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Quantification of Monocyte Transmigration and Foam Cell Formation from Individuals with Chronic Inflammatory Conditions
Published on: October 17, 2017
Lipoprotein (a) integrates monocyte-mediated thrombosis and inflammation in atherosclerotic cardiovascular disease
Robert S Rosenson1, Ashley M Tate2, Olga G Grushko2
1Metabolism and Lipids Program, Mount Sinai Fuster Heart Hospital, Icahn School of Medicine at Mount Sinai, New York, USA.
Insights
Elevated lipoprotein (a) [Lp(a)] amplifies atherosclerotic cardiovascular disease risk by activating monocytes. This study reveals Lp(a) triggers inflammation and thrombosis via Toll-like receptor 2 and NFκB signaling, highlighting a novel immunothrombotic mechanism.
Area of Science:
- Cardiovascular Biology
- Immunology
- Molecular Medicine
Background:
- Elevated lipoprotein (a) [Lp(a)] is a causal risk factor for atherosclerotic cardiovascular disease (ASCVD).
- Lp(a) is implicated in ASCVD pathogenesis through cholesterol transport, inflammation, and thrombosis.
- The precise mechanisms integrating these pathways remain incompletely understood.
Purpose of the Study:
- To elucidate the molecular mechanisms linking Lp(a) to monocyte-driven inflammation and thrombosis in ASCVD patients.
- To define immune cellular and molecular phenotypes associated with high Lp(a) levels.
Main Methods:
- Systems biology approaches including proteomics, transcriptomics, and mass cytometry.
- Analysis of 64 stable ASCVD patients stratified by high and low Lp(a) levels.
- In vitro monocyte activation assays to investigate Lp(a) signaling pathways.
Main Results:
- Patients with high Lp(a) exhibited elevated circulating inflammatory markers (CCL28, IL-17D) and vascular dysfunction markers (tissue factor [TF]).
- CD14+ monocytes from high Lp(a) patients showed increased baseline and stress-induced TF expression.
- Lp(a) directly activates monocytes via Toll-like receptor 2 (TLR2) and nuclear factor kappa B (NFκB) signaling, upregulating TF induction and activity.
Conclusions:
- This study establishes a novel link between Lp(a) and monocyte-mediated inflammation and thrombosis.
- A previously unrecognized mechanism involving TLR2, NFκB, and monocyte TF amplifies Lp(a)-driven immunothrombotic risk.
- Targeting this pathway may offer new therapeutic strategies for ASCVD.
Abstract:
Elevated levels of lipoprotein (a) [Lp(a)], an apolipoprotein B particle, are causally linked to atherosclerotic cardiovascular disease (ASCVD). Lp(a) is thought to promote ASCVD through multiple mechanisms, including its effects on cholesterol transport, inflammation, and thrombosis. This study defines the mechanisms that integrate Lp(a)-mediated cholesterol accumulation, inflammation, and thrombosis. In this study, we employed systems biology approaches, including proteomics, transcriptomics, and mass cytometry, to define the immune cellular and molecular phenotypes in patients with ASCVD having high and low Lp(a) levels and the molecular mechanisms through which Lp(a) mediates monocyte-driven inflammation and thrombosis. In 64 stable patients with ASCVD (41 with high Lp(a) [median Lp(a) 228.7 nmol/L] and 23 with low Lp(a) [median Lp(a) 17.8 nmol/L]), we found that circulating markers of inflammation (CCL28, IL-17D) and vascular dysfunction (tissue factor [TF]; 6.4 vs. 5.7 normalized protein expression (NPX); P = 0.01) were elevated in patients with high Lp(a) levels compared with those with low Lp(a) levels. Although total monocyte and hsCRP levels were similar between the groups, CD14+ monocytes from patients with ASCVD having an elevated Lp(a) were primed and expressed more TF at baseline and in response to stress. Mechanistically, we found that Lp(a) itself can activate monocytes through Toll-like receptor 2 (TLR2) and nuclear factor kappa B (NFκB) signaling, driving both the induction of TF and TF activity. Overall, these studies are the first to link Lp(a) to monocyte-mediated inflammation and thrombosis. This study demonstrates a novel mechanism through TLR2, NFκB, and monocyte TF by which Lp(a) amplifies immunothrombotic risk.
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