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Nutrient and genetic regulation of lipoprotein metabolism

Chapter by: Fisher, E. A.; Shamir, R.; Hegele, R. A.
in: Modern nutrition in health and disease by Ross, A. Catharine [Eds]
Philadelphia : Wolters Kluwer Health/Lippincott Williams & Wilkins, 2014
pp. 849-859
ISBN: 1605474614
CID: 1323382

Development of therapeutic polymeric nanoparticles for the resolution of inflammation

Gadde, Suresh; Even-Or, Orli; Kamaly, Nazila; Hasija, Apoorva; Gagnon, Philippe G; Adusumilli, Krishna H; Erakovic, Andrea; Pal, Anoop K; Zhang, Xue-Qing; Kolishetti, Nagesh; Shi, Jinjun; Fisher, Edward A; Farokhzad, Omid C
Liver X receptors (LXRs) attenuate inflammation by modulating the expression of key inflammatory genes, making LXRs and their ligands particularly attractive candidates for therapeutic intervention in cardiovascular, metabolic, and/or inflammatory diseases. Herein, enhanced proresolving activity of polymeric nanoparticles (NPs) containing the synthetic LXR agonist GW3965 (LXR-NPs) is demonstrated, developed from a combinatorial library of more than 70 formulations with variations in critical physicochemical parameters. In vitro studies on peritoneal macrophages confirm that LXR-NPs are significantly more effective than the free agonist at downregulating pro-inflammatory mediators (MCP-1 and TNFalpha), as well as inducing the expression of LXR target genes (ABCA1 and SREBP1c). Through a zymosan-induced acute peritonitis in vivo model, LXR-NPs are found to be more efficient than free GW3965 at limiting the recruitment of polymononuclear neutrophils (50% vs 17%), suppressing the gene expression and secretion of pro-inflammatory factors MCP-1 and TNFalpha in peritoneal macrophages, and decreasing the resolution interval up to 4 h. Furthermore, LXR-NPs suppress the secretion of MCP-1 and TNFalpha by monocytes and macrophages more efficiently than the commercial drug dexamethasone. Overall, these findings demonstrate that LXR-NPs are capable of promoting resolution of inflammation and highlight the prospect of LXR-based nanotherapeutics for inflammatory diseases.
PMCID:4160375
PMID: 24659608
ISSN: 2192-2640
CID: 1323242

miR33 Inhibition Overcomes Deleterious Effects of Diabetes Mellitus on Atherosclerosis Plaque Regression in Mice

Distel, Emilie; Barrett, Tessa J; Chung, Kellie; Girgis, Natasha M; Parathath, Saj; Essau, Christine C; Murphy, Andrew J; Moore, Kathryn J; Fisher, Edward A
RATIONALE: Diabetes mellitus increases cardiovascular disease risk in humans and remains elevated despite cholesterol-lowering therapy with statins. Consistent with this, in mouse models, diabetes mellitus impairs atherosclerosis plaque regression after aggressive cholesterol lowering. MicroRNA 33 (miR33) is a key negative regulator of the reverse cholesterol transport factors, ATP-binding cassette transporter A1 and high-density lipoprotein, which suggested that its inhibition may overcome this impairment. OBJECTIVE: To assess the effects of miR33 inhibition on atherosclerosis regression in diabetic mice. METHODS AND RESULTS: Reversa mice, which are deficient in the low-density lipoprotein receptor and in which hypercholesterolemia is reversed by conditional inactivation of the microsomal triglyceride transfer protein gene, were placed on an atherogenic diet for 16 weeks, then either made diabetic by streptozotocin injection or kept normoglycemic. Lipid-lowering was induced by microsomal triglyceride transfer protein gene inactivation, and mice were treated with anti-miR33 or control oligonucleotides. Although regression was impaired in diabetic mice treated with control oligonucleotides, anti-miR33 treatment decreased plaque macrophage content and inflammatory gene expression in these mice. The decreased macrophage content in anti-miR33 treated diabetic mice was associated with a blunting of hyperglycemia-induced monocytosis and reduced monocyte recruitment to the plaque, which was traced to an inhibition of the proliferation of bone marrow monocyte precursors associated with the upregulation of their Abca1. CONCLUSIONS: miR33 inhibition overcomes deleterious effects of diabetes mellitus in atherosclerosis regression in mice, which suggests a therapeutic strategy in diabetic patients, who remain at elevated cardiovascular disease risk, despite plasma cholesterol lowering.
PMCID:4194153
PMID: 25201910
ISSN: 0009-7330
CID: 1310842

Suboptimal risk factor control in patients undergoing elective coronary or peripheral percutaneous intervention

Tully, Lisa; Gianos, Eugenia; Vani, Anish; Guo, Yu; Balakrishnan, Revathi; Schwartzbard, Arthur; Slater, James; Stein, Richard; Underberg, James; Weintraub, Howard; Fisher, Edward; Berger, Jeffrey S
BACKGROUND: The American Heart Association recommends targeting 7 cardiovascular (CV) health metrics to reduce morbidity and mortality. Control of these targets in patients undergoing CV intervention is uncertain. METHODS: We prospectively studied patients undergoing elective percutaneous coronary or peripheral intervention from November 2010 to May 2012. We recorded data on patient demographics, clinical characteristics, and social history. Risk factor control was categorized as ideal, intermediate, or poor according to the 7 American Heart Association-defined CV health metrics (smoking status, body mass index, physical activity, diet, cholesterol, blood pressure, and metabolic control). Linear regression model was used to evaluate the association between baseline characteristics and poor CV health. RESULTS: Among 830 consecutive patients enrolled, mean age is 67.3 +/- 10.8 years, 74.2% are male, and 62.1% are white. The adequacy of achievement of ideal CV health is suboptimal in our cohort; the mean number of ideal CV metrics is 2.15 +/- 1.06. Less than 1 in 10 (9.7%) met >/=4 ideal CV health metrics. After multivariate analysis, male sex (P = .04), nonwhite race (P = .01), prior coronary artery disease (P < .01), prior peripheral arterial disease (P < .01), and history of depression (P = .01) were significantly associated with poor CV health. CONCLUSIONS: Among patients referred for elective CV intervention, achievement of ideal CV health is poor. Elective interventions represent an opportunity to identify and target CV health for risk factor control and secondary prevention.
PMID: 25173542
ISSN: 0002-8703
CID: 1162852

Long-term therapeutic silencing of miR-33 increases circulating triglyceride levels and hepatic lipid accumulation in mice

Goedeke, Leigh; Salerno, Alessandro; Ramirez, Cristina M; Guo, Liang; Allen, Ryan M; Yin, Xiaoke; Langley, Sarah R; Esau, Christine; Wanschel, Amarylis; Fisher, Edward A; Suarez, Yajaira; Baldan, Angel; Mayr, Manuel; Fernandez-Hernando, Carlos
Plasma high-density lipoprotein (HDL) levels show a strong inverse correlation with atherosclerotic vascular disease. Previous studies have demonstrated that antagonism of miR-33 in vivo increases circulating HDL and reverse cholesterol transport (RCT), thereby reducing the progression and enhancing the regression of atherosclerosis. While the efficacy of short-term anti-miR-33 treatment has been previously studied, the long-term effect of miR-33 antagonism in vivo remains to be elucidated. Here, we show that long-term therapeutic silencing of miR-33 increases circulating triglyceride (TG) levels and lipid accumulation in the liver. These adverse effects were only found when mice were fed a high-fat diet (HFD). Mechanistically, we demonstrate that chronic inhibition of miR-33 increases the expression of genes involved in fatty acid synthesis such as acetyl-CoA carboxylase (ACC) and fatty acid synthase (FAS) in the livers of mice treated with miR-33 antisense oligonucleotides. We also report that anti-miR-33 therapy enhances the expression of nuclear transcription Y subunit gamma (NFYC), a transcriptional regulator required for DNA binding and full transcriptional activation of SREBP-responsive genes, including ACC and FAS. Taken together, these results suggest that persistent inhibition of miR-33 when mice are fed a high-fat diet (HFD) might cause deleterious effects such as moderate hepatic steatosis and hypertriglyceridemia. These unexpected findings highlight the importance of assessing the effect of chronic inhibition of miR-33 in non-human primates before we can translate this therapy to humans.
PMCID:4197861
PMID: 25038053
ISSN: 1757-4676
CID: 1075522

Macrophage Activation and Polarization: Nomenclature and Experimental Guidelines

Murray, Peter J; Allen, Judith E; Biswas, Subhra K; Fisher, Edward A; Gilroy, Derek W; Goerdt, Sergij; Gordon, Siamon; Hamilton, John A; Ivashkiv, Lionel B; Lawrence, Toby; Locati, Massimo; Mantovani, Alberto; Martinez, Fernando O; Mege, Jean-Louis; Mosser, David M; Natoli, Gioacchino; Saeij, Jeroen P; Schultze, Joachim L; Shirey, Kari Ann; Sica, Antonio; Suttles, Jill; Udalova, Irina; van Ginderachter, Jo A; Vogel, Stefanie N; Wynn, Thomas A
Description of macrophage activation is currently contentious and confusing. Like the biblical Tower of Babel, macrophage activation encompasses a panoply of descriptors used in different ways. The lack of consensus on how to define macrophage activation in experiments in vitro and in vivo impedes progress in multiple ways, including the fact that many researchers still consider there to be only two types of activated macrophages, often termed M1 and M2. Here, we describe a set of standards encompassing three principles-the source of macrophages, definition of the activators, and a consensus collection of markers to describe macrophage activation-with the goal of unifying experimental standards for diverse experimental scenarios. Collectively, we propose a common framework for macrophage-activation nomenclature.
PMCID:4123412
PMID: 25035950
ISSN: 1074-7613
CID: 1075452

Inflammation and its resolution as determinants of acute coronary syndromes

Libby, Peter; Tabas, Ira; Fredman, Gabrielle; Fisher, Edward A
Inflammation contributes to many of the characteristics of plaques implicated in the pathogenesis of acute coronary syndromes. Moreover, inflammatory pathways not only regulate the properties of plaques that precipitate acute coronary syndromes but also modulate the clinical consequences of the thrombotic complications of atherosclerosis. This synthesis will provide an update on the fundamental mechanisms of inflammatory responses that govern acute coronary syndromes and also highlight the ongoing balance between proinflammatory mechanisms and endogenous pathways that can promote the resolution of inflammation. An appreciation of the countervailing mechanisms that modulate inflammation in relation to acute coronary syndromes enriches our fundamental understanding of the pathophysiology of this important manifestation of atherosclerosis. In addition, these insights provide glimpses into potential novel therapeutic interventions to forestall this ultimate complication of the disease.
PMCID:4078767
PMID: 24902971
ISSN: 0009-7330
CID: 1042272

Adipose tissue macrophages promote myelopoiesis and monocytosis in obesity

Nagareddy, Prabhakara R; Kraakman, Michael; Masters, Seth L; Stirzaker, Roslynn A; Gorman, Darren J; Grant, Ryan W; Dragoljevic, Dragana; Hong, Eun Shil; Abdel-Latif, Ahmed; Smyth, Susan S; Choi, Sung Hee; Korner, Judith; Bornfeldt, Karin E; Fisher, Edward A; Dixit, Vishwa Deep; Tall, Alan R; Goldberg, Ira J; Murphy, Andrew J
Obesity is associated with infiltration of macrophages into adipose tissue (AT), contributing to insulin resistance and diabetes. However, relatively little is known regarding the origin of AT macrophages (ATMs). We discovered that murine models of obesity have prominent monocytosis and neutrophilia, associated with proliferation and expansion of bone marrow (BM) myeloid progenitors. AT transplantation conferred myeloid progenitor proliferation in lean recipients, while weight loss in both mice and humans (via gastric bypass) was associated with a reversal of monocytosis and neutrophilia. Adipose S100A8/A9 induced ATM TLR4/MyD88 and NLRP3 inflammasome-dependent IL-1beta production. IL-1beta interacted with the IL-1 receptor on BM myeloid progenitors to stimulate the production of monocytes and neutrophils. These studies uncover a positive feedback loop between ATMs and BM myeloid progenitors and suggest that inhibition of TLR4 ligands or the NLRP3-IL-1beta signaling axis could reduce AT inflammation and insulin resistance in obesity.
PMCID:4048939
PMID: 24807222
ISSN: 1550-4131
CID: 970302

Site-specific Nitration of Apolipoprotein A-I at Tyrosine 166 Is Both Abundant within Human Atherosclerotic Plaque and Dysfunctional

Didonato, Joseph A; Aulak, Kulwant; Huang, Ying; Wagner, Matthew; Gerstenecker, Gary; Topbas, Celalettin; Gogonea, Valentin; Didonato, Anthony J; Tang, W H Wilson; Mehl, Ryan A; Fox, Paul L; Plow, Edward F; Smith, Jonathan D; Fisher, Edward A; Hazen, Stanley L
We reported previously that apolipoprotein A-I (apoA-I) is oxidatively modified in the artery wall at tyrosine 166 (Tyr(166)), serving as a preferred site for post-translational modification through nitration. Recent studies, however, question the extent and functional importance of apoA-I Tyr(166) nitration based upon studies of HDL-like particles recovered from atherosclerotic lesions. We developed a monoclonal antibody (mAb 4G11.2) that recognizes, in both free and HDL-bound forms, apoA-I harboring a 3-nitrotyrosine at position 166 apoA-I (NO2-Tyr(166)-apoA-I) to investigate the presence, distribution, and function of this modified apoA-I form in atherosclerotic and normal artery wall. We also developed recombinant apoA-I with site-specific 3-nitrotyrosine incorporation only at position 166 using an evolved orthogonal nitro-Tyr-aminoacyl-tRNA synthetase/tRNACUA pair for functional studies. Studies with mAb 4G11.2 showed that NO2-Tyr(166)-apoA-I was easily detected in atherosclerotic human coronary arteries and accounted for approximately 8% of total apoA-I within the artery wall but was nearly undetectable (>100-fold less) in normal coronary arteries. Buoyant density ultracentrifugation analyses showed that NO2-Tyr(166)-apoA-I existed as a lipid-poor lipoprotein with <3% recovered within the HDL-like fraction (d = 1.063-1.21). NO2-Tyr(166)-apoA-I in plasma showed a similar distribution. Recovery of NO2-Tyr(166)-apoA-I using immobilized mAb 4G11.2 showed an apoA-I form with 88.1 +/- 8.5% reduction in lecithin-cholesterol acyltransferase activity, a finding corroborated using a recombinant apoA-I specifically designed to include the unnatural amino acid exclusively at position 166. Thus, site-specific nitration of apoA-I at Tyr(166) is an abundant modification within the artery wall that results in selective functional impairments. Plasma levels of this modified apoA-I form may provide insights into a pathophysiological process within the diseased artery wall.
PMCID:4036153
PMID: 24558038
ISSN: 0021-9258
CID: 953902

A Current Approach to Statin Intolerance

Tompkins, Rose; Schwartzbard, Arthur; Gianos, Eugenia; Fisher, Edward; Weintraub, Howard
Statins are the first line pharmacotherapy for cholesterol reduction. Use of these drugs in large, randomized clinical trials have consistently shown significant reductions in major vascular events including death, myocardial infarction, stroke, and coronary revascularization. The updated guidelines for the treatment of high blood cholesterol from the ACC/AHA, will lead to a rise in the number of patients taking statins. Hence, statin intolerance may subsequently increase, emphasizing the need to understand and treat this important problem.Clinical Pharmacology & Therapeutics (2014); Accepted article preview online 11 April 2014; doi:10.1038/clpt.2014.84.
PMID: 24727470
ISSN: 0009-9236
CID: 900722