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Updated: Sep 6, 2025

Sequencing of Bacterial Microflora in Peripheral Blood: our Experience with HIV-infected Patients
Published on: June 11, 2011
Interactions among the mycobiome, bacteriome, inflammation, and diet in people living with HIV
María José Gosalbes1,2, Nuria Jimenéz-Hernandéz1,2, Elena Moreno3,4
1CIBER de Epidemiología y Salud Pública, Madrid, Spain.
Abstract:
While the intestinal microbiome seems a major driver of persistent immune defects in people with HIV (PWH), little is known about its fungal component, the mycobiome. We assessed the inter-kingdom mycobiome-bacteriome interactions, the impact of diet, and the association with the innate and adaptive immunity in PWH on antiretroviral therapy. We included 24 PWH individuals and 12 healthy controls. We sequenced the Internal Transcribed Spacer 2 amplicons, determined amplicon sequence variants, measured biomarkers of the innate and adaptive immunity in blood and relations with diet. Compared to healthy controls, PWH subjects exhibited a distinct and richer mycobiome and an enrichment for Debaryomyces hansenii, Candida albicans, and Candida parapsilosis. In PWH, Candida and Pichia species were strongly correlated with several bacterial genera, including Faecalibacterium genus. Regarding the links between the mycobiome and systemic immunology, we found a positive correlation between Candida species and the levels of proinflammatory cytokines (sTNF-R2 and IL-17), interleukin 22 (a cytokine implicated in the regulation of mucosal immunity), and CD8+ T cell counts. This suggests an important role of the yeasts in systemic innate and adaptive immune responses. Finally, we identified inter-kingdom interactions implicated in fiber degradation, short-chain fatty acid production, and lipid metabolism, and an effect of vegetable and fiber intake on the mycobiome. Therefore, despite the great differences in abundance and diversity between the bacterial and fungal communities of the gut, we defined the changes associated with HIV, determined several different inter-kingdom associations, and found links between the mycobiome, nutrient metabolism, and systemic immunity.
Insights
The gut mycobiome in people with HIV (PWH) is distinct, with fungi like Candida linked to immune responses and nutrient metabolism. Diet impacts these fungal communities, influencing overall health in PWH on antiretroviral therapy.
Area of Science:
- Microbiology
- Immunology
- Gastroenterology
Background:
- Persistent immune defects in people with HIV (PWH) are linked to the gut microbiome.
- The fungal component, or mycobiome, and its interactions remain understudied in PWH.
Purpose of the Study:
- To assess inter-kingdom mycobiome-bacteriome interactions in PWH.
- To investigate the impact of diet on the mycobiome.
- To explore associations between the mycobiome and innate/adaptive immunity in PWH on antiretroviral therapy.
Main Methods:
- Sequencing of Internal Transcribed Spacer 2 amplicons to characterize the mycobiome.
- Analysis of amplicon sequence variants (ASVs).
- Measurement of systemic immune biomarkers and assessment of dietary intake.
Main Results:
- PWH exhibited a distinct and richer mycobiome compared to healthy controls, with enrichment of Candida and Pichia species.
- Fungal genera (Candida, Pichia) correlated with specific bacterial genera (e.g., Faecalibacterium).
- Candida species showed positive correlations with pro-inflammatory cytokines (sTNF-R2, IL-17), IL-22, and CD8+ T cell counts.
Conclusions:
- The gut mycobiome plays a role in systemic immune responses in PWH.
- Inter-kingdom interactions involving fungi influence nutrient metabolism (fiber, lipids, SCFAs).
- Dietary factors, particularly vegetable and fiber intake, affect the gut mycobiome composition in PWH.
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