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Bone Research(2025年04期)
骨研究(英文版)
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- 基本信息
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:四川大学
:双月
:2095-4700
- 出版信息
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: 医药卫生科技
: 外科学
: 645 篇
- 评价信息
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:4.372
:2.62
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目 录
- Current cutting-edge omics techniques on musculoskeletal tissues and diseases
- Pathophysiology of Myopenia in rheumatoid arthritis
- Cellular senescence and other age-related mechanisms in skeletal diseases
- Nucleic acid aptamers in orthopedic diseases:promising therapeutic agents for bone disorders
- M2 macrophages-derived exosomes for osteonecrosis of femoral head treatment:modulating neutrophil extracellular traps formation and endothelial phenotype transition
- Porcupine inhibition is a promising pharmacological treatment for severe sclerosteosis pathologies
- KIAA1199(CEMIP) regulates adipogenesis and whole-body energy metabolism
- NELL2, a novel osteoinductive factor, regulates osteoblast differentiation and bone homeostasis through fibronectin 1/integrin-mediated FAK/AKT signaling
- SPI1 activates mitochondrial unfolded response signaling to inhibit chondrocyte senescence and relieves osteoarthritis
- Sirt6 deficiency promotes senescence and age-associated intervertebral disc degeneration in mice
- RUNX2 is essential for maintaining synchondrosis chondrocytes and cranial base growth
- Age- and sex-specific deterioration on bone and osteocyte lacuno-canalicular network in a mouse model of premature aging
- Synovial fibroblast derived small extracellular vesicles miRNA15-29148 promotes articular chondrocyte apoptosis in rheumatoid arthritis
- AIDS patients suffer higher risk of advanced knee osteoarthritis progression due to lopinavir-induced Zmpste24 inhibition
- Mouse model of anti-RANKL discontinuation reveals reduced bone mass and quality through disruption of bone remodeling
- IGF2BP3-mediated m~6A modification of RASGRF1 promoting joint injury in rheumatoid arthritis
- Chaperone-mediated autophagy directs a dual mechanism to balance premature senescence and senolysis to prevent intervertebral disc degeneration