Novel curcumin analogue UBS109 potently stimulates osteoblastogenesis and suppresses osteoclastogenesis: involvement in Smad activation and NF-κB inhibition.
暂无分享,去创建一个
J. Snyder | M. Shoji | Aiming Sun | M. Yamaguchi | T. Moore
[1] C. Deng,et al. TGF-β and BMP Signaling in Osteoblast Differentiation and Bone Formation , 2012, International journal of biological sciences.
[2] T. Chambers,et al. How are osteoclasts induced to resorb bone? , 2011, Annals of the New York Academy of Sciences.
[3] M. Yamaguchi,et al. The intact strontium ranelate complex stimulates osteoblastogenesis and suppresses osteoclastogenesis by antagonizing NF-κB activation , 2011, Molecular and Cellular Biochemistry.
[4] M. Weitzmann,et al. Zinc stimulates osteoblastogenesis and suppresses osteoclastogenesis by antagonizing NF-κB activation , 2011, Molecular and Cellular Biochemistry.
[5] M. Weitzmann,et al. Vitamin K2 stimulates osteoblastogenesis and suppresses osteoclastogenesis by suppressing NF-κB activation. , 2010, International journal of molecular medicine.
[6] M. Yamaguchi. Nutritional Factors and Osteoporosis Prevention , 2010 .
[7] Liza J. Raggatt,et al. Cellular and Molecular Mechanisms of Bone Remodeling* , 2010, The Journal of Biological Chemistry.
[8] M. Yamaguchi. Role of nutritional zinc in the prevention of osteoporosis , 2010, Molecular and Cellular Biochemistry.
[9] J. Snyder,et al. Curcumin analog cytotoxicity against breast cancer cells: exploitation of a redox-dependent mechanism. , 2009, Bioorganic & medicinal chemistry letters.
[10] K. Guan,et al. Inhibition of osteoblastic bone formation by nuclear factor-κB , 2009, Nature Medicine.
[11] Hye-Seon Choi,et al. Curcumin inhibits osteoclastogenesis by decreasing receptor activator of nuclear factor-kappaB ligand (RANKL) in bone marrow stromal cells. , 2008, Molecules and cells.
[12] J. Snyder,et al. Inhibition of IκB Kinase-Nuclear Factor-κB Signaling Pathway by 3,5-Bis(2-flurobenzylidene)piperidin-4-one (EF24), a Novel Monoketone Analog of Curcumin , 2008, Molecular Pharmacology.
[13] E. Schwarz,et al. Ubiquitin Ligase Smurf1 Mediates Tumor Necrosis Factor-induced Systemic Bone Loss by Promoting Proteasomal Degradation of Bone Morphogenetic Signaling Proteins* , 2008, Journal of Biological Chemistry.
[14] Tom Misteli,et al. Modulation of RNA polymerase assembly dynamics in transcriptional regulation. , 2008, Molecular cell.
[15] M. Nanes,et al. Endogenous TNFα Lowers Maximum Peak Bone Mass and Inhibits Osteoblastic Smad Activation Through NF‐κB , 2007, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[16] O. Johnell,et al. An estimate of the worldwide prevalence and disability associated with osteoporotic fractures , 2006, Osteoporosis International.
[17] Roberto Pacifici,et al. Estrogen deficiency and bone loss: an inflammatory tale. , 2006, The Journal of clinical investigation.
[18] E. Schwarz,et al. Smad7 mediates inhibition of Saos2 osteosarcoma cell differentiation by NFκB , 2006 .
[19] J. Snyder,et al. Synthesis and biological evaluation of novel curcumin analogs as anti-cancer and anti-angiogenesis agents. , 2004, Bioorganic & medicinal chemistry.
[20] C. Huang,et al. Osteoclastogenesis, Bone Resorption, and Osteoclast‐Based Therapeutics , 2003, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[21] M. Yamaguchi. Isoflavone and Bone Metabolism : Its Cellular Mechanism and Preventive Role in Bone Loss , 2002 .
[22] R. Rizzoli,et al. Nutritional aspects of hip fractures. , 1996, Bone.