Prevention of Breast Cancer Development by Epidermal Fatty Acid Binding Protein (
Prevention of Breast Cancer Development by Epidermal Fatty Acid Binding Protein (
批准号:
8749759
负责人:
Bing Li
金额:
$32.3万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-09-01 至 2015-01-04
关键词:
AddressAnimal ModelAntitumor ResponseBasic ScienceBreast Cancer ModelBreast Cancer PreventionBreast CarcinogenesisCellsClinicalDataDevelopmentDietDiet ModificationExhibitsFatty AcidsHematopoieticHumanITGAM geneITGAX geneImmunityIncidenceInfiltrationInflammatoryInterferon-betaInterferonsLipidsLungMalignant NeoplasmsMammary NeoplasmsMammary TumorigenesisMediatingMetabolicMolecularMolecular ProfilingMouse Mammary Tumor VirusMusNeoplasm MetastasisPathway interactionsPhenotypePopulationPreventionPreventiveProcessProductionProtein DeficiencyRoleSignal TransductionT-LymphocyteTestingTissuesUp-RegulationWild Type MouseWomen&aposs Healthbreast tumorigenesisclinically relevantdesignhuman FABP5 proteinin vivokillingslipid metabolismmacrophagemalignant breast neoplasmnovel strategiespreventprotein expressionpublic health relevanceresearch studyresponsetumortumor growth
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): The increasing incidence of breast cancer poses a major threat to women's health in the USA and worldwide. How to prevent breast tumorigenesis and to identify new protective factors for the control of breast cancer represents a great challenge in this field. The objectives of this proposal are to unravel a protective role of epidermal fatty acid binding protein (E-FABP) in preventing breast cancer development and to determine the molecular mechanisms by which E-FABP regulates IFNb production and signaling in a specific subset of tumor associated macrophages for antitumor responses. E-FABP, abundantly expressed in macrophages, has been recognized as an important regulator to coordinate cell metabolic and inflammatory pathways. Our preliminary studies demonstrate that E-FABP deficient mice exhibit significant increases in mammary tumor growth and lung metastasis compared to wild type mice, suggesting a protective role of host expression of E-FABP in mammary tumor prevention. Further analysis of E-FABP expression profile indicates that E-FABP is specifically expressed in the subset of F4/80+CD11b+MHCII+CD11c+ cells. Microarray and qPCR experiments show that tumor-induced IFN¿ production and signaling in macrophages are significantly impaired by E-FABP deficiency. Interestingly, IFNb stimulation specifically induces E-FABP upregulation in the process of M1 polarization. Moreover, o-3 fatty acids can greatly enhance E-FABP expression in macrophages. Thus, we hypothesize that E-FABP may regulate macrophage function by promoting IFNb production, signaling and M1-like phenotype switch through enhancing cell lipid metabolism. E-FABP, as a new cancer protective factor, can prevent breast carcinogenesis through promoting macrophage anti-tumor responses. Therefore, modulating E-FABP activity will represent a novel strategy for breast cancer prevention. Specific Aim 1 will determine how E-FABP regulates IFNb production in macrophages. We hypothesize that E-FABP is an unidentified host-derived factor to regulate tumor-induced IFNb production through impacting lipid-mediated signals in specific subsets of macrophages. Specific Aim 2 will determine how E-FABP regulates IFNb signaling to promote anti-tumor responses. We will test the hypothesis that E-FABP-regulated IFNb signaling promotes tumor specific T lymphocyte infiltration and IFNb production, which further upregulates E-FABP expression to facilitate macrophage M1 polarization for antitumor immunity. Specific Aim 3 will address whether host-derived E-FABP protects against breast cancer development in clinically relevant animal models and in humans. We will verify E-FABP as a host-derived protective factor in breast cancer prevention and establish an effective strategy for the control o breast cancer via dietary upregulation of E-FABP. In conclusion, successful completion of this project will reveal E-FABP as a new protective factor in control of breast cancer development and help us develop an effective strategy to prevent breast cancer via targeting E- FABP.
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E-FABP mediates n-3 fatty acid-induced tumor prevention through epigenetic control of immune cell differentiation and function
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依托单位:
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Functional Immunomics Core
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项目类别:
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资助金额:$50.15万
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财政年份:2020
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依托单位:
Immunomodulatory mechanisms of E-FABP in psoriasis pathogenesis
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财政年份:2018
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财政年份:2015
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依托单位:
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资助金额:$31.81万
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财政年份:2015
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负责人:Bing Li
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依托单位:
The role of adipocyte/macrophage fatty acid binding protein in breast cancer deve
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资助金额:$33.06万
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财政年份:2015
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依托单位:
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Structure-Based Design of Sortase Inhibitors for Anti-Infective Therapy
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依托单位:
Structure-Based Design of Sortase Inhibitors for Anti-Infective Therapy
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项目类别:
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资助金额:$30.0万
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财政年份:2010
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依托单位:
Mechanisms for chromatin modification during transcription elongation
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项目类别:
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资助金额:$29.81万
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财政年份:2010
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依托单位:
海外基金