Synergistic Antifungal Interactions between Antibiotic Amphotericin B and Selected 1,3,4-thiadiazole Derivatives, Determined by Microbiological, Cytochemical, and Molecular Spectroscopic Studies

Author:

Dróżdż Agnieszka1ORCID,Kubera Dominika1,Sławińska-Brych Adrianna1,Matwijczuk Arkadiusz23ORCID,Ślusarczyk Lidia2ORCID,Czernel Grzegorz2ORCID,Karcz Dariusz34ORCID,Olender Alina5,Bogut Agnieszka5,Pietrzak Daniel6,Dąbrowski Wojciech6ORCID,Stepulak Andrzej7ORCID,Wójcik-Załuska Alicja8ORCID,Gagoś Mariusz17ORCID

Affiliation:

1. Department of Cell Biology, Maria Curie-Sklodowska University, Akademicka 19, 20-033 Lublin, Poland

2. Department of Biophysics, University of Life Sciences, Akademicka 13, 20-950 Lublin, Poland

3. ECOTECH-COMPLEX—Analytical and Programme Centre for Advanced Environmentally-Friendly Technologies, Maria Curie-Sklodowska University, Głęboka 39, 20-033 Lublin, Poland

4. Department of Chemical Technology and Environmental Analytics, Cracow University of Technology, 31-155 Krakow, Poland

5. Chair and Department of Medical Microbiology, Collegium Universum, Medical University of Lublin, Chodźki 1 Street, 20-093 Lublin, Poland

6. I Clinic of Anaesthesiology and Intensive Therapy with Clinical Paediatric Department, Medical University of Lublin, Jaczewskiego 8, 20-090 Lublin, Poland

7. Department of Biochemistry and Molecular Biology, Medical University of Lublin, 20-093 Lublin, Poland

8. Department of Physical Therapy and Rehabilitation, Medical University of Lublin, 20-093 Lublin, Poland

Abstract

In recent years, drug-resistant and multidrug-resistant fungal strains have been more frequently isolated in clinical practice. This phenomenon is responsible for difficulties in the treatment of infections. Therefore, the development of new antifungal drugs is an extremely important challenge. Combinations of selected 1,3,4-thiadiazole derivatives with amphotericin B showing strong synergic antifungal interactions are promising candidates for such formulas. In the study, microbiological, cytochemical, and molecular spectroscopy methods were used to investigate the antifungal synergy mechanisms associated with the aforementioned combinations. The present results indicate that two derivatives, i.e., C1 and NTBD, demonstrate strong synergistic interactions with AmB against some Candida species. The ATR-FTIR analysis showed that yeasts treated with the C1 + AmB and NTBD + AmB compositions, compared with those treated with single compounds, exhibited more pronounced abnormalities in the biomolecular content, suggesting that the main mechanism of the synergistic antifungal activity of the compounds is related to a disturbance in cell wall integrity. The analysis of the electron absorption and fluorescence spectra revealed that the biophysical mechanism underlying the observed synergy is associated with disaggregation of AmB molecules induced by the 1,3,4-thiadiazole derivatives. Such observations suggest the possibility of the successful application of thiadiazole derivatives combined with AmB in the therapy of fungal infections.

Funder

National Science Center

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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