Mechanical stretch under both physiological (breathing) and pathophysiological (ventilator-induced) conditions is known to significantly impact all cellular compartments in the lung, thereby playing a pivotal role in lung growth, regeneration and disease development. In order to evaluate the impact of mechanical forces on the cellular level, in vitro models using lung cells on stretchable membranes have been developed. Only recently have some of these cell-stretching devices become suitable for air–liquid interface cell cultures, which is required to adequately model physiological conditions for the alveolar epithelium. To reach this goal, a multi-functional membrane for cell growth balancing biophysical and mechanical properties is critica...
A current approach to obtain bioengineered lungs as a future alternative for transplantation is base...
Respiratory tract specific cell populations, or tissue engineered in vitro grown human lung, have th...
International audienceWe report on the development of a new model of alveolar air-tissue interface o...
Mechanical stretch under both physiological (breathing) and pathophysiological (ventilator-induced) ...
Chronic respiratory diseases are among the leading causes of death worldwide, but only symptomatic t...
Evolution has endowed the lung with exceptional design providing a large surface area for gas exchan...
Evolution has endowed the lung with exceptional design providing a large surface area for gas exchan...
Chronic respiratory diseases are among the leading causes of death worldwide, but only symptomatic t...
Breathing exposes lung cells to continual mechanical stimuli, which is part of the microenvironmenta...
Breathing exposes lung cells to continual mechanical stimuli, which is part of the microenvironmenta...
Engineering tools and techniques greatly expand the scope of biological studies, permitting investig...
Inspired by the increasing burden of lung associated diseases in society and an growing demand to ac...
We describe the engineering design, computational modeling, and empirical performance of a moving ai...
We describe the engineering design, computational modeling, and empirical performance of a moving ai...
We report about a lung-on-chip array that mimics the pulmonary parenchymal environment, including th...
A current approach to obtain bioengineered lungs as a future alternative for transplantation is base...
Respiratory tract specific cell populations, or tissue engineered in vitro grown human lung, have th...
International audienceWe report on the development of a new model of alveolar air-tissue interface o...
Mechanical stretch under both physiological (breathing) and pathophysiological (ventilator-induced) ...
Chronic respiratory diseases are among the leading causes of death worldwide, but only symptomatic t...
Evolution has endowed the lung with exceptional design providing a large surface area for gas exchan...
Evolution has endowed the lung with exceptional design providing a large surface area for gas exchan...
Chronic respiratory diseases are among the leading causes of death worldwide, but only symptomatic t...
Breathing exposes lung cells to continual mechanical stimuli, which is part of the microenvironmenta...
Breathing exposes lung cells to continual mechanical stimuli, which is part of the microenvironmenta...
Engineering tools and techniques greatly expand the scope of biological studies, permitting investig...
Inspired by the increasing burden of lung associated diseases in society and an growing demand to ac...
We describe the engineering design, computational modeling, and empirical performance of a moving ai...
We describe the engineering design, computational modeling, and empirical performance of a moving ai...
We report about a lung-on-chip array that mimics the pulmonary parenchymal environment, including th...
A current approach to obtain bioengineered lungs as a future alternative for transplantation is base...
Respiratory tract specific cell populations, or tissue engineered in vitro grown human lung, have th...
International audienceWe report on the development of a new model of alveolar air-tissue interface o...