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May 15, 2026European Heart Journal75 citationsOpen Access

Single systemic transfer of a human gene associated with exceptional longevity halts the progression of atherosclerosis and inflammation in ApoE knockout mice through a CXCR4-mediated mechanism

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APAnnibale Alessandro PucaACAlbino CarrizzoCSChiara Spinelli

Key Points

  • This study aims to explore the effects of the LAV-BPIFB4 gene therapy on atherosclerosis in ApoE knockout mice.
  • ApoE knockout mice fed a high-fat diet were randomly assigned to receive LAV-BPIFB4, WT-BPIFB4, or an empty vector.
  • Vascular reactivity and atherosclerotic severity were assessed through Echo-Doppler imaging, histology, and ultrastructural analysis.
  • The impact of LAV-BPIFB4 on macrophage polarization and cytokine release was also evaluated.
  • LAV-BPIFB4 improved endothelial function in mesenteric and femoral arteries of ApoE knockout mice; effect diminished with CXCR4 inhibitor AMD3100.
  • Treatment significantly altered macrophage polarization towards an anti-inflammatory M2 phenotype and increased IL-33 release.
  • Patients with high carotid stenosis had lower plasma BPIFB4 levels, correlating with increased atherogenic factors.

Abstract

AIMS: Here, we aimed to determine the therapeutic effect of longevity-associated variant (LAV)-BPIFB4 gene therapy on atherosclerosis. METHODS AND RESULTS: ApoE knockout mice (ApoE-/-) fed a high-fat diet were randomly allocated to receive LAV-BPIFB4, wild-type (WT)-BPIFB4, or empty vector via adeno-associated viral vector injection. The primary endpoints of the study were to assess (i) vascular reactivity and (ii) atherosclerotic disease severity, by Echo-Doppler imaging, histology and ultrastructural analysis. Moreover, we assessed the capacity of the LAV-BPIFB4 protein to shift monocyte-derived macrophages of atherosclerotic mice and patients towards an anti-inflammatory phenotype. LAV-BPIFB4 gene therapy rescued endothelial function of mesenteric and femoral arteries from ApoE-/- mice; this effect was blunted by AMD3100, a CXC chemokine receptor type 4 (CXCR4) inhibitor. LAV-BPIFB4-treated mice showed a CXCR4-mediated shift in the balance between Ly6Chigh/Ly6Clow monocytes and M2/M1 macrophages, along with decreased T cell proliferation and elevated circulating levels of interleukins IL-23 and IL-27. In vitro conditioning with LAV-BPIFB4 protein of macrophages from atherosclerotic patients resulted in a CXCR4-dependent M2 polarization phenotype. Furthermore, LAV-BPIFB4 treatment of arteries explanted from atherosclerotic patients increased the release of atheroprotective IL-33, while inhibiting the release of pro-inflammatory IL-1β, inducing endothelial nitric oxide synthase phosphorylation and restoring endothelial function. Finally, significantly lower plasma BPIFB4 was detected in patients with pathological carotid stenosis (>25%) and intima media thickness >2 mm. CONCLUSION: Transfer of the LAV of BPIFB4 reduces the atherogenic process and skews macrophages towards an M2-resolving phenotype through modulation of CXCR4, thus opening up novel therapeutic possibilities in cardiovascular disease.

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Cite This Study

Puca et al. (2019) studied this question.

synapsesocial.com/papers/6a073967e08de44c8b637f7chttps://doi.org/10.1093/eurheartj/ehz459
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