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Biochemical and Biophysical Research Communications|December 9, 2022
Opioid modulation of T-type Ca2+ channel-dependent neuritogenesis/neurite outgrowth through the prostaglandin E2/EP4 receptor/protein kinase A pathway in mouse dorsal root ganglion neuronsTakashi Maeda, Fumiko Sekiguchi, Kenji Mitani, et al.Journal of Pharmacological Sciences|October 29, 2013
Contribution of TRPA1 as a downstream signal of proteinase-activated receptor-2 to pancreatic painYuka Terada, Mayuko Fujimura, Sachiyo Nishimura, et al.Toxicology|November 14, 2017
Zinc deficiency promotes cystitis-related bladder pain by enhancing function and expression of Cav3.2 in miceTomoka Ozaki, Junki Matsuoka, Maho Tsubota, et al.Journal of Pharmacological Sciences|June 26, 2019
NNC 55-0396, a T-type calcium channel blocker, protects against the brain injury induced by middle cerebral artery occlusion and reperfusion in miceSachi Matsuda, Hiroyuki Nishikawa, Anna Fukatsu, et al.Journal of Pharmacological Sciences|January 1, 2018
Prostanoid-dependent bladder pain caused by proteinase-activated receptor-2 activation in mice: Involvement of TRPV1 and T-type Ca2+ channelsMaho Tsubota, Tomoka Ozaki, Yuko Hayashi, et al.Pharmacology|March 3, 2017
Repeated Cold Stress Reduces Cyclophosphamide-Induced Cystitis/Bladder Pain and Macrophage Activity in MiceMaho Tsubota, Tomoyoshi Miyamoto, Saki Hiruma, et al.Neuropharmacology|February 7, 2018
Involvement of the cystathionine-γ-lyase/Cav3.2 pathway in substance P-induced bladder pain in the mouse, a model for nonulcerative bladder pain syndromeMaho Tsubota, Yasumasa Okawa, Yuhei Irie, et al.European Journal of Pharmacology|September 24, 2020
Cav3.2 overexpression in L4 dorsal root ganglion neurons after L5 spinal nerve cutting involves Egr-1, USP5 and HMGB1 in rats: An emerging signaling pathway for neuropathic painShiori Tomita, Fumiko Sekiguchi, Yoshihito Kasanami, et al.Journal of Pharmacological Sciences|May 11, 2023
Cav3.2-dependent hyperalgesia/allodynia following intrathecal and intraplantar zinc chelator administration in rodentsShiori Tomita, Fumiko Sekiguchi, Katsuki Naoe, et al.Journal of Pharmacological Sciences|April 23, 2013
Antihyperalgesic effect of buprenorphine involves nociceptin/orphanin FQ peptide-receptor activation in rats with spinal nerve injury-induced neuropathyTomoko Takahashi, Kazumasa Okubo, Shota Kojima, et al.Pageof 7