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Evaluation of Antimicrobial Activities of Nanoparticles and Nanostructured Surfaces In Vitro
Published on: April 21, 2023
Nanoemulsion as an Effective Treatment against Human-Pathogenic Fungi
Alexis Garcia1, Yong Yi Fan2, Sandeep Vellanki1
1South Texas Center for Emerging Infectious Diseases (STCEID), Department of Biology, University of Texas at San Antonio, San Antonio, Texas, USA.
Abstract:
Infections triggered by pathogenic fungi cause a serious threat to the public health care system. In particular, an increase of antifungal drug-resistant fungi has resulted in difficulty in treatment. A limited variety of antifungal drugs available to treat patients has left us in a situation where we need to develop new therapeutic approaches that are less prone to development of resistance by pathogenic fungi. In this study, we demonstrate the efficacy of the nanoemulsion NB-201, which utilizes the surfactant benzalkonium chloride, against human-pathogenic fungi. We found that NB-201 exhibited in vitro activity against Candidaalbicans, including both planktonic growth and biofilms. Furthermore, treatments with NB-201 significantly reduced the fungal burden at the infection site and presented an enhanced healing process after subcutaneous infections by multidrug-resistant C. albicans in a murine host system. NB-201 also exhibited in vitro growth inhibition activity against other fungal pathogens, including Cryptococcus spp., Aspergillus fumigatus, and Mucorales Due to the nature of the activity of this nanoemulsion, there is a minimized chance of drug resistance developing, presenting a novel treatment to control fungal wound or skin infections.IMPORTANCE Advances in medicine have resulted in the discovery and implementation of treatments for human disease. While these recent advances have been beneficial, procedures such as solid-organ transplants and cancer treatments have left many patients in an immunocompromised state. Furthermore, the emergence of immunocompromising diseases such as HIV/AIDS or other immunosuppressive medical conditions have opened an opportunity for fungal infections to afflict patients globally. The development of drug resistance in human-pathogenic fungi and the limited array of antifungal drugs has left us in a scenario where we need to develop new therapeutic approaches to treat fungal infections that are less prone to the development of resistance by pathogenic fungi. The significance of our work lies in utilizing a novel nanoemulsion formulation to treat topical fungal infections while minimizing risks of drug resistance development.
Insights
A new nanoemulsion, NB-201, effectively treats drug-resistant fungal infections like Candida albicans. This innovative approach shows promise for topical fungal infections with a reduced risk of developing antifungal resistance.
Area of Science:
- Medical Mycology
- Nanotechnology in Medicine
- Antimicrobial Drug Development
Background:
- Fungal infections pose a significant public health threat, exacerbated by increasing antifungal drug resistance.
- Limited treatment options and the rise of multidrug-resistant fungi necessitate novel therapeutic strategies.
- Immunocompromised patients are particularly vulnerable to invasive fungal infections.
Purpose of the Study:
- To evaluate the efficacy of a novel nanoemulsion, NB-201, containing benzalkonium chloride against human-pathogenic fungi.
- To assess the potential of NB-201 in combating drug-resistant fungal strains and minimizing resistance development.
- To explore NB-201 as a therapeutic agent for topical fungal infections.
Main Methods:
- In vitro testing of NB-201 against planktonic and biofilm forms of Candida albicans.
- In vivo studies using a murine model to assess NB-201's effect on subcutaneous infections caused by multidrug-resistant C. albicans.
- In vitro evaluation of NB-201 against other fungal pathogens, including Cryptococcus spp., Aspergillus fumigatus, and Mucorales.
Main Results:
- NB-201 demonstrated significant in vitro activity against Candida albicans, including biofilms.
- Subcutaneous infections by multidrug-resistant C. albicans in mice showed reduced fungal burden and enhanced healing after NB-201 treatment.
- NB-201 exhibited in vitro growth inhibition against Cryptococcus spp., Aspergillus fumigatus, and Mucorales.
Conclusions:
- The nanoemulsion NB-201 is effective against a range of human-pathogenic fungi, including multidrug-resistant strains.
- NB-201 presents a promising novel therapeutic approach for topical fungal infections with a minimized risk of resistance development.
- This formulation offers a potential solution to the challenge of treating increasingly resistant fungal infections.
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