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  • 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, Volume: 31, Issue: 11
    Journal Article
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    Open access

    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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  • Demonstration of osteocytic... Demonstration of osteocytic perilacunar/canalicular remodeling in mice during lactation
    Qing, Hai; Ardeshirpour, Laleh; Divieti Pajevic, Paola ... Journal of bone and mineral research, 20/May , Volume: 27, Issue: 5
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    Osteoclasts are thought to be solely responsible for the removal of bone matrix. However, we show here that osteocytes can also remove bone matrix by reversibly remodeling their ...
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  • β-aminoisobutyric Acid, l-B... β-aminoisobutyric Acid, l-BAIBA, Is a Muscle-Derived Osteocyte Survival Factor
    Kitase, Yukiko; Vallejo, Julian A.; Gutheil, William ... Cell reports, 02/2018, Volume: 22, Issue: 6
    Journal Article
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    Exercise has beneficial effects on metabolism and on tissues. The exercise-induced muscle factor β-aminoisobutyric acid (BAIBA) plays a critical role in the browning of white fat and in insulin ...
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  • Isolation and culture of pr... Isolation and culture of primary osteocytes from the long bones of skeletally mature and aged mice
    Stern, Amber Rath; Stern, Matthew M; Van Dyke, Mark E ... BioTechniques, 06/2012, Volume: 52, Issue: 6
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    The purpose of this work was to establish a methodology to enable the isolation and study of osteocytes from skeletally mature young (4-month-old) and old (22-month-old) mice. The location of ...
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  • Severely Impaired Bone Mate... Severely Impaired Bone Material Quality in Chihuahua Zebrafish Resembles Classical Dominant Human Osteogenesis Imperfecta
    Fiedler, Imke A.K.; Schmidt, Felix N.; Wölfel, Eva M. ... Journal of bone and mineral research, August 2018, Volume: 33, Issue: 8
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    ABSTRACT Excessive skeletal deformations and brittle fractures in the vast majority of patients suffering from osteogenesis imperfecta (OI) are a result of substantially reduced bone quality. Because ...
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  • Muscle-Bone Crosstalk: Emer... Muscle-Bone Crosstalk: Emerging Opportunities for Novel Therapeutic Approaches to Treat Musculoskeletal Pathologies
    Maurel, Delphine B; Jähn, Katharina; Lara-Castillo, Nuria Biomedicines, 10/2017, Volume: 5, Issue: 4
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    Osteoporosis and sarcopenia are age-related musculoskeletal pathologies that often develop in parallel. Osteoporosis is characterized by a reduced bone mass and an increased fracture risk. Sarcopenia ...
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  • Multiscale bone quality ana... Multiscale bone quality analysis in osteoarthritic knee joints reveal a role of the mechanosensory osteocyte network in osteophytes
    Rabelo, Gustavo Davi; Vom Scheidt, Annika; Klebig, Felix ... Scientific reports, 01/2020, Volume: 10, Issue: 1
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    Osteophytes - bony outgrowths on joint structures - are found in healthy individuals but are specifically present in late osteoarthritis (OA). Osteophyte development and function is not well ...
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  • Early bone tissue aging in ... Early bone tissue aging in human auditory ossicles is accompanied by excessive hypermineralization, osteocyte death and micropetrosis
    Rolvien, Tim; Schmidt, Felix N; Milovanovic, Petar ... Scientific reports, 01/2018, Volume: 8, Issue: 1
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    Within the mineralized bone, osteocytes form a multifunctional mechanosensitive network orchestrating bone remodelling. A preserved osteocyte population is a crucial determinant of bone quality. In ...
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  • TG-interacting factor 1 (Tg... TG-interacting factor 1 (Tgif1)-deficiency attenuates bone remodeling and blunts the anabolic response to parathyroid hormone
    Saito, Hiroaki; Gasser, Andreas; Bolamperti, Simona ... Nature communications, 03/2019, Volume: 10, Issue: 1
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    Osteoporosis is caused by increased bone resorption and decreased bone formation. Intermittent administration of a fragment of Parathyroid hormone (PTH) activates osteoblast-mediated bone formation ...
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