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.

Features Partner Sites Information LinkXpress
Sign In
Advertise with Us
Sekisui Diagnostics UK Ltd.

Download Mobile App




Novel Skin Patch Offers Solution to Antibiotic Resistance

By HospiMedica International staff writers
Posted on 18 Jan 2018
Print article
Image: An example of a hydrogel microneedle patch (Photo courtesy of Ryan Donnelly/QUB).
Image: An example of a hydrogel microneedle patch (Photo courtesy of Ryan Donnelly/QUB).
A new study describes how a microarray patch that administers drugs directly into the bloodstream could provide an answer to the antibiotic resistance crisis.

Under development at Queen's University Belfast (QUB; United Kingdom), the unique antibiotic patch containing multiple 400 μm hydrogel-forming microneedle arrays that painlessly pierce the skin, turning into a gel-like material that consistently keeps the micropores open at an approximate 200 μm diameter. This provides a new avenue for delivering antibiotics directly into the bloodstream, thus bypassing the antibiotic-resistant gut bacteria and extending the lifespan of currently available antibiotics.

According to the researchers, oral administration of antibiotics contributes significantly to development of antibiotic resistance, since small quantities of the drug often finds its way into the colon, a perfect breeding ground for imminent drug-resistant bacteria. Injection of the antibiotic directly into the blood stream can significantly reduce the development of resistance amongst gut bacteria relative to oral administration, especially if the antibiotic is predominantly excreted through the kidneys. The study was published on December 2, 2017, in Journal of Controlled Release.

“For the first time, we’re in control of the rate at which medicine goes into the skin. We hope to show that this unique antibiotic patch prevents resistance development,” said study co-author professor of pharmaceutical technology Ryan Donnelly, PhD. “If we are successful, this approach will significantly extend the lifespan of existing antibiotics, allowing time for development of the next generation of antibiotics. In doing so, this work has the potential to save many lives.”

Microneedles as a technique for drug delivery enhancement were primarily designed for facilitating percutaneous drug delivery. Since the emergence of solid microneedles two decades ago, which simply pierced the stratum corneum in order to enhance topical drug delivery, the technique has progressed in various modifications such as hollow, coated, dissolving, and hydrogel forming microneedles. In their turn, the modifications have resulted in new mechanisms of drug delivery enhancement, followed by an expansion of applicability range in terms of targeted tissues and organs.

Related Links:
Queen's University Belfast

Gold Member
Solid State Kv/Dose Multi-Sensor
AGMS-DM+
Gold Member
Disposable Protective Suit For Medical Use
Disposable Protective Suit For Medical Use
Silver Member
Compact 14-Day Uninterrupted Holter ECG
NR-314P
New
Multilevel Self-Loading Stretcher
CARRERA XL

Print article

Channels

Surgical Techniques

view channel
Image: Computational models can predict future structural integrity of a child’s heart valves (Photo courtesy of 123RF)

Computational Models Predict Heart Valve Leakage in Children

Hypoplastic left heart syndrome is a serious birth defect in which the left side of a baby’s heart is underdeveloped and ineffective at pumping blood, forcing the right side to handle the circulation to... Read more

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
Copyright © 2000-2024 Globetech Media. All rights reserved.