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Aggressive Cholesterol Lowering Normalizes Atherosclerosis Regression in Jak2 V617F Mice
Brian D Hardaway1, Trevor P Fidler2, Mojdeh Tavallaie1
1Division of Molecular Medicine, Department of Medicine, Columbia University Irving Medical Center, New York, NY, USA.
Insights
Clonal hematopoiesis (CH) increases atherosclerotic cardiovascular disease (ACVD) risk. Aggressive LDL cholesterol lowering reverses CH-driven inflammation and promotes plaque stabilization, suggesting a potential treatment strategy for ACVD risk.
Area of Science:
- Cardiovascular Science
- Hematology
- Immunology
Background:
- Clonal hematopoiesis (CH) is an emerging risk factor for atherosclerotic cardiovascular disease (ACVD).
- CH promotes atherosclerosis progression via macrophage inflammatory responses.
- The impact of inflammation on atherosclerosis regression in CH remains unclear.
Purpose of the Study:
- To investigate whether ongoing inflammation impedes atherosclerosis regression in JAK2 V617F (JAK2 VF) CH mice.
- To assess the effect of different low-density lipoprotein (LDL) lowering intensities on plaque regression in CH mice.
Main Methods:
- Bone marrow transplantation of JAK2 VF or control WT into Ldlr-/- mice.
- Induction of atherosclerosis with a Western diet, followed by moderate or marked LDL cholesterol lowering.
- Analysis of plaque regression and macrophage inflammatory markers.
Main Results:
- Moderate LDL lowering showed impaired regression in JAK2 VF CH mice compared to controls.
- Marked LDL lowering resulted in similar regression in both JAK2 VF CH and control mice.
- Aggressive LDL lowering reversed inflammasome activation and induced pro-resolving macrophage changes in JAK2 VF CH mice.
Conclusions:
- Aggressive LDL cholesterol lowering effectively reverses inflammasome activation and promotes plaque stabilization in JAK2 VF CH.
- These findings suggest that intensive LDL lowering may mitigate ACVD risk in individuals with JAK2 VF clonal hematopoiesis.
Background –:
The Jak2 V617F (Jak2 VF ) mutation is an important cause of both clonal hematopoiesis of indeterminate potential (CHIP) and myeloproliferative neoplasms (MPN). Mouse models of Jak2 VF CHIP and MPN show accelerated atherosclerosis progression, driven by macrophage inflammasome activation. We undertook the present study to assess the hypothesis that ongoing inflammation would impede atherosclerosis resolution in Jak2 VF mice.
Methods And Results –:
Chimeric Jak2 VF/WT or control WT/WT bone marrow was transplanted into Ldlr -/- mice and, following 13-16 weeks of Western diet-induced atherosclerosis progression, cholesterol was lowered either moderately (to 200-300 mg/dl) or markedly (to 100 mg/dl). With moderate cholesterol lowering, there was impaired resolution of lesions in Jak2 VF MPN mice compared to controls. However, with marked cholesterol lowering, progression of lesions was halted in both Jak2 VF MPN and control mice while macrophage burden was decreased and lesional collagen was increased similarly in Jak2 VF MPN and control mice.Two mechanisms of low-density lipoprotein (LDL) lowering-induced suppression of inflammation in plaques were implicated: 1) reversal of increased proliferation, DNA damage and Absent in Melanoma 2 (AIM2) inflammasome activation specifically in Jak2 VF macrophages and 2) markedly increased macrophage triggering receptor expressed on myeloid cells 2 (TREM2), c-myc expressing macrophages in both Jak2 VF and control mice.
Conclusions –:
Aggressive LDL lowering reverses inflammasome activation and induces pro-resolving changes in macrophages in Jak2 VF MPN, halting atherosclerosis progression and promoting features of plaque stabilization. These findings suggest that aggressive LDL cholesterol lowering could reverse atherosclerotic cardiovascular disease (ACVD) risk in individuals with JAK2 VF CHIP or MPN.
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