We use cookies to understand how you use our site and to improve your experience. This includes personalizing content and advertising. To learn more, click here. By continuing to use our site, you accept our use of cookies. Cookie Policy.

HospiMedica

Download Mobile App
Recent News AI Critical Care Surgical Techniques Patient Care Health IT Point of Care Business Focus

Ground-Breaking Medical Device Coating Technology Eliminates Implant-Associated Infections

By HospiMedica International staff writers
Posted on 03 Aug 2023
Print article
Image: The antimicrobial coating can be incorporated into medical devices and implants to prevent infection (Photo courtesy of SafeCoat)
Image: The antimicrobial coating can be incorporated into medical devices and implants to prevent infection (Photo courtesy of SafeCoat)

Infections associated with medical devices account for a quarter of all healthcare-related infections. They present a significant challenge for treatment using traditional antibiotics due to the growth and adherence of bacterial biofilms on the device's surface. Catheters, especially central venous catheters (CVCs), are often implicated in severe infections, accounting for about 90% of catheter-induced serious infections. These infections not only pose grave health risks to patients but also result in high costs for hospitals, with the cost per infection estimated in the thousands of US dollars, pushing the annual expense for caring for these patients to billions. Now, a ground-breaking medical device coating technology has the potential to act as a 'silver bullet' by eliminating bacteria and preventing infection in patients with implanted medical devices.

Asep Inc. (Vancouver, BC, Canada) has secured an exclusive global licensing agreement with the University of British Columbia (UBC, Vancouver, BC, Canada) via its recently acquired subsidiary, SafeCoat Medical Inc. (Victoria, BC, Canada). The agreement grants Asep the rights to use, develop, and commercialize the innovative medical device coating technology. This technology combines two critical elements to combat device-related infections that inflate patient costs and necessitate device replacement. The coating features an antimicrobial peptide conjugated to the device's surface to eliminate bacteria while anti-fouling self-assembling polymers prevent dead bacteria from sticking to the device surface and masking the killing effect. The coating technology can be applied to a wide range of surfaces, such as glass, plastic, and titanium, and used on surgical implants, catheters, pacemakers, stents, prosthetic limbs and organs, and contact lenses. The feasibility of this technology has been demonstrated in animal models.

"We are excited to take this promising new technology forward through SafeCoat Medical and the exclusive worldwide license from UBC," said Tim Murphy, Asep Inc.'s Chief Operating Officer. "We anticipate that this transaction will create significant new market opportunities as we tackle the problem of maintaining sterile surfaces on medical devices and implants."

Related Links:
Asep Inc.
University of British Columbia 
SafeCoat Medical Inc.

Platinum Member
STI Test
Vivalytic Sexually Transmitted Infection (STI) Array
Gold Member
Temperature Monitor
ThermoScan Temperature Monitoring Unit
OR Table Accessory
Angular Accessory Rail
Portable Jaundice Management Device
Nymphaea

Print article

Channels

Patient Care

view channel
Image: The newly-launched solution can transform operating room scheduling and boost utilization rates (Photo courtesy of Fujitsu)

Surgical Capacity Optimization Solution Helps Hospitals Boost OR Utilization

An innovative solution has the capability to transform surgical capacity utilization by targeting the root cause of surgical block time inefficiencies. Fujitsu Limited’s (Tokyo, Japan) Surgical Capacity... Read more

Health IT

view channel
Image: First ever institution-specific model provides significant performance advantage over current population-derived models (Photo courtesy of Mount Sinai)

Machine Learning Model Improves Mortality Risk Prediction for Cardiac Surgery Patients

Machine learning algorithms have been deployed to create predictive models in various medical fields, with some demonstrating improved outcomes compared to their standard-of-care counterparts.... Read more

Point of Care

view channel
Image: The Quantra Hemostasis System has received US FDA special 510(k) clearance for use with its Quantra QStat Cartridge (Photo courtesy of HemoSonics)

Critical Bleeding Management System to Help Hospitals Further Standardize Viscoelastic Testing

Surgical procedures are often accompanied by significant blood loss and the subsequent high likelihood of the need for allogeneic blood transfusions. These transfusions, while critical, are linked to various... Read more