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Published on: October 12, 2018
Circulating (1→3)-β-D-glucan Is Associated With Immune Activation During Human Immunodeficiency Virus Infection
Vikram Mehraj1,2,3, Rayoun Ramendra1,2,4, Stéphane Isnard1,2
1Chronic Viral Illness Service, Research Institute, McGill University Health Centre.
Background:
Microbial translocation from the gut to systemic circulation contributes to immune activation during human immunodeficiency virus (HIV) infection and is usually assessed by measuring plasma levels of bacterial lipopolysaccharide (LPS). Fungal colonization in the gut increases during HIV-infection and people living with HIV (PLWH) have increased plasma levels of fungal polysaccharide (1→3)-β-D-Glucan (βDG). We assessed the contribution of circulating DG to systemic immune activation in PLWH.
Methods:
Cross-sectional and longitudinal assessments of plasma βDG levels were conducted along with markers of HIV disease progression, epithelial gut damage, bacterial translocation, proinflammatory cytokines, and βDG-specific receptor expression on monocytes and natural killer (NK) cells.
Results:
Plasma βDG levels were elevated during early and chronic HIV infection and persisted despite long-term antiretroviral therapy (ART). βDG increased over 24 months without ART but remained unchanged after 24 months of treatment. βDG correlated negatively with CD4 T-cell count and positively with time to ART initiation, viral load, intestinal fatty acid-binding protein, LPS, and soluble LPS receptor soluble CD14 (sCD14). Elevated βDG correlated positively with indoleamine-2,3-dioxygenase-1 enzyme activity, regulatory T-cell frequency, activated CD38+Human Leukocyte Antigen - DR isotype (HLA-DR)+ CD4 and CD8 T cells and negatively with Dectin-1 and NKp30 expression on monocytes and NK cells, respectively.
Conclusions:
PLWH have elevated plasma βDG in correlation with markers of disease progression, gut damage, bacterial translocation, and inflammation. Early ART initiation prevents further βDG increase. This fungal antigen contributes to immune activation and represents a potential therapeutic target to prevent non-acquired immunodeficiency syndrome events.
Insights
Elevated fungal (1→3)-β-D-Glucan (βDG) in people living with HIV (PLWH) correlates with disease progression and immune activation. Early antiretroviral therapy (ART) initiation can prevent further increases in βDG, suggesting it as a therapeutic target.
Area of Science:
- Immunology
- Infectious Diseases
- Microbiology
Background:
- Microbial translocation contributes to immune activation in HIV infection, often measured by bacterial lipopolysaccharide (LPS).
- Increased fungal colonization in HIV-infected individuals leads to higher plasma levels of fungal polysaccharide (1→3)-β-D-Glucan (βDG).
Purpose of the Study:
- To assess the contribution of circulating βDG to systemic immune activation in people living with HIV (PLWH).
Main Methods:
- Cross-sectional and longitudinal assessments of plasma βDG levels.
- Correlated βDG with HIV disease markers, gut damage, bacterial translocation, cytokines, and receptor expression on immune cells.
Main Results:
- Plasma βDG levels were elevated in early and chronic HIV infection, persisting despite antiretroviral therapy (ART).
- βDG correlated with disease progression markers, gut damage, LPS, and immune activation markers.
- Early ART initiation prevented further βDG increase.
Conclusions:
- Elevated plasma βDG in PLWH correlates with disease progression, gut damage, bacterial translocation, and inflammation.
- Early ART initiation is crucial for preventing βDG increase.
- βDG is a potential therapeutic target for preventing non-AIDS events.
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