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Jiake Xu

Showing results (211-220 of 401) with videos related to

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Frontiers in Pharmacology|June 21, 2021
Notopterol Attenuates Estrogen Deficiency-Induced Osteoporosis <i>via</i> Repressing RANKL Signaling and Reactive Oxygen SpeciesDelong Chen, Qingqing Wang, Ying Li, et al.
Journal of Cellular Physiology|October 21, 2018
Helvolic acid attenuates osteoclast formation and function via suppressing RANKL-induced NFATc1 activationKai Chen, Yu Yuan, Ziyi Wang, et al.
The Journal of Biological Chemistry|January 30, 2008
Cytoplasmic terminus of vacuolar type proton pump accessory subunit Ac45 is required for proper interaction with V(0) domain subunits and efficient osteoclastic bone resorptionHaotian Feng, Taksum Cheng, Nathan J Pavlos, et al.
Journal of Cellular and Molecular Medicine|December 16, 2024
FGF20 promotes spinal cord injury repair by inhibiting the formation of necrotic corpuscle P-MLKL/P-RIP1/P-RIP3 in neuronsXiong Cai, Zhenwen Xie, Juan Zhao, et al.
Journal of Bone and Mineral Research : the Official Journal of the American Society for Bone and Mineral Research|December 20, 2015
Dihydroartemisinin, an Anti-Malaria Drug, Suppresses Estrogen Deficiency-Induced Osteoporosis, Osteoclast Formation, and RANKL-Induced Signaling PathwaysLin Zhou, Qian Liu, Mingli Yang, et al.
Stem Cells Translational Medicine|February 7, 2020
The repair and autophagy mechanisms of hypoxia-regulated bFGF-modified primary embryonic neural stem cells in spinal cord injurySipin Zhu, Min Chen, Liancheng Deng, et al.
Biochemical Pharmacology|September 7, 2021
Oroxylin A reduces osteoclast formation and bone resorption via suppressing RANKL-induced ROS and NFATc1 activationYansi Xian, Yuangang Su, Jiamin Liang, et al.
Bone Research|March 17, 2022
Versatile subtypes of pericytes and their roles in spinal cord injury repair, bone development and repairSipin Zhu, Min Chen, Yibo Ying, et al.
Journal of Cellular Physiology|November 19, 2016
Mechanical Stress Regulates Bone Metabolism Through MicroRNAsYu Yuan, Lingli Zhang, Xiaoyang Tong, et al.
Journal of Cellular Physiology|September 25, 2004
Evidence of reciprocal regulation between the high extracellular calcium and RANKL signal transduction pathways in RAW cell derived osteoclastsJiake Xu, Cathy Wang, Renzhi Han, et al.
Pageof 41

Showing results (211-220 of 401) with videos related to

Sort By:
Pageof 41
Frontiers in Pharmacology|June 21, 2021
Notopterol Attenuates Estrogen Deficiency-Induced Osteoporosis <i>via</i> Repressing RANKL Signaling and Reactive Oxygen SpeciesDelong Chen, Qingqing Wang, Ying Li, et al.
Journal of Cellular Physiology|October 21, 2018
Helvolic acid attenuates osteoclast formation and function via suppressing RANKL-induced NFATc1 activationKai Chen, Yu Yuan, Ziyi Wang, et al.
The Journal of Biological Chemistry|January 30, 2008
Cytoplasmic terminus of vacuolar type proton pump accessory subunit Ac45 is required for proper interaction with V(0) domain subunits and efficient osteoclastic bone resorptionHaotian Feng, Taksum Cheng, Nathan J Pavlos, et al.
Journal of Cellular and Molecular Medicine|December 16, 2024
FGF20 promotes spinal cord injury repair by inhibiting the formation of necrotic corpuscle P-MLKL/P-RIP1/P-RIP3 in neuronsXiong Cai, Zhenwen Xie, Juan Zhao, et al.
Journal of Bone and Mineral Research : the Official Journal of the American Society for Bone and Mineral Research|December 20, 2015
Dihydroartemisinin, an Anti-Malaria Drug, Suppresses Estrogen Deficiency-Induced Osteoporosis, Osteoclast Formation, and RANKL-Induced Signaling PathwaysLin Zhou, Qian Liu, Mingli Yang, et al.
Stem Cells Translational Medicine|February 7, 2020
The repair and autophagy mechanisms of hypoxia-regulated bFGF-modified primary embryonic neural stem cells in spinal cord injurySipin Zhu, Min Chen, Liancheng Deng, et al.
Biochemical Pharmacology|September 7, 2021
Oroxylin A reduces osteoclast formation and bone resorption via suppressing RANKL-induced ROS and NFATc1 activationYansi Xian, Yuangang Su, Jiamin Liang, et al.
Bone Research|March 17, 2022
Versatile subtypes of pericytes and their roles in spinal cord injury repair, bone development and repairSipin Zhu, Min Chen, Yibo Ying, et al.
Journal of Cellular Physiology|November 19, 2016
Mechanical Stress Regulates Bone Metabolism Through MicroRNAsYu Yuan, Lingli Zhang, Xiaoyang Tong, et al.
Journal of Cellular Physiology|September 25, 2004
Evidence of reciprocal regulation between the high extracellular calcium and RANKL signal transduction pathways in RAW cell derived osteoclastsJiake Xu, Cathy Wang, Renzhi Han, et al.
Pageof 41