Role of Adipose Tissue TGF-b signaling on Adipose Dysfunction in Obesity
Role of Adipose Tissue TGF-b signaling on Adipose Dysfunction in Obesity
批准号:
8733728
负责人:
Brian S Finlin
金额:
$25.51万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至
关键词:
AdipocytesAdipose tissueBlood capillariesBrown FatCardiovascular DiseasesCoculture TechniquesComplexDataDiabetes MellitusDietDocosahexaenoic AcidsEuglycemic ClampingExtracellular MatrixFatty acid glycerol estersFibrosisFish OilsFunctional disorderGene ExpressionGlucose ClampHeart DiseasesHumanHypoxiaImmuneInsulin ResistanceInterleukin-10Knock-outKnockout MiceMADH3 geneMeasuresMediatingMetabolicMethodsMusObesityPathway interactionsProcessProteinsReceptor SignalingResearchRoleSignal TransductionSmall Interfering RNATLR2 geneTLR4 geneTechnologyTestingThrombospondin 1Toll-like receptorsTransforming Growth Factor betaangiogenesiscapillarycell typecombatdensityfeedingglucose toleranceimprovedinhibitor/antagonistinsulin tolerancelipid biosynthesismacrophagemouse modelreceptorresponse
中文摘要
肥胖与脂肪功能障碍有关,脂肪功能障碍会导致胰岛素抵抗、糖尿病和心脏病
英文摘要
Obesity is associated with adipose dysfunction, which contributes to insulin resistance, diabetes, and heart
disease. It has been proposed that adipose dysfunction is caused by an inappropriate response to hypoxia
that results in increased ECM expression and reduced angiogenesis. Our data indicate that adipocytemacrophage
crosstalk results in increased expression of thrombospondin-1 (TSP-1), a multifunctional
protein that promotes fibrosis by activating TGF-beta signaling. TGF-beta has multiple effects on adipose in
addition to inducing fibrosis including inhibiting adipogenesis and complicated effects on angiogenesis.
Recently, a whole-body knockout of SMAD3 to block TGF-beta signaling resulted in mice with improved
metabolic function and browning of their white adipose; this was due in part to reversing the inhibition of
TGF-beta on the expression of PGC-1 alpha. Our overall hypothesis is that increased TSP-1 expression and
TGF-beta signaling in white adipose with obesity cause increased fibrosis, reduced capillary density,
reduced PGC-1 alpha and reduced UCP-1 expression hence less "browning", and impaired WAT function.
Thus, inhibiting the TGF-beta pathway in humans may improve adipose function and reverse the effects of
obesity on insulin resistance. The first aim will characterize the white adipose ECM and capillary density of
TSP-1 knockout mice and their littermate controls challenged with a high fat diet. The second aim will
knockout TGF-beta in adipose using cre/lox technology to elucidate the role of TGF-beta signaling on
adipose function is response to high fat feeding. The third aim will determine whether the dramatic reduction
in adipocyte PGC-1 alpha by macrophage coculture is TGF-beta dependent. The fourth aim will determine
whether toll-like receptor (TLR) signaling is involved in the adipocyte-macrophage crosstalk that induces
TSP-1 and TGF-beta signaling in macrophages. Thus, the two mouse models will indicate the contribution
of TSP-1 and TGF- beta to adipose dysfunction with obesity. The coculture studies will begin to define the
mechanisms by which adipocytes and macrophages communicate with each other to induce TSP-1
expression by both cells types and to decrease PGC-1 alpha expression in adipocytes.
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Role of Adipose Tissue TGF-b signaling on Adipose Dysfunction in Obesity
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批准号:9135494
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项目类别:
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资助金额:$25.59万
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财政年份:--
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负责人:Brian S Finlin
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依托单位:
Role of Adipose Tissue TGF-b signaling on Adipose Dysfunction in Obesity
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批准号:8602579
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项目类别:
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资助金额:$25.5万
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财政年份:--
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负责人:Brian S Finlin
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依托单位:
海外基金