Mitsuharu Hattori

Nagoya City University, Nagoya-shi, Aichi-ken, Japan 
"Mitsuharu Hattori"
Mean distance: 16.87 (cluster 6)
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Kohno T, Hattori M. (2016) [Functions of Reelin in cortical neuron migration]. Seikagaku. the Journal of Japanese Biochemical Society. 88: 105-13
Wang W, Li B, Chen YP, et al. (2016) Optimized LC-ESI-ion trap MS to determine simultaneously isocorynoxeine and its phase i and II metabolites in rats with application to pharmacokinetics and mass balance investigation Journal of Liquid Chromatography and Related Technologies. 39: 77-86
Kohno T, Honda T, Kubo K, et al. (2015) Importance of Reelin C-terminal region in the development and maintenance of the postnatal cerebral cortex and its regulation by specific proteolysis. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 35: 4776-87
Chen YP, Lu MN, Hao JC, et al. (2015) Metabolites of isocorynoxeine in rats after its oral administration. Journal of Asian Natural Products Research. 17: 384-90
Onoue A, Takeuchi M, Kohno T, et al. (2014) Aberrant fragment of Dab1 protein is present in yotari mouse. Neuroscience Research. 88: 23-7
El-Halawany AM, El Dine RS, El Sayed NS, et al. (2014) Protective effect of Aframomum melegueta phenolics against CCl₄-induced rat hepatocytes damage; role of apoptosis and pro-inflammatory cytokines inhibition. Scientific Reports. 4: 5880
Koie M, Okumura K, Hisanaga A, et al. (2014) Cleavage within Reelin repeat 3 regulates the duration and range of the signaling activity of Reelin protein. The Journal of Biological Chemistry. 289: 12922-30
Wang W, Li X, Chen Y, et al. (2014) Structural elucidation of rat biliary metabolites of corynoxeine and their quantification using LC-MS(n). Biomedical Chromatography : Bmc. 28: 1219-28
Wang Z, Wang S, Sun Y, et al. (2014) New analytical method for the study of the metabolism of gentiopicroside in rats after oral administration by LC-TOF-MS following picolinoyl derivatization. Journal of Separation Science. 37: 237-43
Britto JM, Tait KJ, Lee EP, et al. (2014) Exogenous Reelin modifies the migratory behavior of neurons depending on cortical location. Cerebral Cortex (New York, N.Y. : 1991). 24: 2835-47
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