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zadetkov: 38
1.
  • Sclerostin expression and f... Sclerostin expression and functions beyond the osteocyte
    Weivoda, Megan M; Youssef, Stephanie J; Oursler, Merry Jo Bone (New York, N.Y.), 03/2017, Letnik: 96
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    Abstract Sclerostin, the product of the SOST gene, is a secreted inhibitor of Wnt signaling that is produced by osteocytes to regulate bone formation. While it is often considered an ...
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2.
  • Senolytics improve physical function and increase lifespan in old age
    Xu, Ming; Pirtskhalava, Tamar; Farr, Joshua N ... Nature medicine, 08/2018, Letnik: 24, Številka: 8
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    Physical function declines in old age, portending disability, increased health expenditures, and mortality. Cellular senescence, leading to tissue dysfunction, may contribute to these consequences of ...
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3.
  • Identification of Senescent... Identification of Senescent Cells in the Bone Microenvironment
    Farr, Joshua N; Fraser, Daniel G; Wang, Haitao ... Journal of bone and mineral research, November 2016, Letnik: 31, Številka: 11
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    ABSTRACT Cellular senescence is a fundamental mechanism by which cells remain metabolically active yet cease dividing and undergo distinct phenotypic alterations, including upregulation of p16Ink4a, ...
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4.
  • Macrophages and Bone Remode... Macrophages and Bone Remodeling
    Weivoda, Megan M; Bradley, Elizabeth W Journal of bone and mineral research, March 2023, Letnik: 38, Številka: 3
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    ABSTRACT Bone remodeling in the adult skeleton facilitates the removal and replacement of damaged and old bone to maintain bone quality. Tight coordination of bone resorption and bone formation ...
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5.
  • Targeting senescent cells e... Targeting senescent cells enhances adipogenesis and metabolic function in old age
    Xu, Ming; Palmer, Allyson K; Ding, Husheng ... eLife, 12/2015, Letnik: 4
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    Senescent cells accumulate in fat with aging. We previously found genetic clearance of senescent cells from progeroid INK-ATTAC mice prevents lipodystrophy. Here we show that primary human senescent ...
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6.
  • Identification of osteoclas... Identification of osteoclast-osteoblast coupling factors in humans reveals links between bone and energy metabolism
    Weivoda, Megan M; Chew, Chee Kian; Monroe, David G ... Nature communications, 01/2020, Letnik: 11, Številka: 1
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    Bone remodeling consists of resorption by osteoclasts followed by formation by osteoblasts, and osteoclasts are a source of bone formation-stimulating factors. Here we utilize osteoclast ablation by ...
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7.
  • Wnt Signaling Inhibits Oste... Wnt Signaling Inhibits Osteoclast Differentiation by Activating Canonical and Noncanonical cAMP/PKA Pathways
    Weivoda, Megan M; Ruan, Ming; Hachfeld, Christine M ... Journal of bone and mineral research, January 2016, Letnik: 31, Številka: 1
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    ABSTRACT Although there has been extensive characterization of the Wnt signaling pathway in the osteoblast lineage, the effects of Wnt proteins on the osteoclast lineage are less well studied. We ...
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8.
  • Novel insights into the cou... Novel insights into the coupling of osteoclasts and resorption to bone formation
    Durdan, Margaret M.; Azaria, Ruth D.; Weivoda, Megan M. Seminars in cell & developmental biology, 03/2022, Letnik: 123
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    Bone remodeling consists of resorption by osteoclasts (OCs) and formation by osteoblasts (OBs). Precise coordination of these activities is required for the resorbed bone to be replaced with an equal ...
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9.
  • Targeting cellular senescence prevents age-related bone loss in mice
    Farr, Joshua N; Xu, Ming; Weivoda, Megan M ... Nature medicine, 09/2017, Letnik: 23, Številka: 9
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    Aging is associated with increased cellular senescence, which is hypothesized to drive the eventual development of multiple comorbidities. Here we investigate a role for senescent cells in ...
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10.
  • Transplanted Senescent Cell... Transplanted Senescent Cells Induce an Osteoarthritis-Like Condition in Mice
    Xu, Ming; Bradley, Elizabeth W; Weivoda, Megan M ... The journals of gerontology. Series A, Biological sciences and medical sciences, 06/2017, Letnik: 72, Številka: 6
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    Osteoarthritis (OA) is the leading form of arthritis in the elderly, causing pain, disability, and immobility. OA has been associated with accumulation of senescent cells in or near joints. However, ...
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zadetkov: 38

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