Subburaman Mohan

Affiliations: 
Loma Linda University, Loma Linda, United States 
Area:
Anatomy Biology, Animal Physiology Biology
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"Subburaman Mohan"
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Publications

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Xing W, Pourteymoor S, Udayakumar A, et al. (2024) Targeted Overexpression of in Osteoblasts Increases Trabecular Bone Mass by Stimulating Osteogenesis at the Expense of Adipogenesis in Mice. Biology. 13
Xing W, Kesavan C, Pourteymoor S, et al. (2023) Global and Conditional Disruption of the Gene in Osteoblasts and/or Chondrocytes Unveils Epiphyseal and Metaphyseal Bone-Specific Effects of IGF-I in Bone. Biology. 12
Xing W, Larkin D, Pourteymoor S, et al. (2022) Lack of Skeletal Effects in Mice with Targeted Disruptionof Prolyl Hydroxylase Domain 1 () Gene Expressed in Chondrocytes. Life (Basel, Switzerland). 13
Rundle CH, Gomez GA, Pourteymoor S, et al. (2022) Sequential application of small molecule therapy enhances chondrogenesis and angiogenesis in murine segmental defect bone repair. Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society
Gomez GA, Rundle CH, Xing W, et al. (2022) Contrasting effects of Ksr2, an obesity gene, on trabecular bone volume and bone marrow adiposity. Elife. 11
Xing W, Pourteymoor S, Chen Y, et al. (2022) Targeted Deletion of the Gene in Mice Increases Articular Cartilage and Inhibits Chondrocyte Differentiation. Frontiers in Endocrinology. 13: 931318
Das BK, Wang L, Fujiwara T, et al. (2022) Transferrin receptor 1-mediated iron uptake regulates bone mass in mice via osteoclast mitochondria and cytoskeleton. Elife. 11
Mohan S, Kesavan C. (2022) T-cell factor 7L2 is a novel regulator of osteoblast functions that acts in part by modulation of hypoxia signaling. American Journal of Physiology. Endocrinology and Metabolism. 322: E528-E539
Xing W, Pourteymoor S, Kesavan C, et al. (2022) Mice with Targeted Knockout of Tetraspanin 3 Exhibit Reduced Trabecular Bone Mass Caused by Decreased Osteoblast Functions. Cells. 11
Das BK, Gogoi J, Kannan A, et al. (2021) The Cytoplasmic Dynein Associated Protein NDE1 Regulates Osteoclastogenesis by Modulating M-CSF and RANKL Signaling Pathways. Cells. 11
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