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1.
J Lipid Res ; 58(4): 752-762, 2017 04.
Article in English | MEDLINE | ID: mdl-28167703

ABSTRACT

Reverse cholesterol transport (RCT) is thought to be an atheroprotective function of HDL, and macrophage-specific RCT in mice is inversely associated with atherosclerosis. We developed a novel method using 3H-cholesterol nanoparticles to selectively trace macrophage-specific RCT in vivo in humans. Use of 3H-cholesterol nanoparticles was initially tested in mice to assess the distribution of tracer and response to interventions known to increase RCT. Thirty healthy subjects received 3H-cholesterol nanoparticles intravenously, followed by blood and stool sample collection. Tracer counts were assessed in plasma, nonHDL, HDL, and fecal fractions. Data were analyzed by using multicompartmental modeling. Administration of 3H-cholesterol nanoparticles preferentially labeled macrophages of the reticuloendothelial system in mice, and counts were increased in mice treated with a liver X receptor agonist or reconstituted HDL, as compared with controls. In humans, tracer disappeared from plasma rapidly after injection of nanoparticles, followed by reappearance in HDL and nonHDL fractions. Counts present as free cholesterol increased rapidly and linearly in the first 240 min after nadir; counts in cholesteryl ester increased steadily over time. Estimates of fractional transfer rates of key RCT steps were obtained. These results support the use of 3H-cholesterol nanoparticles as a feasible approach for the measurement of macrophage RCT in vivo in humans.


Subject(s)
Atherosclerosis/blood , Cholesterol, HDL/blood , Cholesterol/blood , Lipoproteins, HDL/metabolism , Adolescent , Adult , Aged , Animals , Atherosclerosis/pathology , Biological Transport/genetics , Cholesterol/chemistry , Cholesterol/genetics , Cholesterol, HDL/chemistry , Cholesterol, HDL/isolation & purification , Feces/chemistry , Female , Humans , Lipoproteins, HDL/isolation & purification , Liver/metabolism , Liver/pathology , Liver X Receptors/agonists , Liver X Receptors/blood , Macrophages/metabolism , Male , Mice , Middle Aged , Nanoparticles/administration & dosage , Nanoparticles/chemistry
2.
J Lipid Res ; 54(9): 2400-9, 2013 Sep.
Article in English | MEDLINE | ID: mdl-23614904

ABSTRACT

Proprotein convertase subtilisin-kexin-9 (PCSK9) inhibition markedly augments the LDL lowering action of statins. The combination is being evaluated for long-term effects on atherosclerotic disease outcomes. However, effects of combined treatment on hepatic cholesterol and bile acid metabolism have not yet been reported. To study this, PCSK9-Y119X mutant (knockout) and wild-type mice were treated with or without atorvastatin for 12 weeks. Atorvastatin progressively lowered plasma LDL in each group, but no differences in liver cholesterol, cholesterol ester, or total bile acid concentrations, or in plasma total bile acid levels were seen. In contrast, atorvastatin increased fecal total bile acids (≈ 2-fold, P < 0.01) and cholesterol concentrations (≈ 3-fold, P < 0.01) versus controls for both PCSK9-Y119X and wild-type mice. All 14 individual bile acids resolved by LC-MS, including primary, secondary, and conjugated species, reflected similar increases. Expression of key liver bile acid synthesis genes CYP7A1 and CYP8B1 were ≈ 2.5-fold higher with atorvastatin in both strains, but mRNA for liver bile acid export and reuptake transporters and conjugating enzymes were not unaffected. The data suggest that hepatocyte cholesterol and bile acid homeostasis is maintained with combined PCSK9 and HMG-CoA reductase inhibition through efficient liver enzymatic conversion of LDL-derived cholesterol into bile acids and excretion of both, with undisturbed enterohepatic recycling.


Subject(s)
Bile Acids and Salts/metabolism , Cholesterol/metabolism , Hydroxymethylglutaryl-CoA Reductase Inhibitors/pharmacology , Proprotein Convertases/antagonists & inhibitors , Protease Inhibitors/pharmacology , Animals , Biological Transport/drug effects , Cholesterol/blood , Drug Interactions , Feces/chemistry , Female , Gene Expression Regulation/drug effects , Liver/drug effects , Liver/metabolism , Male , Mice , Mice, Inbred C57BL , Phenotype , Proprotein Convertase 9 , Serine Endopeptidases
3.
ACS Pharmacol Transl Sci ; 5(10): 892-906, 2022 Oct 14.
Article in English | MEDLINE | ID: mdl-36268126

ABSTRACT

Formyl peptide receptor 2 (FPR2) plays an integral role in the transition of macrophages from a pro-inflammatory program to one that is pro-resolving. FPR2-mediated stimulation of resolution post myocardial infarction has demonstrated efficacy in rodent models and is hypothesized to reduce progression into heart failure. FPR2 agonists that promote long-lasting receptor internalization can lead to persistent desensitization and diminished therapeutic benefits. In vitro signaling profiles and propensities for receptor desensitization of two clinically studied FPR2 agonists, namely, BMS-986235 and ACT-389949, were evaluated. In contrast to BMS-986235, pre-stimulation with ACT-389949 led to a decrease in its potency to inhibit cAMP production. Moreover, ACT-389949 displayed greater efficacy for ß-arrestin recruitment, while efficacy of Gi activation was similar for both agonists. Following agonist-promoted FPR2 internalization, effective recycling to the plasma membrane was observed only with BMS-986235. Use of G protein-coupled receptor kinase (GRK) knock-out cells revealed a differential impact of GRK2 versus GRK5/6 on ß-arrestin recruitment and Gi activation promoted by the two FPR2 agonists. In vivo, decreases of granulocytes in circulation were greatly diminished in mice treated with ACT-389949 but not for BMS-986235. With short-term dosing, both compounds induced a pro-resolution polarization state in cardiac monocyte/macrophages post myocardial infarction. By contrast, with long-term dosing, only BMS-986235 preserved the infarct wall thickness and increased left ventricular ejection fraction in a rat model of myocardial infarction. Altogether, the study shows that differences in the desensitization profiles induced by ACT-389949 and BMS-986235 at the molecular level may explain their distinct inflammatory/pro-resolving activities in vivo.

4.
JACC Basic Transl Sci ; 6(8): 676-689, 2021 Aug.
Article in English | MEDLINE | ID: mdl-34466754

ABSTRACT

Dysregulated inflammation following myocardial infarction (MI) leads to maladaptive healing and remodeling. The study characterized and evaluated a selective formyl peptide receptor 2 (FPR2) agonist BMS-986235 in cellular assays and in rodents undergoing MI. BMS-986235 activated G proteins and promoted ß-arrestin recruitment, enhanced phagocytosis and neutrophil apoptosis, regulated chemotaxis, and stimulated interleukin-10 and monocyte chemoattractant protein-1 gene expression. Treatment with BMS-986235 improved mouse survival, reduced left ventricular area, reduced scar area, and preserved wall thickness. Treatment increased macrophage arginase-1 messenger RNA and CD206 receptor levels indicating a proresolution phenotype. In rats following MI, BMS-986235 preserved viable myocardium, attenuated left ventricular remodeling, and increased ejection fraction relative to control animals. Therefore, FPR2 agonism improves post-MI healing, limits remodeling and preserves function, and may offer an innovative therapeutic option to improve outcomes.

5.
JACC Basic Transl Sci ; 4(8): 905-920, 2019 Dec.
Article in English | MEDLINE | ID: mdl-31909300

ABSTRACT

Dysregulated inflammation following myocardial infarction (MI) promotes left ventricular (LV) remodeling and loss of function. Targeting inflammation resolution by activating formyl peptide receptors (FPRs) may limit adverse remodeling and progression towards heart failure. This study characterized the cellular and signaling properties of Compound 43 (Cmpd43), a dual FPR1/FPR2 agonist, and examined whether Cmpd43 treatment improves LV and infarct remodeling in rodent MI models. Cmpd43 stimulated FPR1/2-mediated signaling, enhanced proresolution cellular function, and modulated cytokines. Cmpd43 increased LV function and reduced chamber remodeling while increasing proresolution macrophage markers. The findings demonstrate that FPR agonism improves cardiac structure and function post-MI.

6.
J Pharmacol Exp Ther ; 324(2): 576-86, 2008 Feb.
Article in English | MEDLINE | ID: mdl-17986646

ABSTRACT

Statins, because of their excellent efficacy and manageable safety profile, represent a key component in the current armamentarium for the treatment of hypercholesterolemia. Nonetheless, myopathy remains a safety concern for this important drug class. Cerivastatin was withdrawn from the market for myotoxicity safety concerns. BMS-423526 [{(3R,5S)-7-[4-(4-fluorophenyl)-6,7-dihydro-2-(1-methylethyl)-5H-benzo[6,7]cyclohepta[1,2-b]pyridin-3-yl]-3,5-dihydroxy-heptenoic acid} sodium salt], similar to cerivastatin in potency and lipophilicity, was terminated in early clinical development due to an unacceptable myotoxicity profile. In this report, we describe the guinea pig as a model of statin-induced cholesterol lowering and myotoxicity and show that this model can distinguish statins with unacceptable myotoxicity profiles from statins with acceptable safety profiles. In our guinea pig model, both cerivastatin and BMS-423526 induced myotoxicity at doses near the ED(50) for total cholesterol (TC) lowering in plasma. In contrast, wide differences between myotoxic and TC-lowering doses were established for the currently marketed, more hydrophilic statins, pravastatin, rosuvastatin, and atorvastatin. This in vivo model compared favorably to an in vitro model, which used statin inhibition of cholesterol synthesis in rat hepatocytes and L6 myoblasts as surrogates of potential efficacy and toxicity, respectively. Our conclusion is that the guinea pig is a useful preclinical in vivo model for demonstrating whether a statin is likely to have an acceptable therapeutic safety margin.


Subject(s)
Guinea Pigs/metabolism , Hydroxymethylglutaryl-CoA Reductase Inhibitors/adverse effects , Models, Animal , Animals , Cells, Cultured , Drug Evaluation, Preclinical/methods , Guinea Pigs/blood , Male , Muscle, Skeletal/drug effects , Muscle, Skeletal/metabolism , Rats , Rats, Sprague-Dawley
7.
J Med Chem ; 51(9): 2722-33, 2008 May 08.
Article in English | MEDLINE | ID: mdl-18412317

ABSTRACT

3-hydroxy-3-methylglutaryl coenzyme-A reductase (HMGR) inhibitors, more commonly known as statins, represent the gold standard in treating hypercholesterolemia. Although statins are regarded as generally safe, they are known to cause myopathy and, in rare cases, rhabdomyolysis. Statin-dependent effects on plasma lipids are mediated through the inhibition of HMGR in the hepatocyte, whereas evidence suggests that myotoxicity is due to inhibition of HMGR within the myocyte. Thus, an inhibitor with increased selectivity for hepatocytes could potentially result in an improved therapeutic window. Implementation of a strategy that focused on in vitro potency, compound polarity, cell selectivity, and oral absorption, followed by extensive efficacy and safety modeling in guinea pig and rat, resulted in the identification of compound 1b (BMS-644950). Using this discovery pathway, we compared 1b to other marketed statins to demonstrate its outstanding efficacy and safety profile. With the potential to generate an excellent therapeutic window, 1b was advanced into clinical development.


Subject(s)
Hydroxymethylglutaryl CoA Reductases/metabolism , Hydroxymethylglutaryl-CoA Reductase Inhibitors/chemical synthesis , Pyrimidines/chemical synthesis , Triazoles/chemical synthesis , Administration, Oral , Animals , Biological Availability , Chemical and Drug Induced Liver Injury/etiology , Cholesterol/biosynthesis , Cholesterol/blood , Crystallography, X-Ray , Dogs , Female , Guinea Pigs , Haplorhini , Humans , Hydroxymethylglutaryl CoA Reductases/chemistry , Hydroxymethylglutaryl-CoA Reductase Inhibitors/pharmacology , Hydroxymethylglutaryl-CoA Reductase Inhibitors/toxicity , In Vitro Techniques , Liver/drug effects , Liver/metabolism , Models, Molecular , Muscle Cells/cytology , Muscle Cells/drug effects , Muscle Cells/metabolism , Pyrimidines/pharmacology , Pyrimidines/toxicity , Rats , Rats, Sprague-Dawley , Stereoisomerism , Structure-Activity Relationship , Triazoles/pharmacology , Triazoles/toxicity
8.
Cell Metab ; 24(2): 223-33, 2016 08 09.
Article in English | MEDLINE | ID: mdl-27508871

ABSTRACT

The development of LXR agonists for the treatment of coronary artery disease has been challenged by undesirable properties in animal models. Here we show the effects of an LXR agonist on lipid and lipoprotein metabolism and neutrophils in human subjects. BMS-852927, a novel LXRß-selective compound, had favorable profiles in animal models with a wide therapeutic index in cynomolgus monkeys and mice. In healthy subjects and hypercholesterolemic patients, reverse cholesterol transport pathways were induced similarly to that in animal models. However, increased plasma and hepatic TG, plasma LDL-C, apoB, apoE, and CETP and decreased circulating neutrophils were also evident. Furthermore, similar increases in LDL-C were observed in normocholesterolemic subjects and statin-treated patients. The primate model markedly underestimated human lipogenic responses and did not predict human neutrophil effects. These studies demonstrate both beneficial and adverse LXR agonist clinical responses and emphasize the importance of further translational research in this area.


Subject(s)
Cell Movement , Imidazoles/adverse effects , Imidazoles/pharmacology , Lipid Metabolism , Lipoproteins/metabolism , Liver X Receptors/agonists , Neutrophils/metabolism , ATP Binding Cassette Transporter 1/genetics , ATP Binding Cassette Transporter 1/metabolism , ATP Binding Cassette Transporter, Subfamily G, Member 1/genetics , ATP Binding Cassette Transporter, Subfamily G, Member 1/metabolism , Adipose Tissue/metabolism , Adolescent , Adult , Animals , Cell Movement/drug effects , Cholesterol/blood , Cholesterol/metabolism , Healthy Volunteers , Humans , Hydroxymethylglutaryl-CoA Reductase Inhibitors/pharmacology , Hydroxymethylglutaryl-CoA Reductase Inhibitors/therapeutic use , Hypercholesterolemia/blood , Hypercholesterolemia/drug therapy , Imidazoles/therapeutic use , Leukocyte Count , Lipoproteins/blood , Macaca fascicularis , Macrophages/metabolism , Male , Mice, Inbred C57BL , Mononuclear Phagocyte System/metabolism , RNA, Messenger/genetics , RNA, Messenger/metabolism , Rats , Triglycerides/blood , Young Adult
9.
PLoS One ; 9(10): e111385, 2014.
Article in English | MEDLINE | ID: mdl-25360548

ABSTRACT

BACKGROUND: P2Y(6), a purinergic receptor for UDP, is enriched in atherosclerotic lesions and is implicated in pro-inflammatory responses of key vascular cell types and macrophages. Evidence for its involvement in atherogenesis, however, has been lacking. Here we use cell-based studies and three murine models of atherogenesis to evaluate the impact of P2Y(6) deficiency on atherosclerosis. METHODOLOGY/PRINCIPAL FINDINGS: Cell-based studies in 1321N1 astrocytoma cells, which lack functional P2Y(6) receptors, showed that exogenous expression of P2Y(6) induces a robust, receptor- and agonist-dependent secretion of inflammatory mediators IL-8, IL-6, MCP-1 and GRO1. P2Y(6)-mediated inflammatory responses were also observed, albeit to a lesser extent, in macrophages endogenously expressing P2Y(6) and in acute peritonitis models of inflammation. To evaluate the role of P2Y(6) in atherosclerotic lesion development, we used P2Y(6)-deficient mice in three mouse models of atherosclerosis. A 43% reduction in aortic arch plaque was observed in high fat-fed LDLR knockout mice lacking P2Y(6) receptors in bone marrow-derived cells. In contrast, no effect on lesion development was observed in fat-fed whole body P2Y(6)xLDLR double knockout mice. Interestingly, in a model of enhanced vascular inflammation using angiotensin II, P2Y(6) deficiency enhanced formation of aneurysms and exhibited a trend towards increased atherosclerosis in the aorta of LDLR knockout mice. CONCLUSIONS: P2Y(6) receptor augments pro-inflammatory responses in macrophages and exhibits a pro-atherogenic role in hematopoietic cells. However, the overall impact of whole body P2Y(6) deficiency on atherosclerosis appears to be modest and could reflect additional roles of P2Y(6) in vascular disease pathophysiologies, such as aneurysm formation.


Subject(s)
Atherosclerosis/metabolism , Macrophages/metabolism , Receptors, Purinergic P2/metabolism , Animals , Atherosclerosis/immunology , Cell Line, Tumor , Cytokines/metabolism , Female , Gene Knockout Techniques , Humans , Inflammation/metabolism , Male , Mice , Mice, Inbred C57BL , Phenotype , Receptors, LDL/deficiency , Receptors, LDL/genetics , Receptors, Purinergic P2/deficiency , Receptors, Purinergic P2/genetics
10.
PLoS One ; 8(2): e53192, 2013.
Article in English | MEDLINE | ID: mdl-23383297

ABSTRACT

BACKGROUND: Chronic glucocorticoid excess has been linked to increased atherosclerosis and general cardiovascular risk in humans. The enzyme 11ß-hydroxysteroid dehydrogenase type 1 (11ßHSD1) increases active glucocorticoid levels within tissues by catalyzing the conversion of cortisone to cortisol. Pharmacological inhibition of 11ßHSD1 has been shown to reduce atherosclerosis in murine models. However, the cellular and molecular details for this effect have not been elucidated. METHODOLOGY/PRINCIPAL FINDINGS: To examine the role of 11ßHSD1 in atherogenesis, 11ßHSD1 knockout mice were created on the pro-atherogenic apoE⁻/⁻ background. Following 14 weeks of Western diet, aortic cholesterol levels were reduced 50% in 11ßHSD1⁻/⁻/apoE⁻/⁻ mice vs. 11ßHSD1⁺/⁺/apoE⁻/⁻ mice without changes in plasma cholesterol. Aortic 7-ketocholesterol content was reduced 40% in 11ßHSD1⁻/⁻/apoE⁻/⁻ mice vs. control. In the aortic root, plaque size, necrotic core area and macrophage content were reduced ∼30% in 11ßHSD1⁻/⁻/apoE⁻/⁻mice. Bone marrow transplantation from 11ßHSD1⁻/⁻/apoE⁻/⁻ mice into apoE⁻/⁻ recipients reduced plaque area 39-46% in the thoracic aorta. In vivo foam cell formation was evaluated in thioglycollate-elicited peritoneal macrophages from 11ßHSD1⁺/⁺/apoE⁻/⁻ and 11ßHSD1⁻/⁻/apoE⁻/⁻ mice fed a Western diet for ∼5 weeks. Foam cell cholesterol levels were reduced 48% in 11ßHSD1⁻/⁻/apoE⁻/⁻ mice vs. control. Microarray profiling of peritoneal macrophages revealed differential expression of genes involved in inflammation, stress response and energy metabolism. Several toll-like receptors (TLRs) were downregulated in 11ßHSD1⁻/⁻/apoE⁻/⁻ mice including TLR 1, 3 and 4. Cytokine release from 11ßHSD1⁻/⁻/apoE⁻/⁻-derived peritoneal foam cells was attenuated following challenge with oxidized LDL. CONCLUSIONS: These findings suggest that 11ßHSD1 inhibition may have the potential to limit plaque development at the vessel wall and regulate foam cell formation independent of changes in plasma lipids. The diminished cytokine response to oxidized LDL stimulation is consistent with the reduction in TLR expression and suggests involvement of 11ßHSD1 in modulating binding of pro-atherogenic TLR ligands.


Subject(s)
11-beta-Hydroxysteroid Dehydrogenase Type 1/genetics , 11-beta-Hydroxysteroid Dehydrogenase Type 1/metabolism , Apolipoproteins E/genetics , Atherosclerosis/metabolism , Foam Cells/metabolism , Glucocorticoids/metabolism , Analysis of Variance , Animals , Atherosclerosis/prevention & control , Blood Pressure , Bone Marrow Transplantation , Cholesterol/metabolism , Diet, Atherogenic , Ketocholesterols/metabolism , Lipids/blood , Male , Mice , Mice, Knockout , Oligonucleotide Array Sequence Analysis , Reverse Transcriptase Polymerase Chain Reaction , Toll-Like Receptors/metabolism
11.
Bioorg Med Chem Lett ; 13(6): 1093-6, 2003 Mar 24.
Article in English | MEDLINE | ID: mdl-12643919

ABSTRACT

A series of 4'-[(imidazol-1-yl)methyl]biphenylsulfonamides has potent antagonist activity against both angiotensin II AT(1) and endothelin ET(A) receptors. Such dual-acting antagonists could have utility in the treatment of hypertension, heart failure, and other cardiovascular diseases in a broad patient population. Certain compounds in the present series are orally active in a rat model of angiotensin II-mediated hypertension.


Subject(s)
Angiotensin Receptor Antagonists , Biphenyl Compounds/chemical synthesis , Biphenyl Compounds/pharmacology , Endothelin Receptor Antagonists , Sulfonamides/chemical synthesis , Sulfonamides/pharmacology , Animals , Binding Sites/drug effects , Blood Pressure/drug effects , Caco-2 Cells , Drug Design , Humans , Imidazoles/chemical synthesis , Imidazoles/pharmacology , Indicators and Reagents , Male , Rats , Rats, Sprague-Dawley , Receptor, Angiotensin, Type 1 , Receptor, Endothelin A , Structure-Activity Relationship
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