Zobrazeno 1 - 10
of 39
pro vyhledávání: '"Daniel G. Fraser"'
Autor:
Jennifer L. Rowsey, Joshua N. Farr, Daniel G. Fraser, Sundeep Khosla, Brittany A. Eckhardt, Ruben Aquino-Martinez, David G. Monroe
Publikováno v:
J Periodontol
Background Coinciding with other chronic comorbidities, the prevalence of periodontal disease increases with aging. Mounting evidence has established that senescent cells accumulate at sites of age-related pathologies, where they promote "non-microbi
Autor:
Brittany A. Eckhardt, Tamar Tchkonia, Jennifer L. Rowsey, Daniel G. Fraser, David G. Monroe, Joshua N. Farr, James L. Kirkland, Brianne S Thicke, Sundeep Khosla
Publikováno v:
J Bone Miner Res
Estrogen deficiency is a seminal mechanism in the pathogenesis of osteoporosis. Mounting evidence, however, establishes that cellular senescence, a fundamental mechanism that drives multiple age-related diseases, also causes osteoporosis. Recently, w
Autor:
Sundeep Khosla, Ruben Aquino-Martinez, Brittany A. Eckhardt, David G. Monroe, Daniel G. Fraser, Joshua N. Farr, Jennifer L. Rowsey
Publikováno v:
Bone
Cellular senescence is associated with inflammation and extracellular matrix tissue remodeling through the secretion of proteins termed the senescence-associated secretory phenotype (SASP). Although osteocyte senescence in older individuals in the sk
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::21d29e3645ee6ba4f67c626ae04ab3b2
https://europepmc.org/articles/PMC6990876/
https://europepmc.org/articles/PMC6990876/
Autor:
Brittany A Negley, McKenzie M Fulcer, Jennifer L Onken, David G. Monroe, Daniel G. Fraser, Joshua N. Farr, Brianne S Thicke, Andre J. Van Wijnen, Megan M. Weivoda, Ruben Aquino-Martinez, Sundeep Khosla
Publikováno v:
Journal of Bone and Mineral Research. 34:135-144
Developing novel approaches to treat skeletal disorders requires an understanding of how critical molecular factors regulate osteoblast differentiation and bone remodeling. We have reported that (1) retinoic acid receptor-related orphan receptor beta
Autor:
Ming Ruan, Joshua N. Farr, Douglas Forrest, Brianne S Thicke, Megan M. Weivoda, Hong Liu, Kristy M. Nicks, John R. Hawse, Jennifer L Onken, Daniel G. Fraser, Sundeep Khosla, David G. Monroe, Brittany A Negley
Publikováno v:
Journal of Bone and Mineral Research. 33:720-731
There is a clinical need to identify new molecular targets for the treatment of osteoporosis, particularly those that simultaneously inhibit bone resorption while stimulating bone formation. We have previously shown in overexpression studies that ret
Autor:
Sundeep Khosla, Ming Xu, Merry Jo Oursler, David G. Monroe, Tamara Tchkonia, Brittany A Negley, Megan M. Weivoda, Tamar Pirtskhalava, Joshua N. Farr, Daniel G. Fraser, Mikolaj Ogrodnik, Christine M Hachfeld, Robert J. Pignolo, Matthew T. Drake, Jennifer L Onken, Nathan K. LeBrasseur, James L. Kirkland, Jad G Sfeir
Publikováno v:
Nature medicine
Aging is associated with increased cellular senescence, which is hypothesized to drive the eventual development of multiple co-morbidities1. Here, we investigate a role for senescent cells in age-related bone loss by multiple approaches. In particula
Autor:
Katherine L O'Grady, Brianne S Thicke, João F. Passos, Jennifer L. Rowsey, Olga P. Bondar, Aleksey V. Matveyenko, Brittany A. Eckhardt, David G. Monroe, Anthony B. Lagnado, Ravinder J. Singh, Sundeep Khosla, Daniel G. Fraser, Adrian Vella, Jolaine M. Hines, Joshua N. Farr, Andrew R. Thoreson, Kuntol Rakshit
Publikováno v:
JCI Insight
The worldwide prevalence of type 2 diabetes (T2D) is increasing. Despite normal to higher bone density, patients with T2D paradoxically have elevated fracture risk resulting, in part, from poor bone quality. Advanced glycation endproducts (AGEs) and
Autor:
Tamara Tchkonia, Sundeep Khosla, Daniel G. Fraser, Mikolaj Ogrodnik, Nathan K. LeBrasseur, Lynda F. Bonewald, David G. Monroe, Matthew T. Drake, Katharina Jaehn, James L. Kirkland, Haitao Wang, Megan M. Weivoda, Joshua N. Farr, Robert J. Pignolo
Publikováno v:
Journal of Bone and Mineral Research. 31:1920-1929
Cellular senescence is a fundamental mechanism by which cells remain metabolically active yet cease dividing and undergo distinct phenotypic alterations, including upregulation of p16Ink4a , profound secretome changes, telomere shortening, and decond
Autor:
Kristy M. Nicks, Meghan E. McGee-Lawrence, Jennifer J. Westendorf, David G. Monroe, Koji Fujita, Daniel G. Fraser, Ulrike McGregor, Matthew T. Drake, Sundeep Khosla
Publikováno v:
Journal of Bone and Mineral Research. 31:606-614
Although the role of ERα in regulating bone metabolism has been extensively studied, ERβ has been largely dismissed as a relevant modulator of bone mass. Previous studies examining ERβ utilized a germline knockout mouse expressing transcript varia
Autor:
Bettina M. Weigand, Christine M Hachfeld, Ming Xu, Joshua N. Farr, Xiaonan Hou, Vesna D. Garovic, Jennifer L Onken, Larissa G.P. Langhi, Tamar Pirtskhalava, Hajrunisa Cubro, Ravinder J. Singh, S. John Weroha, Megan M. Weivoda, Mikolaj Ogrodnik, Kurt O. Johnson, Keisuke Ejima, Gene B. Hubbard, Laura J. Niedernhofer, Grace C Verzosa, Diana Jurk, James L. Kirkland, Paul D. Robbins, Moritz Weigl, Christina L. Inman, Jordan D. Miller, Daniel G. Fraser, David B. Allison, Nino Giorgadze, Sundeep Khosla, Yuji Ikeno, Allyson K. Palmer, Tamara Tchkonia, Nathan K. LeBrasseur
Publikováno v:
Nature medicine
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 aging, but whether senescence can directly drive a