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Cell Metabolism|March 4, 2010
Signaling through the M(3) muscarinic receptor favors bone mass accrual by decreasing sympathetic activityYu Shi, Franck Oury, Vijay K Yadav, et al.The Journal of Cell Biology|July 27, 2011
A cell-autonomous requirement for neutral sphingomyelinase 2 in bone mineralizationZohreh Khavandgar, Christophe Poirier, Christopher J Clarke, et al.Frontiers in Cell and Developmental Biology|September 9, 2015
Mathematical model for bone mineralizationSvetlana V Komarova, Lee Safranek, Jay Gopalakrishnan, et al.Journal of Bone and Mineral Research : the Official Journal of the American Society for Bone and Mineral Research|June 6, 2020
Genetic Ablation of Osteopontin in Osteomalacic Hyp Mice Partially Rescues the Deficient Mineralization Without Correcting HypophosphatemiaBetty Hoac, Maja Østergaard, Nina K Wittig, et al.Cell Death and Differentiation|April 8, 2017
Transglutaminases factor XIII-A and TG2 regulate resorption, adipogenesis and plasma fibronectin homeostasis in bone and bone marrowAisha Mousa, Cui Cui, Aimei Song, et al.The Journal of Biological Chemistry|May 11, 2017
Matrix Gla protein deficiency impairs nasal septum growth, causing midface hypoplasiaJuliana Marulanda, Hazem Eimar, Marc D McKee, et al.Bone Research|April 27, 2026
Vitamin K-dependent carboxylation in osteoblasts regulates bone resorption through GAS6 in male miceMonica Pata, Diep Ngoc Thi Pham, Julie Lacombe, et al.The American Journal of Pathology|January 1, 2026
Matrix Gla Protein Expression in Pericytes and Myofibroblasts Contributes to Renal FibrosisKyoungmi Bak, Hyunyun Kim, Jocelyn S Garland, et al.Journal of Bone and Mineral Research : the Official Journal of the American Society for Bone and Mineral Research|September 20, 2012
Proteolytic processing of osteopontin by PHEX and accumulation of osteopontin fragments in Hyp mouse bone, the murine model of X-linked hypophosphatemiaNilana M T Barros, Betty Hoac, Raquel L Neves, et al.Scientific Reports|January 26, 2019
Combination of polyetherketoneketone scaffold and human mesenchymal stem cells from temporomandibular joint synovial fluid enhances bone regenerationYi Lin, Mayumi Umebayashi, Mohamed-Nur Abdallah, et al.Pageof 7