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Histological Quantification to Determine Lung Fungal Burden in Experimental Aspergillosis
Published on: March 9, 2018
Key fungal coinfections: epidemiology, mechanisms of pathogenesis, and beyond
Danielle L Silva1, Nalu T A Peres1,2, Daniel A Santos1,2
1Microbiology Department, Institute of Biological Sciences, Universidade Federal de Minas Gerais, Belo Horizonte, State of Minas Gerais, Brazil.
Abstract:
Coinfection is defined as the occurrence of at least two genetically distinct infectious agents within the same host. Historically, fungal infections have been neglected, leading to an underestimation of their impact on public health systems. However, fungal coinfections have become increasingly prevalent, emerging as a significant global health concern. This review explores fungal coinfections commonly associated with HIV, severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), influenza, Mycobacterium tuberculosis, and Pseudomonas species. These include candidiasis, aspergillosis, paracoccidioidomycosis, cryptococcosis, histoplasmosis, pneumocystosis, sporotrichosis, and mucormycosis. We discuss the key local and systemic mechanisms that contribute to the occurrence of these coinfections. HIV infects CD4+ cells, causing systemic immunosuppression, particularly impairing the adaptive immune response. The inflammatory response to SARS-CoV-2 infection disrupts both pulmonary and systemic homeostasis, rendering individuals more vulnerable to local and disseminated fungal coinfections. Severe influenza promotes fungal coinfections by triggering the production of pro-inflammatory cytokines, which damage the epithelial-endothelial barrier and impair the recognition and phagocytosis of fungal cells. Tuberculosis can replace normal lung parenchyma with collagen tissue, leading to alterations in lung architecture, compromising its function. Interaction between Pseudomonas and Aspergillus during coinfection involves the competition for iron availability and an adaptive response to its deprivation. Therefore, the specific interactions between each underlying disease and fungal coinfections are detailed in this review. In addition, we highlight the risk factors associated with coinfections, pathophysiology, epidemiology, and the challenges of early diagnosis. Recognizing the substantial worldwide public health burden posed by fungal coinfections is crucial to improve survival rates.
Insights
Fungal coinfections, often overlooked, are increasingly common with diseases like HIV, SARS-CoV-2, and tuberculosis. Understanding these complex interactions is vital for improving patient outcomes and public health strategies.
Area of Science:
- Mycology and Infectious Diseases
- Immunology
- Public Health
Background:
- Fungal coinfections are a growing global health concern, frequently underestimated due to historical neglect of fungal diseases.
- These coinfections occur with various pathogens, including Human Immunodeficiency Virus (HIV), Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2), influenza, Mycobacterium tuberculosis, and Pseudomonas species.
- Commonly observed fungal coinfections include candidiasis, aspergillosis, cryptococcosis, histoplasmosis, and mucormycosis.
Purpose of the Study:
- To review the prevalence and mechanisms of fungal coinfections associated with major infectious diseases.
- To detail the specific interactions between underlying diseases and fungal coinfections.
- To highlight risk factors, pathophysiology, epidemiology, and diagnostic challenges of fungal coinfections.
Main Methods:
- Literature review of fungal coinfections in the context of HIV, SARS-CoV-2, influenza, tuberculosis, and Pseudomonas.
- Analysis of local and systemic mechanisms contributing to fungal coinfection development.
- Examination of host-pathogen interactions and disease-specific alterations.
Main Results:
- HIV-associated immunosuppression, SARS-CoV-2-induced inflammation, and influenza-related cytokine storms increase susceptibility to fungal coinfections.
- Tuberculosis alters lung architecture, and Pseudomonas-Aspergillus interactions involve nutrient competition, impacting coinfection dynamics.
- Specific mechanisms underlying each disease-fungal coinfection pairing were elucidated.
Conclusions:
- Fungal coinfections represent a significant public health burden requiring increased recognition and research.
- Understanding the complex interplay between host immunity, primary infection, and fungal pathogens is crucial for effective management.
- Improved early diagnosis and targeted interventions are necessary to reduce mortality and morbidity associated with fungal coinfections.
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