Roles of Sphingolipids in the Pathophysiology of Obesity and Diabetes
Roles of Sphingolipids in the Pathophysiology of Obesity and Diabetes
批准号:
8541438
负责人:
Lauren Ashley Cowart
金额:
$0.0万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-04-01 至 2017-03-31
关键词:
3T3-L1 CellsAblationAddressAdipocytesAdipose tissueAgonistAnimalsAtherosclerosisAttenuatedAwardCCL2 geneCardiovascular DiseasesCell physiologyCellsChemotaxisCountryDataDiabetes MellitusDietDiseaseEvaluationEventExhibitsFatty AcidsFatty acid glycerol estersFunctional disorderFundingG-Protein-Coupled ReceptorsGeneral PopulationGlucoseGoalsHealthHealthcareImmuneIndividualInfiltrationInflammationInflammatoryInsulinInsulin ResistanceInterleukin-6LecithinLigandsLinkLipidsLiver diseasesMalignant NeoplasmsMeasuresMediatingMedical centerMetabolic syndromeModelingMusMuscleMuscle FibersNon-Insulin-Dependent Diabetes MellitusObesityObesity associated diseaseOverweightPalmitatesPathologyPathway interactionsPatientsPeroxisome Proliferator-Activated ReceptorsPharmaceutical PreparationsPlaguePlasmaPlayPopulationPreventionProductionPropertyPublishingReceptor SignalingRegulationRelative (related person)ResearchRoleSPHK1 enzymeSignal PathwaySignal TransductionSkeletal MuscleSphingolipidsSphingosine-1-Phosphate ReceptorTestingUnited StatesVeteransWorkadipokinesattenuationbasecell typecytokinefeedingglucose tolerancein vivolipid mediatorlipid metabolismmigrationnew therapeutic targetnovelnovel therapeuticspreventpromoterpublic health relevancereceptorsphingosine 1-phosphate
中文摘要
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英文摘要
DESCRIPTION (provided by applicant):
Obesity precipitates a variety of associated disease including Type 2 Diabetes, the Metabolic Syndrome, Cardiovascular Disease, Liver Disease, and many others. These conditions have greater occurrence in the Veteran population than in the total population, and thus, research into prevention and treatment of these conditions remains a high priority of VA research. The previous funding period of this award enabled us to make the novel discovery that fatty acids (which are elevated in plasma in obese individuals) increase the expression of sphingosine kinase 1 in cultured skeletal muscle cells. This event elevated muscle content of sphingosine-1-phosphate, a lipid mediator implicated in inflammation, migration, chemotaxis, and other key cell processes. We hypothesized that SK1 may mediate the pathophysiolgical consequences of obesity. To test this in vivo, we implemented a diet-induced obesity model in wild type and SK1-/- animals. We found that many pathological consequences of obesity were attenuated by ablation of SK1. Specifically, we observed decreased levels of obesity-indcued proinflammatory cytokines including IL-6 and MCP-1, which may link obesity to its downstream pathology. Moreover, we found that ablation of SK1 attenuated high-fat diet-induced immune cell infiltrate in adipose tissue. We thus hypothesize that SK1 mediates a significant portion of the inflammation in obesity that is thought to mediate systemic insulin resistance, and, thus, targeting SK1 may protect from insulin resistance. Thus, we propose 1-To determine the role of SK1 and S1P in obesity-induced inflammation and subsequent insulin resistance in vivo by measuring plasma cytokines associated with obesity in wild type or SK1-/- mice, and determining whether SK1-/- mice are protected from obesity-dependent insulin resistance. We will test the contribution of adipocyte vs. immune cell SK1 by generating adipocyte-specific and immune cell-specific SK1-/- mice and implementing the high fat diet in these animals and their controls and evaluate inflammation and insulin resistance. We will also 2-determine the downstream signaling of S1P in adipose by determining the S1P receptors and their signaling effectors that mediate these pro-inflammatory events. We then propose 3-to determine the mechanism by which HFF induces SK1. Our data indicate that high fat feeding may generate specific phosphatidylcholine (PC) species that have been implicated as novel endogenous ligands for PPAR¿. Accomplishing these aims will reveal the role of SK1 in obesity induced inflammation and IR, providing a significant advance in our understanding of the roles of bioactive lipids in the pathophysiology of obesity, and potentially identifying novel therapeutic targets for disease treatment.
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科研奖励(0)
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Sphingolipids in Diabetic Cardiomyopathy
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批准号:8761962
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资助金额:$37.38万
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批准号:8360380
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SUBSTRATE SUPPLY IN DE NOVO SPHINGOLIPID SYNTHESIS: REGULATION/IMPACT ON CHEMOTH
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批准号:8168046
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资助金额:$7.3万
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Roles of Sphingolipids in the Pathophysiology of Obesity and Diabetes
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Roles of Sphingolipids in the Pathophysiology of Obesity and Diabetes
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依托单位:
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Sphingolipid-mediated skeletal muscle pathology in response to free fatty acids.
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依托单位:
SUBSTRATE SUPPLY IN DE NOVO SPHINGOLIPID SYNTHESIS: REGULATION/IMPACT ON CHEMOTH
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批准号:7959966
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资助金额:$23.36万
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Sphingolipid-mediated skeletal muscle pathology in response to free fatty acids.
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资助金额:$0.0万
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负责人:Lauren Ashley Cowart
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依托单位:
海外基金