In the recent decades, it has become widely known that the physiological changes in cells can be ind...
Mechanical stimuli interfere with cellular behaviors under many physiological conditions. To underst...
Multi-array cell stretching platform for high magnification real-time imaging Aims: This paper repor...
In this paper, we present an array of tunable microlenses on polydimethylsiloxane ( PDMS) microfluid...
Movement is essential to our quality of life, and regulates cell behavior via mechanical stimulation...
Living cells are a fascinating demonstration of nature’s most intricate and well-coordinated microme...
This work presents a simple membrane-based microfluidic chip for the investigation of proliferation ...
The physical forces to which living cells are most commonly exposed are fluid shear, pressure, and s...
Cells and tissues in our body are continuously subjected to mechanical stress. Mechanical stimuli, s...
Cells and tissues in our body are continuously subjected to mechanical stress. Mechanical stimuli, s...
A multi-layered polydimethylsiloxane microfluidic device with an integrated suspended membrane has b...
Organ-on-a-chip (OOC) uses the microfluidic 3D cell culture principle to reproduce organ-or tissue-l...
Determining how biological cells respond to external factors in the environment can aid in understan...
Determining how biological cells respond to external factors in the environment can aid in understan...
In the recent decades, it has become widely known that the physiological changes in cells can be ind...
In the recent decades, it has become widely known that the physiological changes in cells can be ind...
Mechanical stimuli interfere with cellular behaviors under many physiological conditions. To underst...
Multi-array cell stretching platform for high magnification real-time imaging Aims: This paper repor...
In this paper, we present an array of tunable microlenses on polydimethylsiloxane ( PDMS) microfluid...
Movement is essential to our quality of life, and regulates cell behavior via mechanical stimulation...
Living cells are a fascinating demonstration of nature’s most intricate and well-coordinated microme...
This work presents a simple membrane-based microfluidic chip for the investigation of proliferation ...
The physical forces to which living cells are most commonly exposed are fluid shear, pressure, and s...
Cells and tissues in our body are continuously subjected to mechanical stress. Mechanical stimuli, s...
Cells and tissues in our body are continuously subjected to mechanical stress. Mechanical stimuli, s...
A multi-layered polydimethylsiloxane microfluidic device with an integrated suspended membrane has b...
Organ-on-a-chip (OOC) uses the microfluidic 3D cell culture principle to reproduce organ-or tissue-l...
Determining how biological cells respond to external factors in the environment can aid in understan...
Determining how biological cells respond to external factors in the environment can aid in understan...