Deciphering multi-scale differentiation and patterning cues driving whole craniofacial joint regeneration
Deciphering multi-scale differentiation and patterning cues driving whole craniofacial joint regeneration
批准号:
10472887
负责人:
Joanna Marjorie Smeeton
金额:
$148.05万
依托单位国家:
美国
项目类别:
财政年份:
2022
资助国家:
美国
项目状态:
未结题
起止时间:
2022-09-06 至 2025-08-31
关键词:
3-DimensionalAdultAnatomyArticular ligamentsAutomobile DrivingBiomechanicsCellsChondrocytesCicatrixComplexConnective TissueCuesDegenerative polyarthritisDevelopmentExcisionFailureGeneticImageInjuryJointsLanguageLigamentsMammalsModelingMolecularNatural regenerationPatientsPatternPropertyReconstructive Surgical ProceduresRegenerative MedicineRegenerative capacityRegulationReplacement ArthroplastySignal TransductionSourceSynovial jointSystemTechniquesTherapeuticTissue EngineeringTissuesZebrafisharthropathiesarticular cartilagecell typecraniofacialdisabilityhealinghigh rewardhigh riskimprovedin silicoin vivojoint injuryjoint mobilizationprogenitorregeneration modelregenerativeregenerative approachrepairedsingle cell sequencingskeletal stem cellstem cellstooltranscriptomics
中文摘要
项目总结
关节损伤和疾病是全世界导致残疾的主要原因。滑膜关节由
复杂和结构完整的组织,包括专门的润滑关节软骨和结缔组织
像韧带一样稳定关节运动的组织。在哺乳动物中,关节组织的愈合能力很差。连
重建手术后,韧带不能重建未受伤关节的生物力学特性,留下
再次受伤或退行性关节疾病的高危患者。这种有限的修复能力是由故障造成的
分化涉及瘢痕组织代替成熟的韧带细胞和软骨细胞的发展
血统。目前,我们对驱动血统的潜在分子线索的了解有限
最关键的关节细胞类型的规格,特别是关节软骨和韧带。按顺序
为了改进关节组织再生医学疗法的策略,这个项目将利用
在高度再生的斑马鱼中独特的整体关节再生模式。当关节损伤无法愈合时
在哺乳动物模型中,我们发现内源性骨骼祖细胞能够旺盛地再生滑膜关节组织
在斑马鱼遭受灾难性伤害后。新的关节与周围组织整合以恢复生物力学
功能。重要的是,这种高再生能力包括新的润滑关节软骨的分化。
和完全整合的新的关节支撑韧带。在这里,通过结合遗传和空间分析,我们
将识别并从功能上剖析祖细胞的潜在分子调控,并表征其
它们与各自的再生生态位之间的物理相互作用是再生复杂的3D关节组织所必需的。
这一高风险/高回报的提议将对我们对联合再生的理解产生广泛的影响。
通过内源性细胞来源的修复,为整个关节提供改进的组织工程方法
关节疾病的置换术。
英文摘要
PROJECT SUMMARY
Joint injuries and diseases are the leading causes of disability worldwide. Synovial joints are composed of
complex and structurally integrated tissues, including specialized lubricating articular cartilage and connective
tissues like ligaments that stabilize joint movement. In mammals, joint tissues have a poor healing capacity. Even
after reconstructive surgery, ligaments fail to reestablish the biomechanical properties of uninjured joints, leaving
patients at high risk for re-injury or degenerative joint disease. This limited healing capacity results from a failure
of differentiation involving the development of scar tissue in place of mature ligamentocyte and chondrocyte
lineages. Currently, we have a limited understanding of the underlying molecular cues that drive lineage
specification of the most functionally critical joint cell types, particularly articular cartilage and ligaments. In order
to devise improved strategies for regenerative medicine therapeutics for joint tissues, this project will leverage a
unique whole joint regeneration model in the highly regenerative zebrafish. While joint injuries fail to heal in
mammalian models, we find that endogenous skeletal progenitor cells robustly regenerate synovial joint tissues
after a catastrophic injury in zebrafish. The new joint integrates with surrounding tissues to restore biomechanical
function. Critically, this high regenerative capacity includes the differentiation of new lubricating articular cartilage
and fully integrated new joint-supporting ligaments. Here, through combined genetic and spatial analyses, we
will identify and functionally dissect the underlying molecular regulation of progenitors and characterize their
physical interactions with their respective regenerative niches required to regenerate complex 3D joint tissues.
This high-risk/high-reward proposal will have wide-ranging impacts on our understanding of joint regeneration
via repair from endogenous cell sources and inform improved tissue engineering approaches to whole joint
replacement in joint disease.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Endogenous stem cells in jaw joint cartilage and ligament regeneration
-
批准号:10231273
-
项目类别:
-
资助金额:$24.29万
-
财政年份:2020
-
负责人:Joanna Marjorie Smeeton
-
依托单位:
Endogenous stem cells in jaw joint cartilage and ligament regeneration
-
批准号:10212674
-
项目类别:
-
资助金额:$24.9万
-
财政年份:2020
-
负责人:Joanna Marjorie Smeeton
-
依托单位:
Endogenous stem cells in jaw joint cartilage and ligament regeneration
-
批准号:10468759
-
项目类别:
-
资助金额:$23.67万
-
财政年份:2020
-
负责人:Joanna Marjorie Smeeton
-
依托单位:
海外基金