Bionic approach for the prevention of exit-site infections of percutaneous devices

Author:

Großhauser Johannes,Reiter Katja,Große-Siestrup Christian,Kikhney Judith,Kertzscher Ulrich,Affeld Klaus

Abstract

AbstractExit-site infections remain one of the main complications for percutaneous devices, such as catheters for peritoneal dialysis or drivelines for ventricular assist devices. Many efforts have been made to create a biological seal, yet without long-term success. This study investigates a new kind of percutaneous device which is coated with an extricable polymeric membrane. The bionic approach applies the naturally outwards directed growth of skin structures to technology: by pulling the protective membrane it slowly grows out of the body and a developing sulcus is exposed to dry air and an infection is avoided. In a feasibility study this kind of device was shown to reduce the rate of infection. To further investigate these devices, they were implanted in the skin of goats and observed for a period of more than 500 days. The membranes were pulled with a force of up to 2 N and the resulting movement was recorded. When being pulled, the membranes moved 0.4–0.9 mm per week, showing that the application of a continuously acting, defined force on the protective membrane causes the desired slow movement.

Publisher

Walter de Gruyter GmbH

Subject

Biomedical Engineering

Reference40 articles.

1. Dermatologie und Venerologie Für Das Studium Limited;Fritsch,2009

2. devices a of applications problems possible solutions Expert Devices;Affeld;review Rev Med,2012

3. von Applications and failure modes of percutaneous devices a;Recum;review J Biomed Mater Res,1984

4. randomized controlled trial of coiled versus straight swan - neck Tenckhoff catheters in peritoneal dialysis patients;Johnson;Am J Kidney Dis,2006

5. Nierenersatztherapie in Deutschland QuaSi Niere gGmbH ISBN;Frei,2008

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