ROLE OF THE G-CSF RECEPTOR IN PROGENITOR MOBILIZATION
ROLE OF THE G-CSF RECEPTOR IN PROGENITOR MOBILIZATION
批准号:
8584304
负责人:
Daniel C Link
金额:
$37.24万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1999
资助国家:
美国
项目状态:
已结题
起止时间:
1999-06-01 至 2015-11-30
关键词:
AddressAftercareAllelesBiologicalBloodBlood CellsBlood CirculationBlood VesselsBone MarrowCSF3 geneCell LineageCell MaintenanceCell ProliferationCell physiologyCellsColony-Stimulating Factor ReceptorsDataDendritic CellsDevelopmentDiseaseEndothelial CellsEngraftmentGenesGenetic TranscriptionGranulocyte Colony-Stimulating FactorGranulocyte Colony-Stimulating Factor ReceptorsGrowthHematopoieticHematopoietic NeoplasmsHematopoietic Stem Cell MobilizationHematopoietic stem cellsHomingITGAX geneInsulin-Like Growth Factor IKnockout MiceLaboratoriesLeadMediatingMolecular ProfilingMusNatureOsteoblastsOsteoclastsPancytopeniaPopulationRegulationReportingResearchReticular CellRoleSignal TransductionSourceStagingStem cell transplantStem cellsStromal CellsSyndromeTNFSF11 geneTransgenic MiceTransplantationTumor necrosis factor receptor 11bcadherin 5cell typechemokineclinically relevantdefined contributiondesigndiphtheria toxin receptorhuman IGFBP6 proteininsightleukemiamacrophagemimeticsmonocytenovel strategiesosteopontinoverexpressionprogenitorreceptorresponseself-renewalsmall moleculestem cell nichetrafficking
中文摘要
调节造血干细胞(HSC)增殖、自我更新和分化的机制是
英文摘要
The mechanisms regulating hematopoietic stem cell (HSC) proliferation, self-renewal, and differentiation are
fundamental to our understanding and treatment of a number of hematopoietic disorders, including bone
marrow failure syndromes and hematopoietic malignancies. Accumulating evidences suggests that stromal
cells in the bone marrow provide key signals regulating HSC, yet the nature of these signals and even the
stromal cell types that comprise the stem cell niche are poorly understood. Recent studies from our laboratory
show that treatment with granulocyte colony-stimulating factor (G-CSF) results in marked changes in the bone
marrow microenvironment that culminate in the mobilization of HSC into the blood. In this proposal, we plan to
continue this research to answer the two following questions: 1) what are the cellular components of the stem
cell niche; 2) what are the signals that regulate the number and function of stem cell niche cells. This research
has direct clinical relevance for stem cell transplantation, since it may lead to novel strategies to increase HSC
mobilization yields and enhance HSC homing and engraftment following transplantation.
Preliminary data support the hypothesis that factor(s) produced by cells of the monocyte lineage in the
bone marrow provide key signals that regulate osteoblast function/survival and that expression of these
factor(s) is regulated by G-CSF. In Aim 1, we will identify candidate factors produced by monocytic cells and
characterize their contribution to G-CSF-induced HSC mobilization and osteoblast suppression. The
identification of factors that regulate osteoblasts may lead to the development of small molecule mimetics (or
antagonists) that are able to stimulate (or inhibit) osteoblast (and possibly HSC) function.
The chemokine Cxcl12 provides a key signal regulating HSC quiescence, survival, and trafficking. Within
the bone marrow, Cxcl12 is expressed in osteoblasts, osteoblast precursors, endothelial cells, and Cxcl12-
abundant reticular (CAR) cells. In Aim 2, we will selectively delete Cxcl12 in selected stromal cel types and
characterize their effect on HSC function and trafficking. To this end, we have generated transgenic mice
carrying a floxed null allele of Cxcl12. These studies should provide new insight into the cellular composition of
the stem cell niche and may lead to better strategies to augment HSC function in bone marrow failure
syndromes or after stem cell transplantation. The following specific aims are proposed.
Aim 1. We will define the contribution of bone marrow monocytes/macrophages to HSC mobilization by G-
CSF.
Aim 2. We will define the contribution of Cxcl12 expression by osteoblasts and endothelial cells to HSC
function and trafficking.
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DOI:
10.3389/fimmu.2013.00204
发表时间:
2013
期刊:
Frontiers in immunology
影响因子:
7.3
作者:
[Schuettpelz LG, Link DC]
通讯作者:
Link DC
DOI:
10.1111/j.1365-2141.2009.07888.x
发表时间:
2009-11
期刊:
British journal of haematology
影响因子:
6.5
作者:
[Xia J, Bolyard AA, Rodger E, Stein S, Aprikyan AA, Dale DC, Link DC]
通讯作者:
Link DC
DOI:
10.1007/s00223-013-9805-8
发表时间:
2014-01
期刊:
CALCIFIED TISSUE INTERNATIONAL
影响因子:
4.2
作者:
[Calvi, Laura M., Link, Daniel C.]
通讯作者:
Link, Daniel C.
DOI:
10.1002/jbmr.2877
发表时间:
2016-11
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:
[Zhang J, Link DC]
通讯作者:
Link DC
DOI:
10.1038/nature11926
发表时间:
2013-03-14
期刊:
Nature
影响因子:
64.8
作者:
[]
通讯作者:
共 8 条
Identification of new genetic causes of congenital neutropenia
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批准号:10621903
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项目类别:
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资助金额:$39.38万
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财政年份:2020
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依托单位:
Identification of new genetic causes of congenital neutropenia
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资助金额:$39.38万
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财政年份:2020
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Identification of new genetic causes of congenital neutropenia
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Specialized Program Of Research Excellence (SPORE) in Leukemia.
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批准号:10439617
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财政年份:2013
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负责人:Daniel C Link
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依托单位:
Administrative Core
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批准号:10439618
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资助金额:$3.98万
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依托单位:
Specialized Program Of Research Excellence (SPORE) in Leukemia
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Specialized Program Of Research Excellence (SPORE) in Leukemia
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项目类别:
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资助金额:$91.86万
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负责人:Daniel C Link
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依托单位:
Patient Advocate
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依托单位:
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负责人:Daniel C Link
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依托单位:
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依托单位:
海外基金