Hormonal Regulation of Fat Deposition
脂肪沉积的荷尔蒙调节
基本信息
- 批准号:7866040
- 负责人:
- 金额:$ 62.67万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:2010
- 资助国家:美国
- 起止时间:2010-05-01 至 2015-04-30
- 项目状态:已结题
- 来源:
- 关键词:AddressAdipocytesAdipose tissueAffectAgonistBiologicalBiologyCardiovascular DiseasesCell LineageCellsClinicalCuesDataDepositionDevelopmentDiabetes MellitusDiseaseEpidemicEstrogen Receptor alphaEstrogen ReceptorsEstrogen ReplacementsEstrogensFatty LiverFatty acid glycerol estersFood SupplyGene Expression ProfileGenesGeneticGoalsHealthHealthcareHormonalHyperplasiaHypertrophyInjection of therapeutic agentIntra-abdominalKnock-outLacZ GenesLeadLifeMaintenanceMalignant NeoplasmsMediatingMenopauseMetabolicMetabolic ControlMetabolic DiseasesMetabolismModelingMolecularMolecular ProfilingMusObesityOnset of illnessOperative Surgical ProceduresOvariectomyOvaryPhysiologicalPlayPopulation GrowthProcessPropertyRNA InterferenceReagentReporterResearch DesignRiskRoleSignal TransductionStem cellsStimulusSystemTestingTherapeuticVirusVisceraladipocyte biologycardiovascular disorder riskcell typeclinically relevantdesignengineering designhormone regulationin vivoinsightnew therapeutic targetprotective effectpublic health relevanceresponseself-renewalstemstem cell nichesubcutaneoustool
项目摘要
DESCRIPTION (provided by applicant): Our overall objective is to elucidate the mechanisms that control formation and remodeling of adipose tissues and to determine whether and how these processes are altered by estrogen signaling. Modern life has provided unparalleled access to food supplies, contributing to a worldwide epidemic of obesity and secondary negative health consequences such as diabetes, fatty liver, cardiovascular disease, and even cancer. Thus there is an urgent need to better understand the mechanisms and molecules that control formation of adipocytes and the expansion of adipose tissue. Adipose tissue is highly dynamic, expanding and shrinking in response to various dietary, pharmacologic and hormonal stimuli. For example, estrogen deficiency (e.g., menopause) redistributes fat into metabolically maladaptive visceral fat depots, thereby predisposing or triggering diabetes. In contrast, estrogen shifts deposition into metabolically protective subcutaneous depots, thereby reducing metabolic diseases. Our initial data indicate that remodeling involves both hypertrophy and hyperplasia (stem cell recruitment). That new adipocytes form throughout life indicates the presence of a putative adipogenic stem cell. We recently identified such an adipose stem cell by designing, engineering, and studying mice that express molecular reporters in the adipose lineage. These unique reagents, termed Adipo-Trak, enable us to visualize adipose stem cells in vivo, as well as to follow their descendents as they divide, migrate and develop into mature adipocytes; thereby allowing us to assess estrogen-dependent remodeling. Health risks due to increased adiposity vary depending on adipose tissue deposition; intra-abdominal (visceral) adipose tissue (increased with menopause) carries a much greater risk for cardiovascular disease, diabetes, cancers, and other disorders, than does subcutaneous adipose tissue (induced by estrogen). The focus of this proposal is to delineate how estrogen remodels adipose tissue in this medically relevant manner. By integrating surgical (ovariectomy), pharmacological (estrogen), and genetic (adipose lineage specific estrogen receptor knockouts) manipulations, we will model these morphogenic transformations and determine how they affect adipose lineage specification using our newly developed Adipo-Trak mice. We will define the mechanistic underpinnings of the estrogenic- remodeling effects on adipose stem cells, adipose niche cells and adipocytes. We will also elucidate how physiological and pharmacological stimuli regulate the stem population and the growth of adipose tissue. These studies are designed to elucidate new aspects of adipose biology and metabolic control and how estrogen provides a protective effect, thereby highlighting those that are particularly relevant to new therapies for obesity and diabetes.
PUBLIC HEALTH RELEVANCE: The ability to regulate fat storage and metabolism are fundamental processes. However, the dual epidemics of obesity and diabetes endanger millions and are altering our health care landscape. This crisis that could be addressed by identifying genes that control formation, expansion, and remodeling of adipose tissue-for example that regulated by estrogen. We recently identified the adipose stem cell and found that it is important in the normal maintenance of adipose tissue mass and the response to diabetes treatments. Further, adipose lineage cells appear critical for the medically relevant adipose remodeling induced by estrogen or estrogen-deficiency. Our goal is to unravel the developmental, physiological and molecular mechanisms underlying these effects, which we believe will enhance our understanding of adipocyte biology and may lead to novel therapeutic targets for obesity and diabetes.
描述(由申请人提供):我们的总体目标是阐明控制脂肪组织形成和重塑的机制,并确定这些过程是否以及如何通过雌激素信号传导改变。现代生活为食品供应提供了无与伦比的机会,这导致了肥胖症和继发性健康后果的流行,例如糖尿病,脂肪肝,心血管疾病甚至癌症。因此,迫切需要更好地理解控制脂肪细胞形成和脂肪组织扩张的机制和分子。脂肪组织具有高度动态性,对各种饮食,药理学和激素刺激的响应,不断扩大和收缩。例如,雌激素缺乏症(例如更年期)将脂肪重新分配到代谢性不良的内脏脂肪库中,从而诱发或触发糖尿病。相反,雌激素将沉积转移到代谢的保护性皮下仓库,从而减少了代谢疾病。我们的初始数据表明,重塑涉及肥大和增生(干细胞募集)。新的脂肪细胞一生都表明存在假定的掺杂干细胞。我们最近通过设计,工程和研究在脂肪谱系中表达分子报告基因的小鼠来鉴定这种脂肪干细胞。这些独特的试剂,称为脂肪trak,使我们能够在体内可视化脂肪干细胞,并在他们分裂,迁移并发展为成熟的脂肪细胞时跟随其后代。从而使我们能够评估雌激素依赖性重塑。由于脂肪的增加而导致的健康风险因脂肪组织沉积而异。与皮下脂肪组织(雌激素诱导的皮下脂肪组织相比该提议的重点是描述雌激素如何以这种与医学相关的方式重塑脂肪组织。通过整合手术(卵巢切除术),药理学(雌激素)和遗传(脂肪谱系特定的雌激素受体敲除)操纵,我们将模拟这些形态发生的转化并确定它们如何使用我们新开发的脂肪型脂肪谱的脂肪谱系规范来影响它们。我们将定义雌激素重塑对脂肪干细胞,脂肪细胞和脂肪细胞的机械基础。我们还将阐明生理和药理刺激如何调节茎种群和脂肪组织的生长。这些研究旨在阐明脂肪生物学和代谢控制的新方面,以及雌激素如何提供保护作用,从而突出与肥胖和糖尿病新疗法特别相关的效应。
公共卫生相关性:调节脂肪存储和代谢的能力是基本过程。但是,肥胖和糖尿病的双重流行病危害了数百万,并且正在改变我们的医疗保健局势。可以通过识别控制由雌激素调节的脂肪组织形成,扩展和重塑的基因来解决的。我们最近确定了脂肪干细胞,发现它对于脂肪组织质量的正常维持和对糖尿病治疗的反应很重要。此外,脂肪谱系细胞对于由雌激素或雌激素缺陷引起的医学相关脂肪重塑至关重要。我们的目标是阐明这些作用的发展,生理和分子机制,我们认为这将增强我们对脂肪细胞生物学的理解,并可能导致肥胖和糖尿病的新型治疗靶标。
项目成果
期刊论文数量(0)
专著数量(0)
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JONATHAN M GRAFF其他文献
JONATHAN M GRAFF的其他文献
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{{ truncateString('JONATHAN M GRAFF', 18)}}的其他基金
Beige Adipocyte Development: lineage analysis and molecular characterization
米色脂肪细胞发育:谱系分析和分子表征
- 批准号:
9214159 - 财政年份:2017
- 资助金额:
$ 62.67万 - 项目类别:
Beige Adipocyte Development: lineage analysis and molecular characterization
米色脂肪细胞发育:谱系分析和分子表征
- 批准号:
9564092 - 财政年份:2017
- 资助金额:
$ 62.67万 - 项目类别:
Biomarkers, Lineage Analysis--metabolic disease states
生物标志物、谱系分析——代谢疾病状态
- 批准号:
6931901 - 财政年份:2003
- 资助金额:
$ 62.67万 - 项目类别:
Biomarkers, Lineage Analysis--metabolic disease states
生物标志物、谱系分析——代谢疾病状态
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6723993 - 财政年份:2003
- 资助金额:
$ 62.67万 - 项目类别:
Biomarkers, Lineage Analysis--metabolic disease states
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- 批准号:
7249394 - 财政年份:2003
- 资助金额:
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