Inflammation
Lp(a)-monocyte associations differ by race in single-cell RNA-seq analysis, 34-participant preprint study (bioRxiv 2026)
Original title: Associations Between Plasma Lipoprotein(a) Levels and Circulating Monocyte Subsets Differ across Populations
Preprint single-cell RNA sequencing study of 34 participants (20 Black, 14 White; excluding smokers and those with type 2 diabetes) from a previously characterised cohort, stratified into normal Lp(a) (median 12.6 nmol/L, n=15) and high Lp(a) (median 159 nmol/L, n=19) groups, examining associations between Lp(a), apo(a) isoform size, oxidised phospholipids (oxPL) and circulating monocyte subsets. Overall monocyte subset distributions did not differ by Lp(a) group, but race modified the association between Lp(a) and non-classical monocyte abundance (P for interaction=0.032), with an inverse association in White (p=0.028) but not Black participants (p=0.470); oxPL bound to apo(a) correlated strongly with Lp(a) (R2=0.84) and also showed a race-dependent association with non-classical monocytes (P for interaction=0.014). The authors conclude Lp(a)-immune associations differ by self-reported race and should be considered in future studies.
Original abstract
Objective: Lipoprotein(a) [Lp(a)] is a causal cardiovascular disease (CVD) risk factor, with plasma concentrations generally higher in Black than White individuals. Evidence suggests that elevated Lp(a), partly through oxidized phospholipid (oxPL)-mediated signaling, promotes a pro-inflammatory monocyte phenotype that may contribute to arterial inflammation and CVD. We examined associations between Lp(a) levels, apo(a) isoform size, and circulating monocyte populations in Black and White individuals using single-cell RNA sequencing (scRNA-seq).
Approach And Results: Plasma Lp(a), apo(a) isoform size, inflammatory markers, and oxPL were measured using standardized assays in stored samples from a previously characterized cohort of 128 participants. After excluding smokers and individuals with type 2 diabetes, 34 participants remained (20 Black, 14 White). Participants were stratified into normal Lp(a) (median 12.6 nmol/L; n=15, 8 Black) and high Lp(a) (median 159 nmol/L; n=19, 12 Black) groups. Multivariable linear regression assessed associations between plasma Lp(a), Lp(a)-bound oxPL, and monocyte subset proportions. scRNA-seq identified six classical monocyte subsets, one non-classical monocyte subset, one MHCIIhi monocyte subset, and one interferon-responsive monocyte subset. Monocyte subset distributions did not differ between normal and high Lp(a) groups. However, race modified the association between plasma Lp(a) levels and non-classical monocyte abundance (P_interaction=0.032), with an inverse association observed in White participants (P=0.028) but not Black participants (P=0.470). OxPL bound to apo(a) correlated strongly with plasma Lp(a) concentrations (R2=0.84, P=3.3x10^1) and showed a race-dependent association with non-classical monocytes (P_interaction=0.014). Race also modified the association between plasma Lp(a) levels and classical 2 monocytes (P_interaction=0.027).
Conclusions: These findings suggest that associations between Lp(a), oxPL, and circulating monocyte subsets differ by race and highlight the importance of considering self-reported race in studies of Lp(a)-related immune and cardiovascular phenotypes.
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Summary written by lp-a.org from the published abstract; figures as published. Page updated 17 August 2026. Methods.