We have developed an in vitro culture system composed of organotypic human skin explants interfaced with titanium rods attached to a fluid pump. This device was designed to mimic the process of natural mucosa delivery at the point where a rigid, permanent object penetrates living skin. Full thickness human breast skin explants discarded from surgeries were cultured at different time points at the air-liquid interface. The skin specimens were punctured to fit at the bottom of hollow cylindrical titanium rods. Sodium lauryl sulfate (SLS) was delivered continuously to the specimens through the rods by using an attached fluid pump. Histological analysis of the skin explants as well as no-pump controls was then performed. Our results show substa...
Intraosseous transcutaneous amputation prostheses may be able to overcome the problems that stem fro...
Tissue engineering is becoming an important field for the development of new tissues in vitro for re...
Organs-on-a-chip systems are biomimetic devices containing microfluidic channels and chambers popula...
This paper shows the technical feasibility of using a modified double lumen catheter for the deliver...
Induced tissue regeneration around percutaneous medical implants could be a useful method to prevent...
© 2017 Dr Gilman StynesAll medical devices that pass through skin are plagued by infection and other...
Abstract: Induced tissue regeneration around percutaneous medical implants could be a useful method ...
Percutaneous devices are a key technology in clinical practice, used to connect internal organs to e...
The interface between synthetic percutaneous devices and skin is a common area for bacterial infecti...
The development of in vitro and ex vivo models to mimic human illness is important not only for scie...
Dear Editor: The recent awareness that skin plays many important roles, such as a physical and immun...
A bioreactor has been developed for the production of tissue-engineered skin at an air–liquid interf...
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...
Intraosseous transcutaneous amputation prostheses may be able to overcome the problems that stem fro...
Tissue engineering is becoming an important field for the development of new tissues in vitro for re...
Organs-on-a-chip systems are biomimetic devices containing microfluidic channels and chambers popula...
This paper shows the technical feasibility of using a modified double lumen catheter for the deliver...
Induced tissue regeneration around percutaneous medical implants could be a useful method to prevent...
© 2017 Dr Gilman StynesAll medical devices that pass through skin are plagued by infection and other...
Abstract: Induced tissue regeneration around percutaneous medical implants could be a useful method ...
Percutaneous devices are a key technology in clinical practice, used to connect internal organs to e...
The interface between synthetic percutaneous devices and skin is a common area for bacterial infecti...
The development of in vitro and ex vivo models to mimic human illness is important not only for scie...
Dear Editor: The recent awareness that skin plays many important roles, such as a physical and immun...
A bioreactor has been developed for the production of tissue-engineered skin at an air–liquid interf...
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...
Intraosseous transcutaneous amputation prostheses may be able to overcome the problems that stem fro...
Tissue engineering is becoming an important field for the development of new tissues in vitro for re...
Organs-on-a-chip systems are biomimetic devices containing microfluidic channels and chambers popula...