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Deficient Phagocytosis in Circulating Monocytes from Patients with COVID-19-Associated Mucormycosis
Bishnu Prasad Sinha1,2, Priyanka Mehta3,2, Md Asmaul Hoque1,2
1IICB-Translational Research Unit of Excellence, CSIR-Indian Institute of Chemical Biology, Kolkata, India.
Abstract:
Cases of rhino-orbital mucormycosis in patients suffering from severe coronavirus disease 2019 (COVID-19) were reported in different parts of the world, especially in India. However, specific immune mechanisms that are linked to susceptibility to COVID-19-associated mucormycosis (CAM) remain largely unexplored. We aimed to explore whether the differential regulation of circulating cytokines in CAM patients had any potential pathogenic links with myeloid phagocyte function and susceptibility to mucormycosis. A small cohort of Indian patients suffering from CAM (N = 9) as well as COVID-19 patients with no evidence of mucormycosis (N = 5) were recruited in the study. Venous blood was collected from the patients as well as from healthy volunteers (N = 8). Peripheral blood mononuclear cells and plasma were isolated. Plasma samples were used to measure a panel of 48 cytokines. CD14+ monocytes were isolated and used for a flow cytometric phagocytosis assay as well as a global transcriptome analysis via RNA-sequencing. A multiplex cytokine analysis of the plasma samples revealed reduction in a subset of cytokines in CAM patients, which is known to potentiate the activation, migration, or phagocytic activity of myeloid cells, compared to the COVID-19 patients who did not contract mucormycosis. Compared to monocytes from healthy individuals, peripheral blood CD14+ monocytes from CAM patients were significantly deficient in phagocytic function. The monocyte transcriptome also revealed that pathways related to endocytic pathways, phagosome maturation, and the cytoskeletal regulation of phagocytosis were significantly downregulated in CAM patients. Thus, the study reports a significant deficiency in the phagocytic activity of monocytes, which is a critical effector mechanism for the antifungal host defense, in patients with CAM. This result is in concordance with results regarding the specific cytokine signature and monocyte transcriptome. IMPORTANCE A number of cases of mucormycosis, often fatal, were reported among severe COVID-19 patients from India as well as from some other parts of the world. However, specific immunocellular mechanisms that underlie susceptibility to this fungal infection in COVID-19 remain largely unexplored. Our study reports a deficiency in phagocytosis by monocytes in COVID-19 patients who are concomitantly afflicted with mucormycosis, with this deficiency being linked to a characteristic monocyte transcriptome as well as a circulating cytokine signature. The functional phenotype and cytokine signature of the monocytes may provide useful biomarkers for detecting potential susceptibility to mucormycosis in COVID-19 as well as in other viral infections.
Insights
COVID-19-associated mucormycosis (CAM) patients exhibit deficient monocyte phagocytic function. This impairment, linked to specific cytokine profiles and monocyte gene expression, may increase susceptibility to fungal infections.
Area of Science:
- Immunology
- Infectious Diseases
- Molecular Biology
Background:
- Mucormycosis, a serious fungal infection, has been frequently observed in severe COVID-19 patients, particularly in India.
- The underlying immune mechanisms predisposing COVID-19 patients to mucormycosis remain poorly understood.
- Investigating immune cell function and cytokine regulation is crucial for understanding COVID-19-associated mucormycosis (CAM) susceptibility.
Purpose of the Study:
- To investigate the relationship between circulating cytokines, myeloid phagocyte function, and susceptibility to mucormycosis in COVID-19 patients.
- To explore the potential pathogenic links between immune dysregulation and the development of CAM.
Main Methods:
- Recruited patients with CAM, COVID-19 without mucormycosis, and healthy volunteers.
- Analyzed plasma cytokine profiles using multiplex assays.
- Assessed monocyte phagocytic function via flow cytometry and analyzed monocyte gene expression using RNA-sequencing.
Main Results:
- CAM patients showed reduced levels of specific cytokines that normally enhance myeloid cell activity.
- Peripheral blood monocytes from CAM patients displayed significantly impaired phagocytic capacity compared to healthy controls.
- Monocyte transcriptome analysis revealed downregulated pathways critical for phagocytosis in CAM patients.
Conclusions:
- Patients with CAM exhibit a significant deficiency in monocyte phagocytic activity, a key antifungal defense mechanism.
- The observed monocyte dysfunction correlates with a distinct cytokine signature and transcriptome profile.
- These findings suggest that monocyte functional phenotype and cytokine profiles could serve as biomarkers for predicting mucormycosis susceptibility in COVID-19 and other viral infections.
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