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Niacin (vitamin B3, nicotinic acid) decreases VLDLA-polipoprotein B secretion and reduces hepatic and blood lipid concentrations: Roles of niacin metabolism and autophagy degradation [Meeting Abstract]

Guo, L; Tuyama, A; Butkinaree, C; Chung, K; O'Donnell, M D; Montenont, E; Fisher, E A
Niacin therapy, used either alone or in combination with another agent to reduced the risk of coronary heart disease, is effective in raising and lowering, respectively, HDL-c and apoB/VLDL triglyceride (TG) levels in dyslipidemia. To further understand if part of the mechanism is by reducing the secretion of apoB-containing lipoproteins through autophagy, we did a series of niacin studies in isolated primary hepatocytes or in intact mice. Metabolic labeling and pulse-chase results showed niacin increased intracellular apoB degradation by 30%, and decreased apoB/VLDL TG secretions by 40%. These effects were lost in autophagy-deficient cells. Mice fed with diet containing 3% niacin had 40% increases in plasma HDL-c. Feeding high fat diet (HFD) with niacin lowered LDL-c by 50%. Niacin was able to suppress postprandial plasma triglyceride by 30%. Niacin reduced hepatic triglyceride and cholesterol concentrations by 40% and 50%, respectively, in mice fed with HFD. These data suggest niacin decreases hepatic lipid concentrations, apoB/VLDL secretion, and modifies plasma cholesterol levels. Some of the effects required niacin metabolism and autophagy degradation
EMBASE:71153233
ISSN: 1530-6860
CID: 550802

Macrophages in atherosclerosis: a dynamic balance

Moore, Kathryn J; Sheedy, Frederick J; Fisher, Edward A
Atherosclerosis is a chronic inflammatory disease that arises from an imbalance in lipid metabolism and a maladaptive immune response driven by the accumulation of cholesterol-laden macrophages in the artery wall. Through the analysis of the progression and regression of atherosclerosis in animal models, there is a growing understanding that the balance of macrophages in the plaque is dynamic and that both macrophage numbers and the inflammatory phenotype influence plaque fate. In this Review, we summarize recently identified pro- and anti-inflammatory pathways that link lipid and inflammation biology with the retention of macrophages in plaques, as well as factors that have the potential to promote their egress from these sites.
PMCID:4357520
PMID: 23995626
ISSN: 1474-1733
CID: 542752

HDL Induces the Expression of the M2 Macrophage Markers Arginase 1 and Fizz-1 in a STAT6-Dependent Process

Sanson, Marie; Distel, Emilie; Fisher, Edward A
Our lab has previously shown in a mouse model that normalization of a low HDL level achieves atherosclerotic plaque regression. This included the shift from a pro ("M1") to an anti-inflammatory ("M2") phenotypic state of plaque macrophages. Whether HDL can directly cause this phenotypic change and, if so, what the signaling mechanism is, were explored in the present studies. Murine primary macrophages treated with HDL showed increased gene expression for the M2 markers Arginase-1 (Arg-1) and Fizz-1, which are classically induced by IL-4. HDL was able to potentiate the IL-4-induced changes in Arg-1, and tended to do the same for Fizz-1, while suppressing the expression of inflammatory genes in response to IFNgamma. The effects of either IL-4 or HDL were suppressed when macrophages were from STAT6(-/-) mice, but inhibitor studies suggested differential utilization of JAK isoforms by IL-4 and HDL to activate STAT6 by phosphorylation. Overall, our results describe a new function of HDL, namely its ability to directly enrich macrophages in markers of the M2, anti-inflammatory, state in a process requiring STAT6.
PMCID:3749183
PMID: 23991225
ISSN: 1932-6203
CID: 519522

The Cardioprotective Protein Apolipoprotein A1 Promotes Potent Anti-tumorigenic Effects

Zamanian-Daryoush, Maryam; Lindner, Daniel; Tallant, Thomas C; Wang, Zeneng; Buffa, Jennifer; Klipfell, Elizabeth; Parker, Yvonne; Hatala, Denise; Parsons-Wingerter, Patricia; Rayman, Pat; Yusufishaq, Mohamed Sharif S; Fisher, Edward A; Smith, Jonathan D; Finke, Jim; Didonato, Joseph A; Hazen, Stanley L
Here, we show that apolipoprotein A1 (apoA1), the major protein component of high density lipoprotein (HDL), through both innate and adaptive immune processes, potently suppresses tumor growth and metastasis in multiple animal tumor models, including the aggressive B16F10L murine malignant melanoma model. Mice expressing the human apoA1 transgene (A1Tg) exhibited increased infiltration of CD11b(+) F4/80(+) macrophages with M1, anti-tumor phenotype, reduced tumor burden and metastasis, and enhanced survival. In contrast, apoA1-deficient (A1KO) mice showed markedly heightened tumor growth and reduced survival. Injection of human apoA1 into A1KO mice inoculated with tumor cells remarkably reduced both tumor growth and metastasis, enhanced survival, and promoted regression of both tumor and metastasis burden when administered following palpable tumor formation and metastasis development. Studies with apolipoprotein A2 revealed the anti-cancer therapeutic effect was specific to apoA1. In vitro studies ruled out substantial direct suppressive effects by apoA1 or HDL on tumor cells. Animal models defective in different aspects of immunity revealed both innate and adaptive arms of immunity contribute to complete apoA1 anti-tumor activity. This study reveals a potent immunomodulatory role for apoA1 in the tumor microenvironment, altering tumor-associated macrophages from a pro-tumor M2 to an anti-tumor M1 phenotype. Use of apoA1 to redirect in vivo elicited tumor-infiltrating macrophages toward tumor rejection may hold benefit as a potential cancer therapeutic.
PMCID:3774392
PMID: 23720750
ISSN: 0021-9258
CID: 490032

Laser capture microdissection for analysis of macrophage gene expression from atherosclerotic lesions

Feig, Jonathan E; Fisher, Edward A
Coronary artery disease, resulting from atherosclerosis, is the leading cause of death in the Western world. Most previous studies have subjected atherosclerotic arteries, a tissue of mixed cellular composition, to homogenization in order to identify the factors in plaque development, thereby obscuring information relevant to specific cell types. Because macrophage foam cells are critical mediators in atherosclerotic plaque advancement, we reasoned that performing gene analysis on those cells would provide specific insight in novel regulatory factors and potential therapeutic targets. We demonstrated for the first time in vascular biology that foam cell-specific RNA can be isolated by laser capture microdissection (LCM) of plaques. As expected, compared to whole tissue, a significant enrichment in foam cell-specific RNA transcripts was observed. Furthermore, because regression of atherosclerosis is a tantalizing clinical goal, we developed and reported a transplantation-based mouse model. This involved allowing plaques to form in apoE-/- mice and then changing the plaque's plasma environment from hyperlipidemia to normolipidemia. Under those conditions, rapid regression ensued in a process involving emigration of plaque foam cells to regional and systemic lymph nodes. Using LCM, we were able to show that under regression conditions, there was decreased expression in foam cells of inflammatory genes, but an up-regulation of cholesterol efflux genes. Interestingly, we also found that increased expression of chemokine receptor CCR7, a known factor in dendritic cell migration, was required for regression. In conclusion, the LCM methods described in this chapter, which have already lead to a number of striking findings, will likely further facilitate the study of cell type-specific gene expression in animal and human plaques during various stages of atherosclerosis, and after genetic, pharmacologic, and environmental perturbations.
PMCID:4278963
PMID: 23912984
ISSN: 1064-3745
CID: 484152

Paradoxical Association of Enhanced Cholesterol Efflux With Increased Incident Cardiovascular Risks

Li, Xin-Min; Tang, Wai Hong Wilson; Mosior, Marian K; Huang, Ying; Wu, Yuping; Matter, William; Gao, Vivian; Schmitt, David; Didonato, Joseph A; Fisher, Edward A; Smith, Jonathan D; Hazen, Stanley L
OBJECTIVE: Diminished cholesterol efflux activity of apolipoprotein B (apoB)-depleted serum is associated with prevalent coronary artery disease, but its prognostic value for incident cardiovascular events is unclear. We investigated the relationship of cholesterol efflux activity with both prevalent coronary artery disease and incident development of major adverse cardiovascular events (death, myocardial infarction, or stroke). APPROACH AND RESULTS: Cholesterol efflux activity from free cholesterol-enriched macrophages was measured in 2 case-control cohorts: (1) an angiographic cohort (n=1150) comprising stable subjects undergoing elective diagnostic coronary angiography and (2) an outpatient cohort (n=577). Analysis of media from cholesterol efflux assays revealed that the high-density lipoprotein fraction (1.063
PMCID:3743250
PMID: 23520163
ISSN: 1079-5642
CID: 449802

Hyperglycemia promotes myelopoiesis and impairs the resolution of atherosclerosis

Nagareddy, Prabhakara R; Murphy, Andrew J; Stirzaker, Roslynn A; Hu, Yunying; Yu, Shiquing; Miller, Rachel G; Ramkhelawon, Bhama; Distel, Emilie; Westerterp, Marit; Huang, Li-Shin; Schmidt, Ann Marie; Orchard, Trevor J; Fisher, Edward A; Tall, Alan R; Goldberg, Ira J
Diabetes is a major risk factor for atherosclerosis. Although atherosclerosis is initiated by deposition of cholesterol-rich lipoproteins in the artery wall, the entry of inflammatory leukocytes into lesions fuels disease progression and impairs resolution. We show that diabetic mice have increased numbers of circulating neutrophils and Ly6-C(hi) monocytes, reflecting hyperglycemia-induced proliferation and expansion of bone marrow myeloid progenitors and release of monocytes into the circulation. Increased neutrophil production of S100A8/S100A9, and its subsequent interaction with the receptor for advanced glycation end products on common myeloid progenitor cells, leads to enhanced myelopoiesis. Treatment of hyperglycemia reduces monocytosis, entry of monocytes into atherosclerotic lesions, and promotes regression. In patients with type 1 diabetes, plasma S100A8/S100A9 levels correlate with leukocyte counts and coronary artery disease. Thus, hyperglycemia drives myelopoiesis and promotes atherogenesis in diabetes.
PMCID:3992275
PMID: 23663738
ISSN: 1550-4131
CID: 426002

The complex fate in plasma of gadolinium incorporated into high-density lipoproteins used for magnetic imaging of atherosclerotic plaques

Barazza, Alessandra; Blachford, Courtney; Even-Or, Orli; Joaquin, Victor A; Briley-Saebo, Karen C; Chen, Wei; Jiang, Xian-Cheng; Mulder, Willem J M; Cormode, David P; Fayad, Zahi A; Fisher, Edward A
We have previously reported enhancing the imaging of atherosclerotic plaques in mice using reconstituted high density lipoproteins (HDL) as nanocarriers for the MRI contrast agent gadolinium (Gd). This study focuses on the underlying mechanisms of Gd delivery to atherosclerotic plaques. HDL, LDL, and VLDL particles containing Gd chelated to phosphatidyl ethanolamine (DTPA-DMPE) and a lipidic fluorophore were used to demonstrate the transfer of Gd-phospholipids among plasma lipoproteins in vitro and in vivo. To determine the basis of this transfer, the roles of phospholipid transfer protein (PLTP) and lipoprotein lipase (LpL) in mediating the migration of Gd-DTPA-DMPE among lipoproteins were investigated. The results indicated that neither was an important factor, suggesting that spontaneous transfer of Gd-DTPA-DMPE was the most probable mechanism. Finally, two independent mouse models were used to quantify the relative contributions of HDL and LDL reconstituted with Gd-DTPA-DMPE to plaque imaging enhancement by MR. Both sets of results suggested that Gd-DTPA-DMPE originally associated with LDL was about twice as effective as that injected in the form of Gd-HDL, and that some of Gd-HDL's effectiveness in vivo is indirect through transfer of the imaging agent to LDL. In conclusion, the fate of Gd-DTPA-DMPE associated with a particular type of lipoprotein is complex, and includes its transfer to other lipoprotein species that are then cleared from the plasma into tissues.
PMCID:3928357
PMID: 23617731
ISSN: 1043-1802
CID: 394002

A real time chemotaxis assay unveils unique migratory profiles amongst different primary murine macrophages

Iqbal, Asif J; Regan-Komito, Daniel; Christou, Ivy; White, Gemma E; McNeill, Eileen; Kenyon, Amy; Taylor, Lewis; Kapellos, Theodore S; Fisher, Edward A; Channon, Keith M; Greaves, David R
Chemotaxis assays are an invaluable tool for studying the biological activity of inflammatory mediators such as CC chemokines, which have been implicated in a wide range of chronic inflammatory diseases. Conventional chemotaxis systems such as the modified Boyden chamber are limited in terms of the data captured given that the assays are analysed at a single time-point. We report the optimisation and validation of a label-free, real-time cell migration assay based on electrical cell impedance to measure chemotaxis of different primary murine macrophage populations in response to a range of CC chemokines and other chemoattractant signalling molecules. We clearly demonstrate key differences in the migratory behavior of different murine macrophage populations and show that this dynamic system measures true macrophage chemotaxis rather than chemokinesis or fugetaxis. We highlight an absolute requirement for Galphai signaling and actin cytoskeletal rearrangement as demonstrated by Pertussis toxin and cytochalasin D inhibition. We also studied the chemotaxis of CD14(+) human monocytes and demonstrate distinct chemotactic profiles amongst different monocyte donors to CCL2. This real-time chemotaxis assay will allow a detailed analysis of factors that regulate macrophage responses to chemoattractant cytokines and inflammatory mediators.
PMCID:3597586
PMID: 23516549
ISSN: 1932-6203
CID: 350012

Dysfunctional HDL Takes Its Toll in Chronic Kidney Disease

Moore, Kathryn J; Fisher, Edward A
Why patients with chronic kidney disease have elevated cardiovascular risk remains elusive. In this issue of Immunity, Speer et al. (2013) show that natural modification of high density lipoprotein promotes hypertension through a toll-like receptor-dependent mechanism.
PMID: 23601680
ISSN: 1074-7613
CID: 348682