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Cholic-Acid-Derived Amphiphiles Can Prevent and Degrade Fungal Biofilms
Ragini Gupta1, Jyoti Thakur2, Sanjay Pal1,3
1Laboratory of Nanotechnology and Chemical Biology, Regional Centre for Biotechnology, Third Milestone Faridabad-Gurgaon Expressway, NCR Biotech Science Cluster, Faridabad 121001, Haryana, India.
New cholic acid-based amphiphiles effectively target fungal membranes, preventing and degrading biofilms. These compounds offer a promising alternative to combat drug-resistant Candida infections in medical devices and wound healing.
Area of Science:
- Mycology
- Medicinal Chemistry
- Biomaterials
Background:
- Fungal infections, particularly from Candida species, pose significant health risks due to biofilm formation on medical devices, leading to organ damage.
- Candida species exhibit resistance to host immune responses and existing antifungal drugs, necessitating novel therapeutic strategies.
- Targeting fungal cell membranes presents a viable alternative approach to combatting these infections.
Purpose of the Study:
- To screen cholic acid-derived amphiphiles as potential membrane-targeting agents against Candida strains.
- To evaluate the structure-activity relationship, efficacy, and safety of these novel amphiphiles.
- To assess their potential in preventing and eradicating fungal biofilms and treating infections in preclinical models.
Main Methods:
- Screening of various cholic acid-based amphiphiles against different Candida strains.
- Structure-activity correlation analysis, biochemical assays, and electron microscopy.
- In vitro biofilm inhibition and degradation assays, in vivo murine models for wound infection and device-associated biofilm prevention.
Main Results:
- Amphiphiles with 4 and 6 carbon chains demonstrated potent, safe membrane-targeting activity against Candida species.
- Unlike fluconazole, repeated exposure to these amphiphiles did not induce drug resistance in Candida albicans.
- These amphiphiles effectively prevented biofilm formation and degraded pre-existing biofilms on various substrates, including acrylic teeth.
- In murine models, amphiphiles 4 and 6 cleared Candida albicans wound infections and prevented biofilm formation on indwelling devices.
Conclusions:
- Cholic acid-derived amphiphiles are effective membrane-targeting antimycotic agents.
- These compounds represent a promising alternative for preventing and treating Candida infections, including those associated with biofilms on medical devices.
- The developed amphiphiles and their coatings offer a viable strategy to overcome drug resistance and manage challenging fungal infections.
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