Resultats de la cerca - David G. Monroe
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Regulation of Bone Metabolism by Sex Steroids per Sundeep Khosla, David G. Monroe
Publicat 2017Revisão -
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Estrogen and the skeleton per Sundeep Khosla, Merry Jo Oursler, David G. Monroe
Publicat 2012Revisão -
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Estrogen Receptor α and β Heterodimers Exert Unique Effects on Estrogen- and Tamoxifen-Dependent Gene Expression in Human U2OS Osteosarcoma Cells per David G. Monroe, Frank J. Secreto, Malayannan Subramaniam, Barbara J. Getz, Sundeep Khosla, Thomas C. Spelsberg
Publicat 2005Artigo -
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LPS-induced premature osteocyte senescence: Implications in inflammatory alveolar bone loss and periodontal disease pathogenesis per Rubén Aquino-Martínez, Jennifer L. Rowsey, Daniel G. Fraser, Brittany Eckhardt, Sundeep Khosla, Joshua N. Farr, David G. Monroe
Publicat 2020Artigo -
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Independent Roles of Estrogen Deficiency and Cellular Senescence in the Pathogenesis of Osteoporosis: Evidence in Young Adult Mice and Older Humans per Joshua N. Farr, Jennifer L. Rowsey, Brittany Eckhardt, Brianne S Thicke, Daniel G. Fraser, Tamar Tchkonia, James L. Kirkland, David G. Monroe, Sundeep Khosla
Publicat 2019Artigo -
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Effects of age on bone mRNA levels of sclerostin and other genes relevant to bone metabolism in humans per Matthew M. Roforth, Koji Fujita, Ulrike McGregor, Salman Kirmani, Louise K. McCready, James M. Peterson, Matthew T. Drake, David G. Monroe, Sundeep Khosla
Publicat 2013Artigo -
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Multiparametric senescent cell phenotyping reveals targets of senolytic therapy in the aged murine skeleton per Madison L. Doolittle, Dominik Saul, Japneet Kaur, Jennifer L. Rowsey, Stephanie J. B. Vos, Kevin D. Pavelko, Joshua N. Farr, David G. Monroe, Sundeep Khosla
Publicat 2023Artigo -
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Effects of Estrogen on Bone mRNA Levels of Sclerostin and Other Genes Relevant to Bone Metabolism in Postmenopausal Women per Koji Fujita, Matthew M. Roforth, Susan Demaray, Ulrike McGregor, Salman Kirmani, Louise K. McCready, James M. Peterson, Matthew T. Drake, David G. Monroe, Sundeep Khosla
Publicat 2013Artigo -
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Sympathetic β1-adrenergic signaling contributes to regulation of human bone metabolism per Sundeep Khosla, Matthew T. Drake, Tammie L. Volkman, Brianne S Thicke, Sara J. Achenbach, Elizabeth J. Atkinson, Michael J. Joyner, Clifford J. Rosen, David G. Monroe, Joshua N. Farr
Publicat 2018Artigo -
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Relationship of Sympathetic Activity to Bone Microstructure, Turnover, and Plasma Osteopontin Levels in Women per Joshua N. Farr, Nisha Charkoudian, Jill N. Barnes, David G. Monroe, Louise K. McCready, Elizabeth J. Atkinson, Shreyasee Amin, L. Joseph Melton, Michael J. Joyner, Sundeep Khosla
Publicat 2012Artigo -
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Targeted Reduction of Senescent Cell Burden Alleviates Focal Radiotherapy-Related Bone Loss per Abhishek Chandra, Anthony B. Lagnado, Joshua N. Farr, David G. Monroe, Sean S. Park, Christine Hachfeld, Tamar Tchkonia, James L. Kirkland, Sundeep Khosla, João F. Passos, Robert J. Pignolo
Publicat 2020Artigo
Eines de cerca:
Matèries relacionades
Biology
Medicine
Cell biology
Genetics
Internal medicine
Endocrinology
Gene
Senescence
Cancer research
Biochemistry
Bone remodeling
In vitro
Osteoblast
Estrogen
Immunology
Osteoporosis
Phenotype
Bioinformatics
Inflammation
Wnt signaling pathway
Cancer
Cell
Chemistry
Computational biology
Osteoclast
Osteocyte
Pathology
Receptor
Sclerostin
Signal transduction