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Calcified Tissue International|May 23, 2007
Loss of sex-specific difference in femoral bone parameters in male leptin knockout miceXiaoguang Wang, Charles H Rundle, Jon E Wergedal, et al.Bone|September 1, 2004
In vivo and in vitro evidence that the high osteoblastic activity in C3H/HeJ mice compared to C57BL/6J mice is intrinsic to bone cellsMatilda H-C Sheng, K-H William Lau, Wesley G Beamer, et al.The Journal of Biological Chemistry|September 21, 2010
Leptin receptor (Lepr) is a negative modulator of bone mechanosensitivity and genetic variations in Lepr may contribute to the differential osteogenic response to mechanical stimulation in the C57BL/6J and C3H/HeJ pair of mouse strainsSonia Kapur, Mehran Amoui, Chandrasekhar Kesavan, et al.Calcified Tissue International|September 19, 2009
Marrow stromal cell-based cyclooxygenase 2 ex vivo gene-transfer strategy surprisingly lacks bone-regeneration effects and suppresses the bone-regeneration action of bone morphogenetic protein 4 in a mouse critical-sized calvarial defect modelK-H William Lau, Reinhard Gysin, Shin-Tai Chen, et al.Bone|October 4, 2012
Disruption of the insulin-like growth factor-1 gene in osteocytes impairs developmental bone growth in miceMatilda H-C Sheng, Xiao-Dong Zhou, Lynda F Bonewald, et al.Plos One|May 23, 2014
Direct lentiviral-cyclooxygenase 2 application to the tendon-bone interface promotes osteointegration and enhances return of the pull-out tensile strength of the tendon graft in a rat model of biceps tenodesisCharles H Rundle, Shin-Tai Chen, Michael J Coen, et al.The Journal of Gene Medicine|February 16, 2011
Stem cell antigen-1 positive cell-based systemic human growth hormone gene transfer strategy increases endosteal bone resorption and bone loss in miceSusan L Hall, Shin-Tai Chen, Jon E Wergedal, et al.Bone|August 19, 2008
Bax deficiency in mice increases cartilage production during fracture repair through a mechanism involving increased chondrocyte proliferation without changes in apoptosisCharles H Rundle, Xiaoguang Wang, Matilda H-C Sheng, et al.The Journal of Biological Chemistry|February 27, 2009
Targeted transgenic expression of an osteoclastic transmembrane protein-tyrosine phosphatase in cells of osteoclastic lineage increases bone resorption and bone loss in male young adult miceMatilda H-C Sheng, Mehran Amoui, Virginia Stiffel, et al.Plos One|April 27, 2012
Targeted overexpression of osteoactivin in cells of osteoclastic lineage promotes osteoclastic resorption and bone loss in miceMatilda H-C Sheng, Jon E Wergedal, Subburaman Mohan, et al.Pageof 12