BMP2 signaling of the development of osetoarthritis
BMP2 signaling of the development of osetoarthritis
批准号:
8436972
负责人:
Vicki Rosen
金额:
$17.99万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-04-01 至 2015-03-31
关键词:
3-DimensionalAdultAffectAgeAgingAmericanAnkleArthritisAtomic Force MicroscopyBMP2 geneBMP4BMP7 geneBirthBone Morphogenetic ProteinsCellsChondrogenesisDefectDegenerative polyarthritisDevelopmentDiseaseDisease ProgressionElbowEventFigs - dietaryFractureHealthHealth Care CostsHealthcareHumanImageInternal Ribosome Entry SiteJointsKnee OsteoarthritisLifeLimb structureLongevityMaintenanceMechanicsMesenchymalMethodsMorbidity - disease rateMusMusculoskeletalOperative Surgical ProceduresPainPartner in relationshipPathogenesisPathological fracturePatternPhenotypePhysiologicalProductionPropertyProsthesisQuality of lifeReplacement ArthroplastyReporterRiskRoleShapesSignal TransductionSkeletal DevelopmentSkeletonSorting - Cell MovementStructureTechnologyTissuesTransgenic MiceWristarticular cartilagebasecell typecostimprovedjoint functionjoint mobilizationnanoindentationpostnatalpublic health relevancerepairedresearch studyskeletalsoft tissuesubmicronultra high resolution
中文摘要
描述(由申请人提供):骨关节炎(OA)影响全球超过2亿人,其中包括2700万美国人,据估计美国每年花费1280亿美元用于OA相关的医疗保健(1,2)。目前OA的治疗侧重于减轻疼痛,同时改善关节运动(3)。由于这些治疗方法都不能恢复骨性关节炎进展所损害的关节结构,因此通常需要进行关节置换,在美国每年进行的关节置换手术超过60万例(4)。因此,旨在改善OA的战略是一个非常重要的机会,可以在控制医疗保健费用的同时提高许多美国人的生活质量。骨形态发生蛋白(BMPs)在OA发病机制中的作用尽管经过多年的研究仍存在争议。BMP活性是骨骼发育过程中启动软骨形成所必需的,也是滑膜关节形成所必需的(5-11)。BMP信号也参与了出生后滑膜关节功能的维持(12)。矛盾的是,太多了
英文摘要
DESCRIPTION (provided by applicant): Osteoarthritis (OA) affects over 200 million people worldwide including 27 million Americans, and it is estimated that the US spends $128 billion dollars each year on OA related health care (1, 2). Current therapies for OA focus on decreasing pain while improving joint movement (3). As none of these treatments can restore joint structures damaged by the progression of OA, joint replacement is often required, with more than 600,000 joint replacement surgeries performed yearly in the US (4). As such, strategies aimed at ameliorating OA represent a highly significant opportunity to contain health care costs while enhancing the quality of life for many Americans. The role of bone morphogenetic proteins (BMPs), in the pathogenesis of OA remains controversial despite many years of study. BMP activity is necessary for initiating chondrogenesis during skeletal development and is required for formation of synovial joints (5-11). BMP signaling is also involved in the maintenance of functional synovial joints after birth (12). Paradoxically, too much
BMP activity is also associated with OA (18-20). In this proposal, we focus on BMP2 and examine its role in maintaining postnatal synovial joint function. Our decision to target BMP2 is based on the phenotype of mice lacking BMP2 expression in mesenchymal cells of the early limb (Prx1cre; 21, 22). These mice lose normal skeletal function as they age, as evidenced by spontaneous fractures throughout the limb skeleton and an ability to initiate fracture repair (22-24) and the progressive development of OA of the knee, elbow, wrist and ankle by 28 weeks of age (Fig 1). The development of OA in BMP2Prx1Cre mice is analogous to disease progression in human OA where there is a long delay between the event that initiates the disease and the development of an arthritic joint. If loss of BMP2 does indeed precede the pathological joint changes seen in OA, maintaining BMP2 at normal physiological levels may be a means to slow or halt joint changes that characterize OA. However, Bmp2Prx1cre mice have a variety of developmental limb defects that may predispose synovial joints to develop OA (25, 26) and these confounding factors must be sorted out in order to determine the importance of changing levels of BMP2 signaling in articular cartilage in the pathogenesis of OA. We propose to directly assess the role of BMP2 in OA by tracking BMP2 expression and BMP signaling in adult synovial joints (Aim 1) and determining if loss of BMP2 specifically from articular cartilage leads
to a progressive OA phenotype (Aim 2). To perform these experiments we combine the use of BMP2 reporter mice with BMP signaling reporter mice and mice that drive deletion of BMP2 in articular cartilage. We also employ two state-of-the-art technologies to assess OA progression: ultra high resolution micro CT that allows for submicron 3-dimensional examination of both mineralized and soft tissues (27, 28) and atomic force microscopy -based nanoindentation (AFM-N), a method that allows for the quantification of the local mechanical properties of irregularly shaped, small volume musculoskeletal tissues (29). These technologies allow us to obtain precise images and corresponding functional assessments of joint tissues in the transgenic mice we plan to study.
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资助金额:$49.13万
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依托单位:
Adult Bone Mass Regulation by Type 2 BMP Receptors
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依托单位:
Creation & Validation of a BMP/TGF-B/Activin Biosensor System
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依托单位:
Creation & Validation of a BMP/TGF-B/Activin Biosensor System
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海外基金