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SARS-CoV-2 Post-Infection and Sepsis by Saccharomyces cerevisiae: A Fatal Case Report-Focus on Fungal Susceptibility
Lívia S Ramos1, Luca Mokus1, Heloisa F Frota1,2
1Laboratório de Estudos Avançados de Microrganismos Emergentes e Resistentes (LEAMER), Departamento de Microbiologia Geral, Instituto de Microbiologia Paulo de Góes (IMPG), Universidade Federal do Rio de Janeiro (UFRJ), Rio de Janeiro 21941-902, Brazil.
Abstract:
The pandemic caused by the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) has been responsible for approximately 6.8 million deaths worldwide, threatening more than 753 million individuals. People with severe coronavirus disease-2019 (COVID-19) infection often exhibit an immunosuppression condition, resulting in greater chances of developing co-infections with bacteria and fungi, including opportunistic yeasts belonging to the Saccharomyces and Candida genera. In the present work, we have reported the case of a 75-year-old woman admitted at a Brazilian university hospital with an arterial ulcer in the left foot, which was being prepared for surgical amputation. The patient presented other underlying diseases and presented positive tests for COVID-19 prior to hospitalization. She received antimicrobial treatment, but her general condition worsened quickly, leading to death by septic shock after 4 days of hospitalization. Blood samples collected on the day she died were positive for yeast-like organisms, which were later identified as Saccharomyces cerevisiae by both biochemical and molecular methods. The fungal strain exhibited low minimal inhibitory concentration values for the antifungal agents tested (amphotericin B, 5-flucytosine, caspofungin, fluconazole and voriconazole), and it was able to produce important virulence factors, such as extracellular bioactive molecules (e.g., aspartic peptidase, phospholipase, esterase, phytase, catalase, hemolysin and siderophore) and biofilm. Despite the activity against planktonic cells, the antifungals were not able to impact the mature biofilm parameters (biomass and viability). Additionally, the S. cerevisiae strain caused the death of Tenebrio molitor larvae, depending on the fungal inoculum, and larvae immunosuppression with corticosteroids increased the larvae mortality rate. In conclusion, the present study highlighted the emergence of S. cerevisiae as an opportunistic fungal pathogen in immunosuppressed patients presenting several severe comorbidities, including COVID-19 infection.
Insights
Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection can lead to opportunistic fungal infections. Saccharomyces cerevisiae emerged as a cause of death in a COVID-19 patient with comorbidities.
Area of Science:
- Medical Mycology
- Infectious Diseases
- COVID-19 Research
Background:
- The COVID-19 pandemic has led to millions of deaths globally.
- Severe COVID-19 infections can cause immunosuppression, increasing susceptibility to opportunistic co-infections.
- Patients with severe COVID-19 and comorbidities are at higher risk for secondary infections.
Purpose of the Study:
- To report a case of Saccharomyces cerevisiae fungemia in a COVID-19 patient.
- To investigate the virulence factors and antifungal susceptibility of the isolated S. cerevisiae strain.
- To highlight the potential of S. cerevisiae as an opportunistic pathogen in immunocompromised individuals.
Main Methods:
- Case study of a 75-year-old female patient with COVID-19 and an arterial ulcer.
- Identification of yeast-like organisms in blood samples using biochemical and molecular methods.
- Antifungal susceptibility testing and assessment of virulence factors (extracellular molecules, biofilm formation, insecticidal activity).
Main Results:
- Saccharomyces cerevisiae was identified as the causative agent of fungemia in the deceased patient.
- The isolated S. cerevisiae strain produced various virulence factors and formed biofilm, which was resistant to antifungals.
- The fungal strain demonstrated insecticidal activity against Tenebrio molitor larvae, exacerbated by larval immunosuppression.
Conclusions:
- Saccharomyces cerevisiae can act as an opportunistic pathogen in severely ill, immunocompromised patients, particularly those with COVID-19 and comorbidities.
- Antifungal treatment may be less effective against S. cerevisiae biofilms.
- This case underscores the need for vigilance regarding emerging fungal pathogens in vulnerable patient populations.
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