1985 - 1985 急速溶液交換法による筋小胞体からの Ca 遊離機構の研究とそれに対する薬物の影響
1984 - 1984 細胞内Ca2+濃度を固定した時の骨格筋興奮収縮連関とそれに対する薬物の影響
1983 - 1983 細胞内灌流した単一骨格筋線維標本による興奮収縮連関の薬理学的研究
Kinetics of Ca2+ release from inositol 1,4,5-trisphosphate seusitive Ca2+ stores
Regulation of central nervous system functions by Ca2+ signaling mechanism.
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論文 (173件):
Mai Takenaka, Masami Kodama, Takashi Murayama, Mari Ishigami-Yuasa, Shuichi Mori, Ryosuke Ishida, Junji Suzuki, Kazunori Kanemaru, Masami Sugihara, Masamitsu Iino, et al. Screening for Novel Type 2 Ryanodine Receptor Inhibitors by Endoplasmic Reticulum Ca2+Monitoring. Molecular Pharmacology. 2023. 104. 6. 275-286
Enrico Zampese, David L Wokosin, Patricia Gonzalez-Rodriguez, Jaime N Guzman, Tatiana Tkatch, Jyothisri Kondapalli, William C Surmeier, Karis B D'Alessandro, Diego De Stefani, Rosario Rizzuto, et al. Ca2+ channels couple spiking to mitochondrial metabolism in substantia nigra dopaminergic neurons. Science advances. 2022. 8. 39. eabp8701
Nagomi Kurebayashi, Takashi Murayama, Ryosaku Ota, Junji Suzuki, Kazunori Kanemaru, Takuya Kobayashi, Seiko Ohno, Minoru Horie, Masamitsu Iino, Fumiyoshi Yamashita, et al. Cytosolic Ca2+-dependent Ca2+ release activity primarily determines the ER Ca2+ level in cells expressing the CPVT-linked mutant RYR2. The Journal of general physiology. 2022. 154. 9
Nami Kitajima, Kenji Takikawa, Hiroshi Sekiya, Daisuke Asanuma, Hirokazu Sakamoto, Shigeyuki Namiki, Masamitsu Iino, Kenzo Hirose. In vivo Fluorescence Imaging of Extracellular ATP in the Mouse Cerebral Cortex with a Hybrid-type Optical Sensor. Bio-protocol. 2021. 11. 11. e4046
Carole Escartin, Elena Galea, András Lakatos, James P O'Callaghan, Gabor C Petzold, Alberto Serrano-Pozo, Christian Steinhäuser, Andrea Volterra, Giorgio Carmignoto, Amit Agarwal, et al. Reactive astrocyte nomenclature, definitions, and future directions. Nature neuroscience. 2021. 24. 3. 312-325
Functional properties of inositol 1,4,5-trisphosphate receptor and Ca<sup>2+</sup> signaling.
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Ca<sup>2+</sup> release mechanisms in smooth muscle.
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Ca<sup>2+</sup> release mechanisms in single smooth muscle cells.
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