Endosteal Adipose in Age-Associated Osteopenia
Endosteal Adipose in Age-Associated Osteopenia
批准号:
7669343
负责人:
Kurt David Hankenson
金额:
$38.49万
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-09-01 至 2011-08-31
关键词:
AblationAddressAdipocytesAdipose tissueAffectAgeAgingAgonistAnimal ModelApoptosisBone DevelopmentCell AgingCell CountCell LineCell LineageCell modelCellsCollagenContact InhibitionDefectDevelopmentDoseEnvironmentExclusionFatty acid glycerol estersGenetic ModelsGoalsHarvestHumanImplantIn VitroKnock-outLeptinMarrowMesenchymal Stem CellsMetabolicMissionModelingMolecularMusObesityOsteoblastsOsteoclastsOsteogenesisPPAR gammaParacrine CommunicationProductionPublishingRegulationRelative (related person)Research PersonnelRoleSenile OsteoporosisSignal TransductionSiteStem cellsStimulusTissuesTransgenic MiceTransgenic OrganismsTransplantationadipocyte differentiationadiponectinagedbonebone lossbone masscell agecell typeclinically significantextracellularimplantationin vivoleptin receptormiddle agenovelosteoblast differentiationparacrineprecursor cellpreventprogramspromoterresearch studyresponserosiglitazonesubstantia spongiosatheories
中文摘要
描述(由申请人提供):与年龄相关的骨质减少/骨质疏松症(老年或II型)的发展,因为相对于骨吸收,骨形成减少,导致骨的净损失。与此同时,骨内腔内脂肪量增加。在人类和动物模型中进行的大量研究表明,骨髓脂肪和骨形成之间存在很强的负相关关系。我们的中心假设是骨髓脂肪的发展导致骨形成减少。我们的使命是双重的;首先,明确证明骨髓脂肪细胞的发育对骨形成有有害影响,其次,了解脂肪细胞调节成骨细胞抑制的机制。考虑到骨内膜室的复杂性、系统性因素的影响以及成骨细胞和脂肪细胞的共同前体,这是一个棘手的问题,需要一种真正独特的研究方法。有四种可能的假说可以解释骨髓脂肪细胞如何影响骨形成。首先,骨髓间充质干细胞(MSC)向脂肪细胞的分化可能限制成骨细胞的分化(H1:分化转移)。其次,脂肪的形成可能会耗尽可用的成骨细胞干细胞库(H2: MSC耗尽)。第三,脂肪细胞可以分泌调节骨形成的因子(H3:旁分泌效应)。第四,通过接触抑制,脂肪细胞可以影响新生成骨细胞的发育或活性(H4:接触抑制)。我们的建议的一个独特的方面是,我们不是专注于单一的假设,而是将解决所有四个使用十种不同的敲除和转基因小鼠。来自这些模型的MSC将用于一种独特的对位骨形成模型,即将前体细胞植入宿主小鼠体内,形成具有完整脂肪骨髓腔的骨听骨。我们提出了三个具体目标:(1)在增加或减少脂肪细胞分化的模型中研究骨形成,(2)在脂肪可以通过靶向凋亡调节的模型中研究骨形成,(3)通过瘦素、脂联素或ppar - γ激动剂研究旁分泌信号的作用。如果成功,我们的研究将证明脂肪细胞是否真的影响成骨细胞的发育或功能,进一步,我们将证明脂肪调节的机制。了解脂肪细胞在调节骨形成中的功能对于开发新的治疗方法来解决与年龄相关的骨质流失至关重要。
英文摘要
DESCRIPTION (provided by applicant): Age-associated osteopenia/osteoporosis (Senile or Type II) develops because there is a decrease in bone formation relative to resorption resulting in net loss of bone. In association there is an increase in the amount of adipose in the endosteal cavity. Numerous studies in humans and animal models have shown that there is a strong inverse correlation between marrow fat and bone formation. Our central hypothesis is that the development of marrow fat results in decreased bone formation. Our mission is two-fold; first, to definitively prove that the development of marrow adipocytes has a deleterious effect on bone formation, and second, to understand the mechanism of adipocyte-regulated osteoblast inhibition. Given the complexities of the endosteal compartment, the influence of systemic factors, and the shared precursors of osteoblasts and adipocytes, this is an intractable problem that requires a truly unique investigative approach. Four possible hypotheses may explain how marrow adipocytes affect bone formation. First, the differentiation of marrow mesenchymal stem cells (MSC) to adipocytes may limit osteoblast differentiation (H1: Differentiation shift). Second, adipose development may deplete the pool of available osteoblast stem cells (H2: MSC depletion). Third, adipocytes could secrete factors that regulate bone formation (H3: Paracrine effect). Fourth, through contact inhibition, adipocytes could affect the development or activity of new osteoblasts (H4: Contact inhibition). A unique aspect of our proposal is that we are not focused on a single hypothesis, but will address all four using ten different knockout and transgenic mice. MSC from these models will be used in a unique model of appositional bone formation whereby precursors cells are implanted in host mice to form a bone ossicle with an intact fatty-marrow cavity. We propose three specific aims: (1) To examine bone formation in models that have either increased or decreased adipocyte differentiation, (2) To examine bone formation in a model where fat can be regulated through targeted apoptosis, and (3) To examine the role of paracrine signaling by leptin, adiponectin, or PPAR-gamma agonists. If successful our study will demonstrate whether adipocytes truly impact osteoblast development or function, and further, we will demonstrate the mechanism(s) of adipo-regulation. Understanding the function of adipocytes in regulating bone formation is paramount for developing new therapies to address age-associated bone loss.
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科研奖励(0)
会议论文
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Notch signaling and Bone Fracture Healing
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依托单位:
海外基金