International audienceCells need to act upon the elastic extracellular matrix and against steric constraints when proliferating in a confined environment, leading to the build-up, at the population level, of a compressive, growth-induced, mechanical stress. Compressive mechanical stresses are ubiquitous to any cell population growing in a spatially-constrained environment, such as microbes or most solid tumors. They remain understudied, in particular in microbial populations, due to the lack of tools available to researchers. Here, we present various mechano-chemostats: microfluidic devices developed to study microbes under pressure. A mechano-chemostat permits researchers to control the intensity of growth-induced pressure through the cont...
Mechanical stimuli interfere with cellular behaviors under many physiological conditions. To underst...
Cells in our body experience different types of stress including compression, tension, and shear. It...
Single cell organisms such as yeast can survive in very different environments thanks to a polysacch...
International audienceCells that proliferate within a confined environment build up mechanical compr...
Cells that proliferate within a confined environment build up mechanical compressive stress. For exa...
In this work we report a microfluidic cell-culture platform with an integrated, actively-modulated a...
Evidence continues to emerge that cancer is not only a disease of genetic mutations, but also of alt...
Evidence continues to emerge that cancer is not only a disease of genetic mutations, but also of al...
International audienceCells that grow in confined spaces eventually build up mechanical compressive ...
Compressive solid stress correlates with changes in the mechanical properties of developing confined...
The physical forces to which living cells are most commonly exposed are fluid shear, pressure, and s...
International audienceThe surrounding microenvironment limits tumour expansion, imposing a compressi...
[[abstract]]In vitro devices offer more numerous methods than in vivo models to investigate how cell...
Mechanotransduction can enhance cell cultures when its substrate is subjected to dynamic strain. Thi...
Adaptabilities of mammalian cells in physiological confinements of the vasculature and tissue-matric...
Mechanical stimuli interfere with cellular behaviors under many physiological conditions. To underst...
Cells in our body experience different types of stress including compression, tension, and shear. It...
Single cell organisms such as yeast can survive in very different environments thanks to a polysacch...
International audienceCells that proliferate within a confined environment build up mechanical compr...
Cells that proliferate within a confined environment build up mechanical compressive stress. For exa...
In this work we report a microfluidic cell-culture platform with an integrated, actively-modulated a...
Evidence continues to emerge that cancer is not only a disease of genetic mutations, but also of alt...
Evidence continues to emerge that cancer is not only a disease of genetic mutations, but also of al...
International audienceCells that grow in confined spaces eventually build up mechanical compressive ...
Compressive solid stress correlates with changes in the mechanical properties of developing confined...
The physical forces to which living cells are most commonly exposed are fluid shear, pressure, and s...
International audienceThe surrounding microenvironment limits tumour expansion, imposing a compressi...
[[abstract]]In vitro devices offer more numerous methods than in vivo models to investigate how cell...
Mechanotransduction can enhance cell cultures when its substrate is subjected to dynamic strain. Thi...
Adaptabilities of mammalian cells in physiological confinements of the vasculature and tissue-matric...
Mechanical stimuli interfere with cellular behaviors under many physiological conditions. To underst...
Cells in our body experience different types of stress including compression, tension, and shear. It...
Single cell organisms such as yeast can survive in very different environments thanks to a polysacch...