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5 result(s) for "Borba-Santos, Luana P."
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Something Old Brings New Insights: Activity of Cerivastatin Against Thermally Dimorphic Fungi and Its Potential as an Antifungal Scaffold
Background/Objectives: Species of the Sporothrix genus were used as a biological model to identify potential antifungal compounds within the NIH Clinical Collection library. Methods: A total of 707 compounds were screened for antifungal activity using in vitro susceptibility assays. Compounds exhibiting significant inhibitory effects (growth inhibitions greater than 80%) were further evaluated by determining their minimum inhibitory concentrations (MICs). As cerivastatin demonstrated the highest activity after itraconazole, it was selected for further evaluation, either alone or in combination with itraconazole, using susceptibility assays, electron microscopy, and flow cytometry analyses. Results: Among the screened compounds, twenty-six showed significant inhibition of yeast growth (≥80%). Compounds with previously reported antifungal activity or not used as oral treatment were excluded from further analysis. MIC determination of eleven selected compounds revealed that cerivastatin inhibited the growth of Sporothrix brasiliensis, Sporothrix schenckii, and Sporothrix globosa at concentrations of 1.25 µM and 0.6 µM. Combination treatment with cerivastatin and itraconazole resulted in greater inhibition of Sporothrix growth than either agent alone. Flow cytometry and microscopic analyses revealed more pronounced morphophysiological alterations in yeast cells following combination treatment. Conclusions: These findings highlight the potential of cerivastatin as an antifungal agent when used in combination with itraconazole. Furthermore, the chemical scaffold of cerivastatin warrants further investigation as a basis for the development of novel statins with antifungal activity.
Current Progress on Epidemiology, Diagnosis, and Treatment of Sporotrichosis and Their Future Trends
Sporotrichosis, a human and animal disease caused by Sporothrix species, is the most important implantation mycosis worldwide. Sporothrix taxonomy has improved in recent years, allowing important advances in diagnosis, epidemiology, and treatment. Molecular epidemiology reveals that S. brasiliensis remains highly prevalent during the cat-transmitted sporotrichosis outbreaks in South America and that the spread of S. brasiliensis occurs through founder effects. Sporothrix globosa and S. schenckii are cosmopolitan on the move, causing major sapronoses in Asia and the Americas, respectively. In this emerging scenario, one-health approaches are required to develop a creative, effective, and sustainable response to tackle the spread of sporotrichosis. In the 21st century, it has become vital to speciate Sporothrix, and PCR is the main pillar of molecular diagnosis, aiming at the detection of the pathogen DNA from clinical samples through multiplex assays, whose sensitivity reaches remarkably three copies of the target. The treatment of sporotrichosis can be challenging, especially after the emergence of resistance to azoles and polyenes. Alternative drugs arising from discoveries or repositioning have entered the radar of basic research over the last decade and point to several molecules with antifungal potential, especially the hydrazone derivatives with great in vitro and in vivo activities. There are many promising developments for the near future, and in this review, we discuss how these trends can be applied to the Sporothrix-sporotrichosis system to mitigate the advance of an emerging and re-emerging disease.
Inclusion complex of O-allyl-lawsone with 2-hydroxypropyl-β-cyclodextrin: Preparation, physical characterization, antiparasitic and antifungal activity
The subclass naphthoquinone represents a substance group containing several compounds with important activities against various pathogenic microorganisms. Accordingly, we evaluated O-allyl-lawsone (OAL) antiparasitic and antifungal activity free and encapsulated in 2-hydroxypropyl-β-cyclodextrin (OAL MKN) against Trypanosoma cruzi and Sporothrix spp. OAL and OAL MKN were synthesized and characterized by physicochemical methods. The IC50 values of OAL against T. cruzi were 2.4 µM and 96.8 µM, considering epimastigotes and trypomastigotes, respectively. At the same time, OAL MKN exhibited a lower IC50 value (0.5 µM) for both trypanosome forms and low toxicity for mammalian cells. Additionally, the encapsulation showed a selectivity index approximately 240 times higher than that of benznidazole. Regarding antifungal activity, OAL and OAL MKN inhibited Sporothrix brasiliensis growth at 16 µM, while Sporothrix schenckii was inhibited at 32 µM. OAL MKN also exhibited higher selectivity toward fungus than mammalian cells. In conclusion, we described the encapsulation of O-allyl-lawsone in 2-hydroxypropyl-β-cyclodextrin, increasing the antiparasitic activity compared with the free form and reducing the cytotoxicity and increasing the selectivity towardSporothrix yeasts and the T. cruzi trypomastigote form. This study highlights the potential development of this inclusion complex as an antiparasitic and antifungal agent to treat neglected diseases.
A novel naphthoquinone derivative shows selective antifungal activity against Sporothrix yeasts and biofilms
Sporotrichosis is a subcutaneous mycosis that affects humans and animals, with few therapeutic options available in the pharmaceutical market. We screened the in vitro antifungal activity of fourteen 1,4-naphthoquinones derivative compounds against Sporothrix brasiliensis and Sporothrix schenckii , the main etiological agents of sporotrichosis in Latin America. The most active compound was selected for further studies exploring its antibiofilm activity, effects on yeast morphophysiology, interaction with itraconazole, and selectivity to fungal cells. Among the fourteen 1,4-naphthoquinones tested, naphthoquinone 5 , a silver salt of lawsone, was the most active compound. Naphthoquinone 5 was able to inhibit Sporothrix biofilms and induced ROS accumulation, mitochondrial disturbances, and severe plasmatic membrane damage in fungal cells. Furthermore, naphthoquinone 5 was ten times more selective towards fungal cells than fibroblast, and the combination of itraconazole with naphthoquinone 5 improved the inhibitory activity of the azole. Combined, the data presented here indicate that the silver salt naphthoquinone 5 exerts promising in vitro activity against the two main agents of sporotrichosis with important antibiofilm activity and a good toxicity profile, suggesting it is a promising molecule for the development of a new family of antifungals.