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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

Pharmaceuticals (Basel) · · 7

Lin YK, Hsieh TH, Yeh CT, Yadav VK, Fong IH, Kuo KT, Kounis NG, Hu P, Hung MY

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.

Read the paper (DOI)PubMed

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.

inflammationmechanisms

Summary written by lp-a.org from the published abstract; figures as published. Page updated 17 August 2026. Methods.