Apheresis
Lipoprotein apheresis removes cell-derived extracellular vesicles alongside Lp(a), a possible extra mechanism behind its benefit (Sci Rep 2024)
Original title: Lipoprotein apheresis affects the concentration of extracellular vesicles in patients with elevated lipoprotein (a)
This prospective study of 22 patients undergoing lipoprotein apheresis for hyperlipoproteinemia(a) and atherosclerotic cardiovascular disease used calibrated flow cytometry to measure lipoproteins and extracellular vesicles (EVs) before, immediately after, and 7 days after a single apheresis session. Lp(a) concentration fell by 64.5% (95% CI 58%-71%, p < 0.001) after apheresis. Plasma concentrations of EVs over 200 nm derived from platelets fell by 42.7% (p = 0.005), from leukocytes by 42.6% (p = 0.030), and from erythrocytes by 26.7% (p = 0.018), all returning to baseline within 7 days alongside Lp(a). Lipoprotein apheresis removes cell-derived extracellular vesicles in addition to Lp(a) itself, suggesting this previously unrecognised effect may contribute to apheresis's broader beneficial impact on blood rheology and endothelial function.
Original abstract
Lipoprotein apheresis (LA) is a therapeutic option for hyperlipoproteinemia(a) (hyper-Lp(a)) and atherosclerotic cardiovascular disease (ASCVD). LA improves blood rheology, reduces oxidative stress parameters and improves endothelial function. The underlying molecular mechanisms of LA beneficial effects are unknown, but it has been suggested that LA exhibits multiple activities beyond simply removing lipoproteins. We hypothesized that LA removes not only lipoproteins, but also extracellular vesicles (EVs). To test this hypothesis, we performed a prospective study in 22 patients undergoing LA for hyper-Lp(a) and ASCVD. Different EVs subtypes were measured before and directly after LA, and after 7 days. We used calibrated flow cytometry to detect total particle concentration (diameter > ~ 100 nm), total lipoproteins concentration (diameter > 200 nm, RI > 1.51), total EV concentration (diameter > 200 nm, RI < 1.41), concentrations of EVs derived from erythrocytes (CD235a+; diameter > 200 nm, RI < 1.41), leukocytes (CD45+; diameter > 200 nm, RI < 1.41) and platelets (CD61+, PEVs; diameter > 200 nm, RI < 1.41). LA reduced the concentrations of all investigated EVs subtypes and lipoproteins. Lp(a) concentration was lowered by 64.5% [(58% - 71%); p < 0.001]. Plasma concentrations of EVs > 200 nm in diameter derived from platelets (CD61 +), leukocytes (CD45+) and erythrocytes (CD235a+) decreased after single LA procedure by 42.7% [(12.8-54.7); p = 0.005], 42.6% [(29.7-54.1); p = 0.030] and 26.7% [(1.0-62.7); p = 0.018], respectively, compared to baseline. All EV subtypes returned to the baseline concentrations in blood plasma after 7 days. To conclude, LA removes not only Lp(a), but also cell-derived EVs, which may contribute to LA beneficial effects.
apheresisDutch researchmechanisms
Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.