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Characterization of Human Monocyte Subsets by Whole Blood Flow Cytometry Analysis
Published on: October 17, 2018
HIV and cardiovascular diseases risk: exploring the interplay between T-cell activation, coagulation, monocyte
Eman Teer1, Danzil E Joseph1, Natasha Driescher1
1Cardio-Metabolic Research Group, Department of Physiological Sciences, Stellenbosch University , Stellenbosch , South Africa.
Insights
Combined antiretroviral treatment for HIV/AIDS can increase cardiovascular disease risk. This study found immune cell activation and lipid changes in HIV-positive individuals, highlighting a link to cardiovascular issues.
Area of Science:
- Immunology
- Cardiovascular Science
- Virology
Background:
- Combined antiretroviral treatment (cART) has improved outcomes for HIV/AIDS patients but is linked to increased cardiovascular disease (CVD) risk.
- Immune system recovery may be incomplete despite viral suppression in cART-treated individuals, potentially contributing to CVD.
- Understanding immune and coagulation changes in HIV is crucial for assessing CVD risk.
Purpose of the Study:
- To evaluate T-cell activation, coagulation markers, monocyte subpopulations, and regulatory T cells (Tregs) in HIV-positive individuals.
- To determine the association between these immune markers and cardiovascular disease risk factors.
- To investigate alterations in lipid subclasses and their relationship with immune activation in the context of HIV infection.
Main Methods:
- Eighty HIV-positive participants provided blood samples for analysis.
- Immune activation markers (CD38) and tissue factor (CD142) on T cells were measured.
- Monocyte subpopulations and regulatory T cells (Tregs) with activation markers (GARP, SATB-1) were analyzed.
- Lipoprotein subclasses (Lipoprint) and traditional lipid markers (LDL, HDL) were determined.
Main Results:
- HIV-positive individuals showed coexpression of coagulation marker CD142 with immune activation on T cells.
- Activated Tregs with upregulated GARP and SATB-1 indicated Treg dysfunction.
- Proatherogenic monocyte subsets expanded, correlating with T-cell and macrophage activation (CD163).
- Immune activation correlated significantly with lipid subclasses, revealing changes missed by standard lipid tests.
Conclusions:
- HIV infection, even with cART, is associated with immune activation and coagulation markers that increase CVD risk.
- Treg dysfunction and altered monocyte populations contribute to atherogenesis in HIV.
- Lipid subclass analysis provides a more comprehensive view of CVD risk in HIV than traditional markers.
- Lipopolysaccharide-binding protein may link immune activation, lipid changes, and CVD risk in HIV-positive individuals.
Abstract:
Although rollout of combined antiretroviral treatment (cART) has blunted human immunodeficiency virus (HIV) and acquired immunodeficiency syndrome (AIDS) onset, there is increased development of cardiovascular diseases (CVDs) in HIV-infected individuals. While most HIV-infected individuals on cART achieve viral suppression, this may not necessarily result in complete immunological recovery. This study therefore evaluated T-cell-mediated changes and coagulation markers in HIV-positive individuals to ascertain their potential to increase CVD risk. Eighty participants were recruited (Worcester, South Africa), and fasted blood was collected to evaluate: 1) immune activation (CD38 expression on CD4+ and CD8+ T cells) and thrombus formation [tissue factor (CD142)] on CD4+ and CD8+ T cells; 2) monocyte subpopulations (nonclassical, intermediate, and classical); and 3) classical regulatory T (Treg) cells with activation markers [glycoprotein A repetitions predominant (GARP) and special AT-rich sequence-binding protein 1 (SATB-1)]. High- and low-density lipoprotein subclasses (Lipoprint) were also determined. This study revealed four key findings for HIV-positive patients: 1) coexpression of the CD142 coagulation marker together with immune activation on both CD4+ and CD8+ T cells during chronic infection stages; 2) Treg cell activation and upregulated GARP and SATB-1 contributing to Treg dysfunction in chronic HIV; 3) proatherogenic monocyte subset expansion with significant correlation between T-cell activation and macrophage activation (marker: CD163); and 4) significant correlation between immune activation and lipid subclasses, revealing crucial changes that can be missed by traditional lipid marker assessments (LDL and HDL). These data also implicate lipopolysaccharide-binding protein as a crucial link between immune activation, lipid alterations, and increased CVD risk. NEW & NOTEWORTHY With combined antiretroviral treatment rollout, HIV-AIDS patients are increasingly associated with cardiovascular diseases onset. This study demonstrated the significant interplay between adaptive immune cell activation and monocyte/macrophage markers in especially HIV-positive individuals with virological failure and on second line treatment. Our data also show a unique link between immune activation and lipid subclass alterations, revealing important changes that can be missed by traditional lipid marker assessments (e.g., LDL and HDL).
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