[HTML][HTML] Neutrophil subsets and their gene signature associate with vascular inflammation and coronary atherosclerosis in lupus

PM Carlucci, MM Purmalek, AK Dey… - JCI insight, 2018 - ncbi.nlm.nih.gov
PM Carlucci, MM Purmalek, AK Dey, Y Temesgen-Oyelakin, S Sakhardande, AA Joshi
JCI insight, 2018ncbi.nlm.nih.gov
BACKGROUND. Systemic lupus erythematosus (SLE) is associated with enhanced risk of
atherosclerotic cardiovascular disease not explained by Framingham risk score (FRS).
Immune dysregulation associated to a distinct subset of lupus proinflammatory neutrophils
(low density granulocytes; LDGs) may play key roles in conferring enhanced CV risk. This
study assessed if lupus LDGs are associated with in vivo vascular dysfunction and
inflammation and coronary plaque. METHODS. SLE subjects and healthy controls …
Abstract
BACKGROUND. Systemic lupus erythematosus (SLE) is associated with enhanced risk of atherosclerotic cardiovascular disease not explained by Framingham risk score (FRS). Immune dysregulation associated to a distinct subset of lupus proinflammatory neutrophils (low density granulocytes; LDGs) may play key roles in conferring enhanced CV risk. This study assessed if lupus LDGs are associated with in vivo vascular dysfunction and inflammation and coronary plaque.
METHODS. SLE subjects and healthy controls underwent multimodal phenotyping of vascular disease by quantifying vascular inflammation (18 F-fluorodeoxyglucose–PET/CT [18 F-FDG–PET/CT]), arterial dysfunction (EndoPAT and cardio-ankle vascular index), and coronary plaque burden (coronary CT angiography). LDGs were quantified by flow cytometry. Cholesterol efflux capacity was measured in high-density lipoprotein–exposed (HDL-exposed) radioactively labeled cell lines. Whole blood RNA sequencing was performed to assess associations between transcriptomic profiles and vascular phenotype.
RESULTS. Vascular inflammation, arterial stiffness, and noncalcified plaque burden (NCB) were increased in SLE compared with controls even after adjustment for traditional risk factors. In SLE, NCB directly associated with LDGs and associated negatively with cholesterol efflux capacity in fully adjusted models. A neutrophil gene signature reflective of the most upregulated genes in lupus LDGs associated with vascular inflammation and NCB.
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