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Updated: Feb 12, 2026

High-throughput Nitrobenzoxadiazole-labeled Cholesterol Efflux Assay
Published on: January 7, 2019
Cholesterol Efflux Pathways Suppress Inflammasome Activation, NETosis, and Atherogenesis
Marit Westerterp1,2, Panagiotis Fotakis1, Mireille Ouimet3,4
1Division of Molecular Medicine (M.W., P.F., A.E.B., M.M.M., W.W., S.A., N.W., C.L.W., A.R.T.).
Background:
The CANTOS trial (Canakinumab Antiinflammatory Thrombosis Outcome Study) showed that antagonism of interleukin (IL)-1β reduces coronary heart disease in patients with a previous myocardial infarction and evidence of systemic inflammation, indicating that pathways required for IL-1β secretion increase cardiovascular risk. IL-1β and IL-18 are produced via the NLRP3 inflammasome in myeloid cells in response to cholesterol accumulation, but mechanisms linking NLRP3 inflammasome activation to atherogenesis are unclear. The cholesterol transporters ATP binding cassette A1 and G1 (ABCA1/G1) mediate cholesterol efflux to high-density lipoprotein, and Abca1/g1 deficiency in myeloid cells leads to cholesterol accumulation.
Methods:
To interrogate mechanisms connecting inflammasome activation with atherogenesis, we used mice with myeloid Abca1/g1 deficiency and concomitant deficiency of the inflammasome components Nlrp3 or Caspase-1/11. Bone marrow from these mice was transplanted into Ldlr-/- recipients, which were fed a Western-type diet.
Results:
Myeloid Abca1/g1 deficiency increased plasma IL-18 levels in Ldlr-/- mice and induced IL-1β and IL-18 secretion in splenocytes, which was reversed by Nlrp3 or Caspase-1/11 deficiency, indicating activation of the NLRP3 inflammasome. Nlrp3 or Caspase-1/11 deficiency decreased atherosclerotic lesion size in myeloid Abca1/g1-deficient Ldlr-/- mice. Myeloid Abca1/g1 deficiency enhanced caspase-1 cleavage not only in splenic monocytes and macrophages, but also in neutrophils, and dramatically enhanced neutrophil accumulation and neutrophil extracellular trap formation in atherosclerotic plaques, with reversal by Nlrp3 or Caspase-1/11 deficiency, suggesting that inflammasome activation promotes neutrophil recruitment and neutrophil extracellular trap formation in atherosclerotic plaques. These effects appeared to be indirectly mediated by systemic inflammation leading to activation and accumulation of neutrophils in plaques. Myeloid Abca1/g1 deficiency also activated the noncanonical inflammasome, causing increased susceptibility to lipopolysaccharide-induced mortality. Patients with Tangier disease, who carry loss-of-function mutations in ABCA1 and have increased myeloid cholesterol content, showed a marked increase in plasma IL-1β and IL-18 levels.
Conclusions:
Cholesterol accumulation in myeloid cells activates the NLRP3 inflammasome, which enhances neutrophil accumulation and neutrophil extracellular trap formation in atherosclerotic plaques. Patients with Tangier disease, who have increased myeloid cholesterol content, showed markers of inflammasome activation, suggesting human relevance.
Insights
Cholesterol accumulation in myeloid cells activates the NLRP3 inflammasome, driving neutrophil activity and atherosclerotic plaque formation. This pathway is relevant in Tangier disease patients, highlighting a link between cholesterol, inflammation, and cardiovascular risk.
Area of Science:
- Cardiovascular Science
- Immunology
- Molecular Biology
Background:
- The CANTOS trial demonstrated that blocking interleukin (IL)-1β reduces cardiovascular events in patients with prior myocardial infarction and inflammation.
- This suggests that IL-1β secretion pathways contribute to cardiovascular risk.
- The NLRP3 inflammasome, activated by cholesterol accumulation in myeloid cells, produces IL-1β and IL-18, but its role in atherosclerosis is not fully understood.
Purpose of the Study:
- To investigate the mechanisms linking NLRP3 inflammasome activation to the development of atherosclerosis.
- To explore the role of cholesterol transporters ATP binding cassette A1 and G1 (ABCA1/G1) in inflammasome activation and cardiovascular disease.
Main Methods:
- Mice with myeloid-specific Abca1/g1 deficiency were crossed with Nlrp3 or Caspase-1/11 deficient mice.
- Bone marrow from these mice was transplanted into Ldlr-/- recipients fed a Western diet.
- Plasma IL-18 levels, splenocyte cytokine secretion, atherosclerotic lesion size, neutrophil infiltration, and neutrophil extracellular trap (NET) formation were analyzed.
Main Results:
- Myeloid Abca1/g1 deficiency led to increased plasma IL-18 and enhanced IL-1β/IL-18 secretion, indicating NLRP3 inflammasome activation.
- Nlrp3 or Caspase-1/11 deficiency reversed these effects and reduced atherosclerotic lesion size.
- Inflammasome activation promoted neutrophil accumulation and NET formation within atherosclerotic plaques, linked to systemic inflammation.
- Myeloid Abca1/g1 deficiency also activated the noncanonical inflammasome, increasing susceptibility to endotoxemia.
- Patients with Tangier disease (ABCA1 loss-of-function) exhibited elevated plasma IL-1β and IL-18 levels.
Conclusions:
- Myeloid cell cholesterol accumulation activates the NLRP3 inflammasome, promoting neutrophil recruitment and NET formation in atherosclerosis.
- These findings suggest a novel mechanism linking cholesterol metabolism, inflammasome activation, and cardiovascular disease progression.
- The observed inflammasome activation in Tangier disease patients underscores the clinical relevance of these findings.
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