Simulated microgravity suppresses osteoblast phenotype, Runx2 levels and AP-1 transactivation.
about
The current state of bone loss research: data from spaceflight and microgravity simulators.Microgravity induces inhibition of osteoblastic differentiation and mineralization through abrogating primary cilia.Amelioration of type I diabetes-induced osteoporosis by parathyroid hormone is associated with improved osteoblast survivalIncreased bone adiposity and peroxisomal proliferator-activated receptor-gamma2 expression in type I diabetic mice.The effect of simulated microgravity on human mesenchymal stem cells cultured in an osteogenic differentiation system: a bioinformatics study.Streptozotocin, type I diabetes severity and boneActin microfilament mediates osteoblast Cbfa1 responsiveness to BMP2 under simulated microgravityCCAAT/enhancer binding protein β-deficiency enhances type 1 diabetic bone phenotype by increasing marrow adiposity and bone resorptionCilia-like structures and polycystin-1 in osteoblasts/osteocytes and associated abnormalities in skeletogenesis and Runx2 expression.Simulated Microgravity Exerts an Age-Dependent Effect on the Differentiation of Cardiovascular Progenitors Isolated from the Human HeartLoss of Bone and Wnt10b Expression in Male Type 1 Diabetic Mice Is Blocked by the Probiotic Lactobacillus reuteri.The Role of Parathyroid Hormone-Related Protein (PTHrP) in Osteoblast Response to Microgravity: Mechanistic Implications for Osteoporosis Development.Gene therapy progress and prospects: in tissue engineering.miRNA-132-3p inhibits osteoblast differentiation by targeting Ep300 in simulated microgravity.miR-33-5p, a novel mechano-sensitive microRNA promotes osteoblast differentiation by targeting Hmga2.Leptin treatment prevents type I diabetic marrow adiposity but not bone loss in miceA major effect of simulated microgravity on several stages of preimplantation mouse development is lethality associated with elevated phosphorylated SAPK/JNK.Nanostructured substrate conformation can decrease osteoblast-like cell dysfunction in simulated microgravity conditions.Pressure simulation of orthodontic force in osteoblasts: a pilot study.Osteoblast-targeted delivery of miR-33-5p attenuates osteopenia development induced by mechanical unloading in mice.Simulated microgravity induces a cellular regression of the mature phenotype in human primary osteoblasts.RhoGTPase stimulation is associated with strontium chloride treatment to counter simulated microgravity-induced changes in multipotent cell commitment.
P2860
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P2860
Simulated microgravity suppresses osteoblast phenotype, Runx2 levels and AP-1 transactivation.
description
2003 nî lūn-bûn
@nan
2003年の論文
@ja
2003年論文
@yue
2003年論文
@zh-hant
2003年論文
@zh-hk
2003年論文
@zh-mo
2003年論文
@zh-tw
2003年论文
@wuu
2003年论文
@zh
2003年论文
@zh-cn
name
Simulated microgravity suppres ...... vels and AP-1 transactivation.
@en
Simulated microgravity suppres ...... vels and AP-1 transactivation.
@nl
type
label
Simulated microgravity suppres ...... vels and AP-1 transactivation.
@en
Simulated microgravity suppres ...... vels and AP-1 transactivation.
@nl
prefLabel
Simulated microgravity suppres ...... vels and AP-1 transactivation.
@en
Simulated microgravity suppres ...... vels and AP-1 transactivation.
@nl
P356
P1476
Simulated microgravity suppres ...... vels and AP-1 transactivation.
@en
P2093
C Ontiveros
P304
P356
10.1002/JCB.10410
P50
P577
2003-02-01T00:00:00Z