Spaceflight modulates insulin-like growth factor binding proteins and glucocorticoid receptor in osteoblasts
スポンサーリンク
概要
著者
-
Whitson Peggy
National Aeronautics And Space Administration Johnson Space Center
-
Sams Clarence
National Aeronautics And Space Administration Johnson Space Center
-
HIRANO MASAHIKO
Toray Research Center Inc.
-
MUKAI Chiaki
National Space Development Agency of Japan
-
NAGAOKA Shunji
National Space Development Agency of Japan
-
Kumei Yasuhiro
Faculty Of Dentistry Tokyo Medical And Dental University
-
Shimokawa Hitoyata
Faculty Of Dentistry Tokyo Medical And Dental University
-
Mukai Chiaki
National Space Development Agency
-
Nagaoka Shunji
National Space Development Agency
-
KATANO Hisako
Faculty of Dentistry, Tokyo Medical and Dental University
-
AKIYAMA Hideo
Toray Research Center
-
Katano Hisako
Faculty Of Dentistry Tokyo Medical And Dental University
-
Hirano Masahiko
Toray Res. Center
-
Hirano Masahiko
Toray Research Center
関連論文
- Inhibition in a microgravity environment of the recovery of Escherichia coli cells damaged by heavy ion beams during the NASDA ISS Phase I Program of NASA Shuttle/Mir Mission No. 6
- Analysis of Mutations in the Human HPRT Gene Induced by Accelerated Heavy-Ion Irradiation
- Morphogenesis in cucumber seedlings is negatively controlled by gravity
- Inhibition of root elongation in microgravity by an applied electric field
- Morphagensis of Rice and Arabidopsis Seedlings in Space
- Growth and Development, and Auxin Polar Transport in Higher Plants under Microgravity Conditions in Space: BRIC-AUX on STS-95 Space Experiment
- Inhibition of root elongation in microgravity by an applied electric field
- Inhibition of Root Elongation in Microgravity an Applied Electric Field
- Growth and Development, and Auxin Polar Transport in Higher Plants under Microgravity Conditions in Space:BRIC-AUX on STS-95 Space Experiment
- Morphogenesis of Rice and Arabidopsis Seedlings in Space
- Mutation Induction in the rspL gene on an E. coli-B. subtilis shuttle vector by Space Flight on MIR
- Analysis of Mutations in the Human HPRT Gene induced by High LET Heavy-ion Irradiation
- Analysis of Mutations in the Human HPRT Gene Induced by Heavy-ion Irradiation II
- Targeted Heavy-Ion Microbeam Irradiation of the Embryo But Not Yolk in the Diapause-Terminated Egg of the Silkworm, Bombyx mori, Induces The Somatic Mutation
- Recovery of Deinococcus radiodurans from radiation damage was enhanced under microgravity
- Effect of Microgravity on the Cell Recovery of Escherichia coli Pre-Irradiated by Carbon Ion Beams
- Measurements of LET Distribution and Dose Equivalent onboard the Space Shuttle IML-2 (STS-65) and S/MM#4 (STS-79)
- Cell growth and morphology of Dictyostelium discoideum in space environment
- Radiation Dosimetry Measurements with Real Time Radiation Monitoring Device (RRMD)-II in Space Shuttle STS-79
- Measurements of LET Distribution and Dose Equivalent onboard the Space Shuttle IML-2(STS-65)and S/MM#4(STS-79)
- Cell growth and morphology of Dictyostelium discoideum in space environment
- Introduction to The Proposed Space Experiments Aboard The ISS Using The Silkworm, Bombyx mori
- A Spaceflight Experiment for the Study of Gravimorphogenesis and Hydrotroposm in Cucumber Seedlings
- The cellular content of p53 protein in rat skin after travelling to space
- Control of gravimorphogenesis by auxin: accumulation pattern of CS-IAA1 mRNA in cucumber seedlings grown in space and on the ground
- STRUCTURE OF PHYSIOLOGICALLY ACTIVE PEPTIDES BOUND TO PERDEUTERATED DODECYLPHOSPHOCHOLINE MICELLES AS STUDIED BY 2D-NMR
- THE GENE STRACTURE OF ANCHOR PROTEIN ANDTHE PHYCOBILISOME ORGANIZATION OF THE THERMOPHILIC SYNECHOCOCCUSELONGATUS
- Somatic Mutation in Larvae of the Silkworm, Bombyx mori, Induced by Heavy Ion Irradiation to Diapause Eggs
- Spaceflight modulates insulin-like growth factor binding proteins and glucocorticoid receptor in osteoblasts
- Measurement of Effect of Space Environment on Biological Samples at Space Shuttle Flight (STS-79)
- PreparatIon of BIological Samples Used In Realtime Radiation Monitoring Device at 2nd International Mlcrogravity Laboratory Mission (IML-2)
- Availability of Deinococcus radiodurans dry cells as the biological monitor of heavy ion particles during space experiment.
- RECONSTITUTION OF PROTEASE-TREATED 33kDa PROTEINS WITH CYANOBACTERIAL, RED ALGAL AND HIGHER PLANT PSII
- Recovery of Deinococcus radiodurans from radiation damage was enhanced under microgravity
- Effects of Heavy Ion to the rimary Culture of Mouse Brain Cells
- Effects of Low Dose Particle Radiation to Mouse Neonatal Neurons in Culture
- Detection of DNA Damage Induced by Space Radiation in Mir and Space Shuttle
- Mutation frequency of Dictyostelium discoideum sporcs exposed to the spase environment
- Enhanced Repair of Radiation-Induced DNA Damages under Microgravity
- Purification and Characterization of Lipid Bioflocculant Produced by Rhodococcus erythropolis
- CHEMICAL MODIFICATION OF LYSINE AND ARGININE ON THE Mn-STABILIZING PROTEIN
- The Current Status of Japan's Human Research in Space
- Chemical Structure of Lipid Bioflocculant Produced by Rhodococcus erythropolis
- Production of a Bioflocculant by Rhodococcus erythropolis S-1 Grown on Alcohols