Uncontrolled oxidative stress impairs bone formation and induces age-related bone loss in humans. The FoxO family is widely accepted to play an important role in protecting diverse cells from reactive oxygen species (ROS). Activation of FoxO1, the main FoxO in bone, stimulates proliferation and differentiation as well as inhibits apoptosis of osteoblast lineage cells. Despite the important role of FoxO1, little is known about how FoxO1 expression in bone is regulated. Meanwhile, several recent studies reported that microRNAs (miRNAs) could play a role in osteoblast differentiation and bone formation by targeting various transcriptional factors. Here, we identified one additional crucial miRNA, miR-182, which regulates osteoblastogenesis by ...
<div><p>To design novel therapeutics against bone loss, understanding the molecular mechanisms regul...
Osteoclasts are large multinucleated bone cells of the myeloid lineage. Osteoclasts secrete protease...
Lineage progression in osteoblasts and chondrocytes is stringently controlled by the cell-fate-deter...
Dept. of Medicine/박사Uncontrolled oxidative stress impairs bone formation and induces age-related bon...
MicroRNAs (miRNAs) are critical posttranscriptional regulators of gene expression that control osteo...
Background/Aims: Postmenopausal osteoporosis is closely associated with reduction in the differentia...
Senescent osteoblast overburden accelerates bone mass loss. Little is understood about microRNA cont...
To design novel therapeutics against bone loss, understanding the molecular mechanisms regulating os...
Context: Evidence suggests that microRNA (miRNA) regulates gene expression and bone tissue homoeosta...
Targeting microRNAs recently shows significant therapeutic promise; however, such progress is underd...
RNA interference (RNAi) is a post-transcriptional gene silencing process elicited by double-stranded...
Background/Aims: Postmenopausal osteoporosis is a common disease associated with estrogen deficiency...
Elucidating the molecular events governing the osteogenic differentiation of mouse embryonic stem ce...
UNLABELLED: BACKGOROUND: MicroRNAs (miRNAs), which regulate biological processes by annealing to the...
Bone is a complex mineralized tissue that functions as a structural support for the body, as well as...
<div><p>To design novel therapeutics against bone loss, understanding the molecular mechanisms regul...
Osteoclasts are large multinucleated bone cells of the myeloid lineage. Osteoclasts secrete protease...
Lineage progression in osteoblasts and chondrocytes is stringently controlled by the cell-fate-deter...
Dept. of Medicine/박사Uncontrolled oxidative stress impairs bone formation and induces age-related bon...
MicroRNAs (miRNAs) are critical posttranscriptional regulators of gene expression that control osteo...
Background/Aims: Postmenopausal osteoporosis is closely associated with reduction in the differentia...
Senescent osteoblast overburden accelerates bone mass loss. Little is understood about microRNA cont...
To design novel therapeutics against bone loss, understanding the molecular mechanisms regulating os...
Context: Evidence suggests that microRNA (miRNA) regulates gene expression and bone tissue homoeosta...
Targeting microRNAs recently shows significant therapeutic promise; however, such progress is underd...
RNA interference (RNAi) is a post-transcriptional gene silencing process elicited by double-stranded...
Background/Aims: Postmenopausal osteoporosis is a common disease associated with estrogen deficiency...
Elucidating the molecular events governing the osteogenic differentiation of mouse embryonic stem ce...
UNLABELLED: BACKGOROUND: MicroRNAs (miRNAs), which regulate biological processes by annealing to the...
Bone is a complex mineralized tissue that functions as a structural support for the body, as well as...
<div><p>To design novel therapeutics against bone loss, understanding the molecular mechanisms regul...
Osteoclasts are large multinucleated bone cells of the myeloid lineage. Osteoclasts secrete protease...
Lineage progression in osteoblasts and chondrocytes is stringently controlled by the cell-fate-deter...