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Defining the Roles of Bone Marrow Adipocytes and FABP4/5 Signaling in Multiple Myeloma Drug Resistance

Defining the Roles of Bone Marrow Adipocytes and FABP4/5 Signaling in Multiple Myeloma Drug Resistance
定义骨髓脂肪细胞和 FABP4/5 信号在多发性骨髓瘤耐药中的作用
批准号:
10636868
负责人:
Michaela R Reagan
金额:
$38.56万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2020
资助国家:
美国
项目状态:
未结题
起止时间:
2020-07-01 至 2025-06-30
关键词:
3-DimensionalAddressAdipocytesAdipose tissueAdultAffectAgingAutomobile DrivingB-Cell NeoplasmBiologicalBone DiseasesBone MarrowBone Marrow CellsCancer ModelCell Culture TechniquesCell ProliferationCell SurvivalCellsClinicalCoculture TechniquesCompensationDataDevelopmentDimensionsDisease ProgressionDisease ResistanceDrug resistanceEnergy MetabolismEnergy-Generating ResourcesEnvironmentExhibitsExposure toFABP4 geneFABP5 geneFatty AcidsFatty acid glycerol estersFeedbackFeedsFractureGene ExpressionGenerationsGenesGeneticGenetic ModelsGoalsGrowthHematopoietic NeoplasmsHigh Fat DietHomingHumanHuman bodyIL6 geneIn VitroIndividualInflammatoryInterventionLaboratory FindingLipidsMAP Kinase GeneMalignant - descriptorMalignant NeoplasmsMediatorMessenger RNAModelingMultiple MyelomaMusMutationNatureNonesterified Fatty AcidsObesityOsteolysisOsteoporosisPI3K/AKTPIK3CG genePPARG genePathway interactionsPatientsPatternPersonsPharmacotherapyPhenotypePlasma CellsProcessProliferatingProteinsQuality of lifeResearchResourcesRiskRisk FactorsRoleSignal InductionSignal TransductionSilkSoilSourceSymptomsTestingTherapeuticTissue EngineeringTissue Modeladipokinesautocrinebonecancer cellcancer drug resistancedietarydrug developmentdrug resistance developmentexperiencefatty acid-binding proteinshigh body mass indeximprovedin vivoin vivo Modelinstrumentlipid metabolismmouse modelneoplastic cellnew therapeutic targetnovelnovel therapeuticsparacrinepharmacologicphysiologic modelpreventprotein expressionresistance mechanismresponsescaffoldsurvival outcometargeted treatmenttherapy resistanttumortumor growthtwo-dimensionaluptake

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英文摘要
Cancer develops and spreads because of the nature of the tumor and the microenvironment or `soil' in which the tumor is embedded. Multiple myeloma is a blood cancer that results from mutations that accumulate in a plasma cell. Multiple myeloma cells grow in the rich soil of the bone marrow, first very slowly, causing no damage or symptoms, and then more quickly and aggressively, causing degradation of the bone and development of drug resistant clones. The risk of developing myeloma is greater in older individuals and people with high body mass index. These patients also typically have more bone marrow adipose tissue, or fat, than younger or leaner individuals. However, the ways in which bone marrow adipocytes (fat cells) modulate disease progression are not well understood. Thus, we aim to identify new therapeutic avenues to halt multiple myeloma progression by targeting the interactions between myeloma cells and bone marrow adipocytes to lead to better therapeutics for patients. Due to the potentially inflammatory nature of bone marrow adipose tissue, and its ability to act as a source of fatty acids and adipokines, we wanted to explore how bone marrow adipose tissue affects myeloma tumor cells. Our cell culture studies suggest bone marrow adipocytes induce drug resistance in myeloma cells through proteins called fatty acid-binding proteins 4 and 5 (FABP4 and FABP5). In Specific Aim 1 of this proposal, we will analyze how bone marrow adipocytes contribute to myeloma by using novel, three-dimensional (3D), tissue engineered cancer models. Compared to two- dimensional (2D) cultures, 3D cultures much more realistically recapitulate what happens in the human body. The tissue engineered models are made from silk scaffolds, bone marrow adipocytes, and cancer cells. By growing myeloma cells in these 3D mini-bone environments, we can determine how myeloma cells change in response to adipocytes and discover new ways to target this interaction. In Specific Aim 2 of our proposal, we will use mouse models to study bone marrow adipocyte and myeloma crosstalk. Our mouse models recapitulate very closely how tumors grow in patients. We will test how increasing or removing bone marrow adipocytes in mice affects tumor growth and drug resistance, and we will test specifically the role of FABP4 and FABP5 in this process. We will use these in vitro and in vivo models, which we have already developed and optimized in our lab, to better understand how cancer hijacks the bone marrow niche for its own purposes. Our long-term goal is to understand molecules and mechanisms driving multiple myeloma growth in the bone marrow. This proposal feeds into that by interrogating a novel part of the cellular “soil” (the bone marrow adipocyte), in which tumor cells, or “seeds” land and grow. In sum, our research will identify feedback loops between host and cancer cells, indicate mediators of this interaction, and propose paradigm-shifting concepts to guide the development of new anti-myeloma therapies.
期刊论文(7)
专著(0)
科研奖励(0)
会议论文
DOI: 10.1371/journal.pone.0231060
发表时间: 2021
期刊: PloS one
影响因子: 3.7
作者: [Lelis Carvalho A, Treyball A, Brooks DJ, Costa S, Neilson RJ, Reagan MR, Bouxsein ML, Motyl KJ]
通讯作者: Motyl KJ
DOI: 10.1002/jbm4.10413
发表时间: 2020-11
期刊: JBMR plus
影响因子: 3.8
作者: [Fairfield H, Costa S, DeMambro V, Schott C, Martins JDS, Ferron M, Vary C, Reagan MR]
通讯作者: Reagan MR
Bone Marrow Adipocytes: A Link between Obesity and Bone Cancer.
骨髓脂肪细胞:肥胖与骨癌之间的联系。
DOI: 10.3390/cancers13030364
发表时间: 2021-01-20
期刊: Cancers
影响因子: 5.2
作者: [Reagan MR, Fairfield H, Rosen CJ]
通讯作者: Rosen CJ
DOI: 10.1002/jbmr.4170
发表时间: 2021-01
期刊: Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research
影响因子: --
作者: [Farrell M, Fairfield H, Costa S, D'Amico A, Falank C, Brooks DJ, Reagan MR]
通讯作者: Reagan MR
Defining the Roles of Bone Marrow Adipocytes and FABP4/5 Signaling in Multiple Myeloma Drug Resistance
  • 批准号:
    10165671
  • 项目类别:
  • 资助金额:
    $39.35万
  • 财政年份:
    2020
  • 负责人:
    Michaela R Reagan
  • 依托单位:
Defining the Roles of Bone Marrow Adipocytes and FABP4/5 Signaling in Multiple Myeloma Drug Resistance
  • 批准号:
    10418698
  • 项目类别:
  • 资助金额:
    $39.35万
  • 财政年份:
    2020
  • 负责人:
    Michaela R Reagan
  • 依托单位:
海外基金