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Differential Antifungal Activity of Human and Cryptococcal Melanins with Structural Discrepancies
Néstor Correa1,2,3, Cristian Covarrubias4, Paula I Rodas5
1Programa de Microbiología y Micología, Instituto de Ciencias Biomédicas, Facultad de Medicina, Universidad de ChileSantiago, Chile.
Abstract:
Melanin is a pigment found in all biological kingdoms, and plays a key role in protection against ultraviolet radiation, oxidizing agents, and ionizing radiation damage. Melanin exerts an antimicrobial activity against bacteria, fungi, and parasites. We demonstrated an antifungal activity of synthetic and human melanin against Candida sp. The members of the Cryptococcus neoformans and C. gattii species complexes are capsulated yeasts, which cause cryptococcosis. For both species melanin is an important virulence factor. To evaluate if cryptococcal and human melanins have antifungal activity against Cryptococcus species they both were assayed for their antifungal properties and physico-chemical characters. Melanin extracts from human hair and different strains of C. neoformans (n = 4) and C. gattii (n = 4) were investigated. The following minimum inhibitory concentrations were found for different melanins against C. neoformans and C. gattii were (average/range): 13.7/(7.8-15.6) and 19.5/(15.6-31.2) μg/mL, respectively, for human melanin; 273.4/(125->500) and 367.2/(125.5->500) μg/mL for C. neoformans melanin and 125/(62.5-250) and 156.2/(62-250) μg/mL for C. gattii melanin. Using Scanning Electron Microscopy we observed that human melanin showed a compact conformation and cryptococcal melanins exposed an amorphous conformation. Infrared spectroscopy (FTIR) showed some differences in the signals related to C-C bonds of the aromatic ring of the melanin monomers. High Performance Liquid Chromatography established differences in the chromatograms of fungal melanins extracts in comparison with human and synthetic melanin, particularly in the retention time of the main compound of fungal melanin extracts and also in the presence of minor unknown compounds. On the other hand, MALDI-TOF-MS analysis showed slight differences in the spectra, specifically the presence of a minor intensity ion in synthetic and human melanin, as well as in some fungal melanin extracts. We conclude that human melanin is more active than the two fungal melanins against Cryptococcus. Although some physico-chemical differences were found, they do not explain the differences in the antifungal activity against Cryptococcus of human and cryptococcal melanins. More detailed studies on the structure should be considered to associate structure and antifungal activity.
Insights
Human melanin exhibits stronger antifungal activity against Cryptococcus species than fungal melanin. Physico-chemical differences were observed, but do not fully explain the variations in antifungal efficacy.
Area of Science:
- Biochemistry
- Mycology
- Dermatology
Background:
- Melanin, a pigment in all biological kingdoms, offers protection against radiation and possesses antimicrobial properties.
- Melanin is a significant virulence factor for *Cryptococcus neoformans* and *C. gattii*, yeasts that cause cryptococcosis.
- Previous studies demonstrated the antifungal activity of synthetic and human melanin against *Candida* species.
Purpose of the Study:
- To evaluate and compare the antifungal activity of human and cryptococcal melanins against *Cryptococcus* species.
- To investigate the physico-chemical characteristics of different melanin extracts.
Main Methods:
- Minimum Inhibitory Concentrations (MICs) were determined for human, *C. neoformans*, and *C. gattii* melanins against *Cryptococcus* species.
- Scanning Electron Microscopy (SEM) was used to analyze melanin conformation.
- Fourier-Transform Infrared Spectroscopy (FTIR), High-Performance Liquid Chromatography (HPLC), and MALDI-TOF-MS were employed for physico-chemical characterization.
Main Results:
- Human melanin demonstrated lower MICs against *C. neoformans* and *C. gattii* (average 13.7 and 19.5 μg/mL, respectively) compared to fungal melanins (average 273.4-367.2 μg/mL for *C. neoformans* and 125-156.2 μg/mL for *C. gattii*).
- SEM revealed a compact conformation for human melanin and an amorphous conformation for cryptococcal melanins.
- FTIR, HPLC, and MALDI-TOF-MS showed some physico-chemical differences between human and fungal melanins, including variations in aromatic ring signals, retention times, and ion profiles.
Conclusions:
- Human melanin exhibits superior antifungal activity against *Cryptococcus* species compared to melanins from *C. neoformans* and *C. gattii*.
- Observed physico-chemical differences between human and fungal melanins do not fully account for the disparities in their antifungal efficacy.
- Further structural studies are recommended to elucidate the relationship between melanin structure and its antifungal activity against *Cryptococcus*.
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