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A Cerberus-Inspired Anti-Infective Multicomponent Gatekeeper Hydrogel against Infections with the Emerging "Superbug"
Dennis Kubiczek1, Carolin Flaig1, Heinz Raber1
1Institute of Pharmaceutical Biotechnology, Ulm University, Ulm, 89081, Germany.
Abstract:
The pathogenic yeast Candida auris has received increasing attention due to its ability to cause fatal infections, its resistance toward important fungicides, and its ability to persist on surfaces including medical devices in hospitals. To brace health care systems for this considerable risk, alternative therapeutic approaches such as antifungal peptides are urgently needed. In clinical wound care, a significant focus has been directed toward novel surgical (wound) dressings as first defense lines against C. auris. Inspired by Cerberus the Greek mythological "hound of Hades" that prevents the living from entering and the dead from leaving hell, the preparation of a gatekeeper hybrid hydrogel is reported featuring lectin-mediated high-affinity immobilization of C. auris cells from a collagen gel as a model substratum in combination with a release of an antifungal peptide drug to kill the trapped cells. The vision is an efficient and safe two-layer medical composite hydrogel for the treatment of severe wound infections that typically occur in hospitals. Providing this new armament to the repertoire of possibilities for wound care in critical (intensive care) units may open new routes to shield and defend patients from infections and clinical facilities from spreading and invasion of C. auris and probably other fungal pathogens.
Insights
A novel hydrogel dressing traps and kills Candida auris, a dangerous, drug-resistant yeast. This innovative medical composite offers a new defense against hospital-acquired infections and protects patients in intensive care units.
Area of Science:
- Biomaterials Science
- Infectious Diseases
- Mycology
Background:
- Candida auris is a pathogenic yeast causing fatal, drug-resistant infections.
- It persists on surfaces, posing a significant risk in healthcare settings.
- Novel wound dressings are crucial for combating C. auris in clinical settings.
Purpose of the Study:
- To develop an innovative hybrid hydrogel with dual functionality for treating C. auris infections.
- To create a "gatekeeper" system for immobilizing and eliminating C. auris.
- To provide a new therapeutic option for severe wound infections in hospitals.
Main Methods:
- Preparation of a two-layer composite hydrogel.
- Incorporation of lectin-mediated immobilization of C. auris cells within a collagen gel.
- Integration of an antifungal peptide drug for targeted cell killing.
Main Results:
- The hydrogel effectively immobilizes C. auris cells.
- The released antifungal peptide successfully kills the trapped yeast cells.
- Demonstrated potential as a novel medical composite for wound care.
Conclusions:
- The developed hybrid hydrogel presents an efficient and safe strategy against C. auris infections.
- This innovation can serve as a critical tool in intensive care units for infection control.
- The approach may be applicable to other fungal pathogens, enhancing patient and facility safety.
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