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Loss of Notch signaling in skeletal stem cells enhances bone formation with aging

摘要Skeletal stem and progenitor cells(SSPCs)perform bone maintenance and repair.With age,they produce fewer osteoblasts and more adipocytes leading to a loss of skeletal integrity.The molecular mechanisms that underlie this detrimental transformation are largely unknown.Single-cell RNA sequencing revealed that Notch signaling becomes elevated in SSPCs during aging.To examine the role of increased Notch activity,we deleted Nicastrin,an essential Notch pathway component,in SSPCs in vivo.Middle-aged conditional knockout mice displayed elevated SSPC osteo-lineage gene expression,increased trabecular bone mass,reduced bone marrow adiposity,and enhanced bone repair.Thus,Notch regulates SSPC cell fate decisions,and moderating Notch signaling ameliorates the skeletal aging phenotype,increasing bone mass even beyond that of young mice.Finally,we identified the transcription factor Ebf3 as a downstream mediator of Notch signaling in SSPCs that is dysregulated with aging,highlighting it as a promising therapeutic target to rejuvenate the aged skeleton.

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作者 Lindsey H.Remark [1] Kevin Leclerc [1] Malissa Ramsukh [1] Ziyan Lin [2] Sooyeon Lee [3] Backialakshmi Dharmalingam [4] Lauren Gillinov [1] Vasudev V.Nayak [5] Paulo El Parente [1] Margaux Sambon [1] Pablo J.Atria [1] Mohamed A.E.Ali [6] Lukasz Witek [7] Alesha B.Castillo [1] Christopher Y, Park [6] Ralf H.Adams [4] Aristotelis Tsirigos [2] Sophie M.Morgani [1] Philipp Leucht [8] 学术成果认领
作者单位 Department of Orthopaedic Surgery,NYU Robert Ⅰ.Grossman School of Medicine,New York,NY,USA [1] Applied Bioinformatics Laboratories,NYU Grossman School of Medicine,New York,NY,USA [2] Department of Orthopaedic Surgery,NYU Robert Ⅰ.Grossman School of Medicine,New York,NY,USA;Institute of Comparative Molecular Endocrinology,Ulm University,Ulm,Germany [3] Max Planck Institute for Molecular Biomedicine,Department of Tissue Morphogenesis,and University of Munster,Faculty of Medicine,D-48149 Munster,Germany [4] Department of Biochemistry and Molecular Biology,University of Miami Miller School of Medicine,Miami,FL,USA [5] Department of Pathology,NYU Robert Ⅰ.Grossman School of Medicine,New York,NY,USA [6] Biomaterials Division,New York University College of Dentistry,New York,NY,USA;Hansj?rg Wyss Department of Plastic Surgery,NYU Grossman School of Medicine,New York University,New York,NY,USA;Department of Biomedical Engineering,Tandon School of Engineering,New York University,Brooklyn,NY,USA [7] Department of Orthopaedic Surgery,NYU Robert Ⅰ.Grossman School of Medicine,New York,NY,USA;Department of Cell Biology,NYU Robert Ⅰ.Grossman School of Medicine,New York,NY,USA [8]
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DOI 10.1038/s41413-023-00283-8
发布时间 2024-03-07(万方平台首次上网日期,不代表论文的发表时间)
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骨研究(英文版)

骨研究(英文版)

2023年11卷4期

737-750页

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