Kenji Hanamura, Ph.D.

Neuroscience Thomas Jefferson University, Philadelphia, PA, United States 
synapse formation and function
"Kenji Hanamura"
Mean distance: 14.33 (cluster 6)
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Yamamura M, Hanamura K, Koganezawa N, et al. (2023) Impacts of methotrexate on survival, dendrite development, and synapse formation of cortical neurons. Genes to Cells : Devoted to Molecular & Cellular Mechanisms
Xie MJ, Yagi H, Iguchi T, et al. (2022) Phldb2 is essential for regulating hippocampal dendritic spine morphology through drebrin in an adult-type isoform-specific manner. Neuroscience Research
Hanamura K, Washburn HR, Sheffler-Collins SI, et al. (2021) Correction: Extracellular phosphorylation of a receptor tyrosine kinase controls synaptic localization of NMDA receptors and regulates pathological pain. Plos Biology. 19: e3001452
Ariyani W, Miyazaki W, Amano I, et al. (2020) Soy Isoflavones Accelerate Glial Cell Migration GPER-Mediated Signal Transduction Pathway. Frontiers in Endocrinology. 11: 554941
Yasuda H, Yamamoto H, Hanamura K, et al. (2020) PKN1 promotes synapse maturation by inhibiting mGluR-dependent silencing through neuronal glutamate transporter activation. Communications Biology. 3: 710
Dombroski TCD, Peixoto-Santos JE, Maciel K, et al. (2020) Drebrin expression patterns in patients with refractory temporal lobe epilepsy and hippocampal sclerosis. Epilepsia
Hanamura K, Koganezawa N, Kamiyama K, et al. (2019) High-content imaging analysis for detecting the loss of drebrin clusters along dendrites in cultured hippocampal neurons. Journal of Pharmacological and Toxicological Methods. 106607
Mitsuoka T, Hanamura K, Koganezawa N, et al. (2019) Assessment of NMDA receptor inhibition of phencyclidine analogues using a high-throughput drebrin immunocytochemical assay. Journal of Pharmacological and Toxicological Methods. 106583
Yasuda H, Kojima N, Hanamura K, et al. (2018) Drebrin Isoforms Critically Regulate NMDAR- and mGluR-Dependent LTD Induction. Frontiers in Cellular Neuroscience. 12: 330
Mao YT, Zhu JX, Hanamura K, et al. (2018) Filopodia Conduct Target Selection in Cortical Neurons Using Differences in Signal Kinetics of a Single Kinase. Neuron
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