Skin is a critical organ that plays a crucial role in defending the internal organs of the body. For this reason, extensive work has gone into creating artificial models of the epidermis for in vitro skin toxicity tests. These tissue models, called reconstructed human epidermis (RhE), are used by researchers in the pharmaceutical, cosmetic, and environmental arenas to evaluate skin toxicity upon exposure to xenobiotics. Here, we present a label-free solution that leverages the use of the intelligent mobile lab for in vitro diagnostics (IMOLA-IVD), a noninvasive, sensor-based platform, to monitor the transepithelial electrical resistance (TEER) of RhE models and adherent cells cultured on porous membrane inserts. Murine fibroblasts cultured ...
Skin has the potential to provide an important noninvasive route for diagnostic monitoring of human ...
Skin equivalents and skin explants are widely used for dermal penetration studies in the pharmacolog...
A bio-impedance chip has been developed for real-time monitoring of the kinetics of epithelial cell ...
Skin is a critical organ that plays a crucial role in defending the internal organs of the body. For...
The human skin is involved in protecting the inner body from constant exposure to outer environmenta...
The human skin is involved in protecting the inner body from constant exposure to outer environmenta...
Over the last few years, several advances have been made toward the development and production of in...
Biological barriers are essential for the maintenance of organ homeostasis and their dysfunction is ...
The skin is the largest and most exposed organ in the human body. Not only it is involved in numerou...
Organs-on-chips, in vitro models involving the culture of (human) tissues inside microfluidic device...
Despite advances in the development of in-vitro-tissue-models such as reconstructed human epidermis ...
Development of drugs and cosmetics for topical application require safety tests in skin models. Howe...
Sensor-based cellular microphysiometry is a technique that allows non-invasive, label-free, real-tim...
Transepithelial/transendothelial electrical resistance (TEER) measurements can be applied in organ-o...
Overcoming the challenges that the pharmaceutical industry currently faces requires the development ...
Skin has the potential to provide an important noninvasive route for diagnostic monitoring of human ...
Skin equivalents and skin explants are widely used for dermal penetration studies in the pharmacolog...
A bio-impedance chip has been developed for real-time monitoring of the kinetics of epithelial cell ...
Skin is a critical organ that plays a crucial role in defending the internal organs of the body. For...
The human skin is involved in protecting the inner body from constant exposure to outer environmenta...
The human skin is involved in protecting the inner body from constant exposure to outer environmenta...
Over the last few years, several advances have been made toward the development and production of in...
Biological barriers are essential for the maintenance of organ homeostasis and their dysfunction is ...
The skin is the largest and most exposed organ in the human body. Not only it is involved in numerou...
Organs-on-chips, in vitro models involving the culture of (human) tissues inside microfluidic device...
Despite advances in the development of in-vitro-tissue-models such as reconstructed human epidermis ...
Development of drugs and cosmetics for topical application require safety tests in skin models. Howe...
Sensor-based cellular microphysiometry is a technique that allows non-invasive, label-free, real-tim...
Transepithelial/transendothelial electrical resistance (TEER) measurements can be applied in organ-o...
Overcoming the challenges that the pharmaceutical industry currently faces requires the development ...
Skin has the potential to provide an important noninvasive route for diagnostic monitoring of human ...
Skin equivalents and skin explants are widely used for dermal penetration studies in the pharmacolog...
A bio-impedance chip has been developed for real-time monitoring of the kinetics of epithelial cell ...