Inflammation
Lp(a) drives coronary artery spasm through a CD36-RhoA-IL-6 inflammatory pathway that a natural biflavonoid can block, mechanistic study finds (Pharmaceuticals (Basel) 2025)
Original title: Lipoprotein(a)/CD36 Interaction Drives IL-6/RhoA-GTP Signaling and miRNA Epigenetic Regulation in Coronary Artery Spasm
This mechanistic study investigated how Lp(a) contributes to coronary artery spasm (CAS) through interaction with soluble CD36, using monocyte-derived macrophages and coronary smooth muscle cells from 41 CAS patients and 36 non-CAS controls. Plasma Lp(a) and soluble CD36 were significantly higher in CAS patients (P = 0.001) and positively correlated (r2 = 0.3145, P < 0.001), a pattern absent in controls. RNA sequencing showed Lp(a) dose-dependently co-upregulated CD36 and RhoA (P < 0.001) and preferentially drove CD80+ M1 macrophage polarisation, more than LDL did. Knocking down CD36, via short hairpin RNA or the natural biflavonoid amentoflavone, suppressed Lp(a)-induced CD36, RhoA-GTP, IL-6, TNF-alpha, NF-kB and CD80 expression, while CD36 overexpression increased them; Lp(a) also suppressed and amentoflavone restored two microRNAs that normally inhibit CD36. The authors conclude Lp(a)/CD36 inflammatory signalling drives smooth muscle activation and macrophage M1 polarisation in coronary artery spasm, identifying CD36 and its epigenetic regulators as potential therapeutic targets.
Original abstract
Background: Lipoprotein(a) [Lp(a)]-induced inflammation contributes to coronary artery spasm (CAS) by the contraction of vascular smooth muscle cells. However, the interaction between Lp(a) and soluble CD36 (sCD36)/interleukin (IL)-6/RAS Homolog Family Member A (RhoA)-GTP signaling pathway has not been evaluated. Methods: We investigated the relevance of Lp(a)/CD36 signaling in CAS patient monocyte-derived macrophages (PMDMs) and a human coronary artery smooth muscle cell (HCASMC) line using expression profile correlation analyses, molecular docking, RNA sequencing, flow cytometry, immunoblotting, and quantitative reverse transcription polymerase chain reaction. Results: Plasma Lp(a) and sCD36 levels in 41 CAS patients were significantly higher (p = 0.001) and positively correlated (r2 = 0.3145, p < 0.001), a trend not observed in 36 non-CAS controls. RNA sequencing indicated a significant co-overexpression of CD36 and RhoA in Lp(a)-treated CAS PMDMs and HCASMCs, of which the mRNA and protein expression of CD36 and RhoA were significantly enhanced (p < 0.001) dose-dependently. Lp(a) rather than LDL preferentially induced CD80+ PMDM (M1) polarization. In HCASMCs, the CD36 knockdown using either short hairpin RNA or natural biflavonoid amentoflavone suppressed Lp(a)-upregulated protein expression of CD36, RhoA-GTP, IL-6, tumor necrosis factor (TNF)-α, nuclear factor (NF)-κB, and CD80; however, overexpressed CD36 increased their levels. Lp(a) decreased and amentoflavone increased the epigenetic expression of CD36 inhibitors, miR-335-5p, and miR-448, respectively. Reciprocally, an miRNA inhibitor or mimic could magnify or diminish Lp(a)-induced CD36, TNF-α, NF-κB and IL-6 expressions in HCASMCs, respectively. Conclusions: Elevated Lp(a) levels upregulate the CD36-dependent TNF-α/NF-κB/IL-6/RhoA-GTP signaling pathway in CAS PMDMs and HCASMCs, indicating that Lp(a)/CD36 inflammatory signaling, HCASMC activation, and macrophage M1 polarization mediate CAS development.
Summary written by lp-a.org from the published abstract; figures as published. Page updated 17 August 2026. Methods.