Key result
A hyperinflamed phenotype (cluster-3) was associated with greater increases in arterial stiffness following ART initiation compared to cluster-1 (relative fold-change 1.45; 95% CI 1.01-2.09; P=0.045).
Why the study?
Inflammation drives vascular dysfunction in HIV, but in low-income settings its causes are multiple; it was hypothesized that patients with advanced immunosuppression could be stratified into inflammatory phenotypes predicting changes in vascular dysfunction on ART.
Do inflammatory phenotypes predict changes in arterial stiffness following ART initiation in adults with advanced HIV?
Cohort (n=211)
Do inflammatory phenotypes predict changes in arterial stiffness following ART initiation in adults with advanced HIV?
Effect estimate: relative fold-change 1.45 (95% CI 1.01-2.09)
p-value: p=.045
In adults with advanced HIV starting ART, a hyperinflamed phenotype is associated with greater increases in arterial stiffness over time.
May identify high-risk patients for vascular monitoring; hypothesis-generating for inflammation-targeted interventions in advanced HIV.
BACKGROUND: Inflammation drives vascular dysfunction in HIV, but in low-income settings causes of inflammation are multiple, and include infectious and environmental factors. We hypothesized that patients with advanced immunosuppression could be stratified into inflammatory phenotypes that predicted changes in vascular dysfunction on ART. METHODS: We recruited Malawian adults with CD4 <100 cells/μL 2 weeks after starting ART in the REALITY trial (NCT01825031). Carotid femoral pulse-wave velocity (cfPWV) measured arterial stiffness 2, 12, 24, and 42 weeks post-ART initiation. Plasma inflammation markers were measured by electrochemiluminescence at weeks 2 and 42. Hierarchical clustering on principal components identified inflammatory clusters. RESULTS: 211 participants with HIV grouped into 3 inflammatory clusters representing 51 (24%; cluster-1), 153 (73%; cluster-2), and 7 (3%; cluster-3) individuals. Cluster-1 showed markedly higher CD4 and CD8 T-cell expression of HLADR and PD-1 versus cluster-2 and cluster-3 (all P < .0001). Although small, cluster-3 had significantly higher levels of cytokines reflecting inflammation (IL-6, IFN-γ, IP-10, IL-1RA, IL-10), chemotaxis (IL-8), systemic and vascular inflammation (CRP, ICAM-1, VCAM-1), and SAA (all P < .001). In mixed-effects models, cfPWV changes over time were similar for cluster-2 versus cluster-1 (relative fold-change, 0.99; 95% CI, .86-1.14; P = .91), but greater in cluster-3 versus cluster-1 (relative fold-change, 1.45; 95% CI, 1.01-2.09; P = .045). CONCLUSIONS: Two inflammatory clusters were identified: one defined by high T-cell PD-1 expression and another by a hyperinflamed profile and increases in cfPWV on ART. Further clinical characterization of inflammatory phenotypes could help target vascular dysfunction interventions to those at highest risk. CLINICAL TRIALS NETWORK: NCT01825031.
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Kelly et al. (2020) conducted a cohort in HIV with advanced immunosuppression (n=211). Hyperinflamed phenotype (cluster-3) vs. Cluster-1 was evaluated on Changes in carotid femoral pulse-wave velocity (cfPWV) over time (relative fold-change 1.45, 95% CI 1.01-2.09, p=.045). A hyperinflamed phenotype (cluster-3) was associated with greater increases in arterial stiffness following ART initiation compared to cluster-1 (relative fold-change 1.45; 95% CI 1.01-2.09; P=0.045).
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