Bone Marrow Functions of Novel Pro-Resolving Mediators
Bone Marrow Functions of Novel Pro-Resolving Mediators
批准号:
10222780
负责人:
Stephania Libreros
金额:
$12.34万
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:
已结题
起止时间:
2020-08-01 至 2023-07-31
关键词:
AcuteAdultAgonistAnabolismApplications GrantsAutacoidsBiologyBlood CellsBone MarrowBone Marrow CellsCD14 geneCD34 geneCD59 AntigenCell CycleCell Differentiation processCellsCoinCollaborationsColony-Forming Units AssayContainmentCytometryDevelopment PlansDiseaseDistalEnvironmentEnzymesEscherichia coliFacultyFutureGenomicsGoalsHematological DiseaseHematopoiesisHematopoieticHematopoietic stem cellsHomeostasisHospitalsHost DefenseHost Defense MechanismHumanHypoxiaImmuneImpairmentInfectionInflammationInflammatoryInflammatory ResponseInjuryInstitutionInternationalInvadedLaboratory ResearchLeukocytesLeukotrienesLipoxinsLipoxygenaseLiquid ChromatographyLongevityMapsMass Spectrum AnalysisMeasuresMediator of activation proteinMentorsMentorshipMolecularMusMyelogenousMyeloid CellsMyelopoiesisOrganOrganismOxygenPathologicPathway interactionsPeritonealPhagocytesPhasePhenotypePhysiologicalPopulationPositioning AttributeProductionProstaglandinsRegulationResearch ProposalsResolutionRoleScientistSideSignal TransductionSiteStructureTechnologyTestingTimeTissuesTransplantationUnited States National Institutes of HealthWhole BloodWomanbasecareer developmentclinically relevantexperiencegranulocytein vivoinsightlipid mediatorlipoxin B4macrophagemedical schoolsmetabolomicsmicrobialmonocytenanomolarneutrophilnovelnovel therapeutic interventionpathogenperipheral bloodpre-clinicalpressurepreventprofessorprogenitorprogramsresponseself-renewalsingle cell technologysingle-cell RNA sequencingskillsstem cell functiontandem mass spectrometrytranscriptome sequencing
中文摘要
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英文摘要
Abstract
Hematopoietic stem cells and progenitors (HSPCs) are a rare population of self-renewing bone marrow (BM)
cells that can generate all mature lineage blood cells for the lifespan of an organism. In adults, quiescent HSPCs
reside within a hypoxic bone marrow niche (1-4% O2 physiologic hypoxia) and are capable of rapidly entering
the cell cycle and differentiate to produce leukocytes in response to an invading pathogen. The mentor’s lab
uncovered that resolution of inflammation is governed by spatial and temporal production of novel mediators and
elucidated the specialized pro-resolving mediators (SPMs), a superfamily of autacoids that includes lipoxins (LX),
resolvins (Rv), protectins (PD), and maresins (MaR). SPM biosynthesis structures and functions were
established in the mentor’s lab and confirmed by others. SPMs are sub-nanomolar potent, stereoselective
agonists that promote microbial clearance and containment, while enhancing host survival by accelerating host
resolution mechanisms. This proposal is based on new findings from work in progress; we identified, using state-
of-the-art metabololipidomics profiling, a specific SPM cluster in HSPC under physiologic hypoxia, which includes
Resolvin D1 (RvD1), Resolvin D4 (RvD4), Resolvin E1 (RvE1), Maresin 1 (MaR1) and Lipoxin B4 (LXB4). Also,
we recently identified a new SPM, Resolvin E4 (RvE4), in healthy human bone marrow. Tissues that experience
physiologic hypoxic niches, such as BM, have high amounts of SPMs through undefined mechanisms. Thus, we
propose to rigorously test the following hypothesis: In physiologic hypoxia, specialized pro-resolving
mediators (SPMs) produced in BM are essential for regulating HSPC responses de novo and/or during
infection at distal sites of invasion, as well as maintaining BM homeostasis. The following aims are
proposed by using state-of-the-art omics platforms e.g., metabolipidomics (LC-MS/MS), mass cytometry
(CyTOF) and single cell RNA sequencing (sc-RNA-seq) in murine and human HSPCs to: 1) determine the impact
of physiologic hypoxia on endogenous novel SPM production in BM niche (K99), and 2) establish the regulation
of HSPC differentiation and responses to infection by the SPM cluster, specifically RvD1, RvD4, MaR1 and the
novel RvE4 (K99/R00). The K99 mentored phase will take place at Brigham and Women’s Hospital and Harvard
Medical School under the mentorship of two internationally recognized scientists, Professor Charles N. Serhan,
the leader in the structural elucidation of SPMs and their functions and Professor Leonardo Zon, the leader on
hematopoiesis. Dr. Libreros will be further advised by a scientific committee/collaborator covering different
aspects of the research proposal: Dr. Matthew Spite, Dr. Mark Perrella, and Professor David Scadden. The goal
of this proposal is to provide a comprehensive scientific and career development plan for the applicant with the
required skills to transition to an independent faculty position (R00). Results from these studies will yield
fundamentally new insights into the functions of SPMs and novel pro-resolving pathways in HSPC biology.
These discoveries can help develop novel treatments for hematological disorders and provide a basic
understanding of how bone marrow supports resolution programs during infections.
期刊论文(4)
专著(0)
科研奖励(0)
会议论文
DOI:
10.3389/fimmu.2020.631319
发表时间:
2020
期刊:
Frontiers in immunology
影响因子:
7.3
作者:
[Libreros S, Shay AE, Nshimiyimana R, Fichtner D, Martin MJ, Wourms N, Serhan CN]
通讯作者:
Serhan CN
E-series resolvin metabolome, biosynthesis and critical role of stereochemistry of specialized pro-resolving mediators (SPMs) in inflammation-resolution: Preparing SPMs for long COVID-19, human clinical trials, and targeted precision nutrition.
E-系列分解代谢组,生物合成和专业促进分解介体(SPMS)立体化学在炎症分解中的关键作用:为长期Covid-19,人类临床试验和靶向精确营养准备SPMS。
DOI:
10.1016/j.smim.2022.101597
发表时间:
2022-01
期刊:
Seminars in immunology
影响因子:
7.8
作者:
[Serhan CN, Libreros S, Nshimiyimana R]
通讯作者:
Nshimiyimana R
Bone Marrow Functions of Novel Pro-Resolving Mediators
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批准号:10852343
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项目类别:
-
资助金额:$24.9万
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财政年份:2023
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负责人:Stephania Libreros
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依托单位:
Bone Marrow Functions of Novel Pro-Resolving Mediators
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批准号:10039597
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项目类别:
-
资助金额:$12.34万
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财政年份:2020
-
负责人:Stephania Libreros
-
依托单位:
海外基金