保健衛生学部 リハビリテーション学科

窪田 悠力

クボタ ヒサヨシ  (Hisayoshi Kubota)

基本情報

所属
藤田医科大学 精神・神経病態解明センター 神経行動薬理学研究部門 助教
学位
修士(保健学)(藤田医科大学)
博士(医療科学)(藤田医科大学)

J-GLOBAL ID
202301015528900092
researchmap会員ID
R000051067

外部リンク

論文

 19
  • Xinzhu Zhou, Xinjian Zhang, Yasuhiro Funahashi, Daisuke Tsuboi, Tetsuya Takano, Hisayoshi Kubota, Charles T. Yokoyama, Toshitaka Nabeshima, Kiyofumi Yamada, Kozo Kaibuchi, Taku Nagai
    2026年6月16日  
    Drug-seeking behavior during withdrawal represents a critical obstacle to addiction treatment. In the nucleus accumbens, hyperactive dopamine D1 receptor-expressing medium spiny neurons (D1R-MSNs) promote cocaine-seeking through aberrant synaptic remodeling, including synapse formation and calcium-permeable AMPA receptor (CP-AMPAR) insertion. However, the intermediate molecular control mechanism remains unclear. We identified KCNQ2/3 potassium channels as key regulators of synaptic pathology during withdrawal. Cocaine-conditioned mice showed increased spine density, enhanced surface CP-AMPAR, and elevated neuronal activity 14 days after withdrawal. These phenotypes were reversed by repeated administration of KCNQ2/3 openers or D1R-MSN-specific expression of constitutively active KCNQ2. Functional restoration of KCNQ2/3 suppressed cocaine-seeking behavior and normalized D1R-MSN excitability. These findings suggest that sustained KCNQ2/3 deactivation drives synaptic remodeling during withdrawal, while channel activation offers a potential therapeutic strategy. Furthermore, the results position KCNQ2/3 as a master regulator of drug-seeking behavior and channel activation in D1R-MSNs as a logical target for relapse prevention in addiction.
  • Hisayoshi Kubota, Kazuo Kunisawa, Masaya Hasegawa, Hitomi Kurahashi, Kazuhiro Kagotani, Kazuki Nakajima, Yuki Fujimoto, Akihito Hayashi, Ryoji Sono, Takehiko Tsuji, Kuniaki Saito, Toshitaka Nabeshima, Akihiro Mouri
    Neurochemistry International 106184-106184 2026年5月  査読有り筆頭著者
  • Rinako Tanaka, Jingzhu Liao, Yue Liu, Wenjun Zhu, Kisa Fukuzawa, Masamichi Kondo, Masahito Sawahata, Daisuke Mori, Akihiro Mouri, Hisayoshi Kubota, Daiki Tachibana, Yohei Kobayashi, Tetsuo Matsuzaki, Taku Nagai, Toshitaka Nabeshima, Kozo Kaibuchi, Norio Ozaki, Hiroyuki Mizoguchi, Kiyofumi Yamada
    Molecular Psychiatry 2026年4月1日  査読有り
    1Abstract Copy number variations in theARHGAP10gene encoding Rho GTPase–activating protein 10 are significantly associated with schizophrenia. ARHGAP10 negatively regulates RhoA/Rho-kinase (ROCK) signaling. We previously demonstrated that fasudil, a non-selective ROCK inhibitor, exhibited antipsychotic-like effects in several mouse models of schizophrenia. ROCK has two subtypes, ROCK1 and ROCK2. ROCK1 is mainly expressed in the thymus and blood, while ROCK2 is predominantly expressed in the brain. Therefore, it is expected that like fasudil, selective ROCK2 inhibitors will exhibit antipsychotic-like effects, accompanied by a lower incidence of adverse effects due to ROCK1 inhibition. Here, we used genetic and pharmacological models of schizophrenia to investigate whether the selective ROCK2 inhibitor KD025 would show antipsychotic-like effects with a favorable adverse effect profile. Oral administration of KD025 suppressed the abnormal increase in the phosphorylation level of myosin phosphatase–targeting subunit 1, a substrate of ROCK, and ameliorated the decreased spine density of layer 2/3 pyramidal neurons in the medial prefrontal cortex ofArhgap10S490P/NHEJ mice. Furthermore, KD025 mitigated the methamphetamine-induced impairment of visual discrimination (VD) inArhgap10S490P/NHEJ and wild-type mice. KD025 also reduced MK-801–induced impairments of VD, novel object recognition, and hyperlocomotion. Regarding side effects that are commonly seen with typical antipsychotics, KD025 did not affect systolic blood pressure and did not induce extrapyramidal symptoms, hyperprolactinemia, or hyperglycemia at the effective dosage in naïve wild-type mice. Taken together, KD025 shows antipsychotic-like effects with a favorable adverse effect profile in genetic and pharmacological mouse models of schizophrenia.
  • Hisayoshi Kubota, Xinjian Zhang, Masoumeh Khalili, Xinzhu Zhou, Yu Wen, Taku Nagai
    International Journal of Molecular Sciences 26(11) 5184-5184 2025年5月28日  査読有り筆頭著者
    Schizophrenia is a psychiatric disorder characterized by positive, negative, and cognitive symptoms. MK-801, an N-methyl-D-aspartate receptor antagonist, has been used to induce schizophrenia-like behaviors in animal models. Here, we employed IntelliCage, an automated system used for tracking behavior, to assess schizophrenia-like behaviors in MK-801-treated mice under semi-naturalistic conditions. Mice that had been treated with MK-801 for 2 weeks were analyzed for locomotion, emotional, and cognitive functions. Repeated MK-801-treated mice exhibited transient hyperactivity in a novel environment, without significant changes in overall circadian activity. Sucrose preference remained intact, suggesting preserved reward sensitivity. However, less time spent in the corner during the early phase of the competition test indicated reduced competitive behavior for limited water rewards. In the behavioral flexibility test, repeated MK-801-treated mice showed impaired reversal learning, suggesting reduced cognitive flexibility, although the acquisition of initial place discrimination was comparable to that observed in control mice. These behavioral impairments parallel core symptoms of schizophrenia, particularly in the social and cognitive domains. Our findings demonstrate the utility of IntelliCage in detecting behavioral phenotypes over prolonged periods in group-housed settings. This study provides an ecologically valid platform for assessing schizophrenia-like behaviors and may facilitate the development of translationally relevant therapeutic interventions.
  • Haruki Fujisawa, Nobuhiko Magara, Shogo Nakayama, Sachiho Fuse, Naoko Iwata, Masaya Hasegawa, Hisayoshi Kubota, Hirotaka Shoji, Satoko Hattori, Hideo Hagihara, Hidetsugu Fujigaki, Yusuke Seino, Akihiro Mouri, Tsuyoshi Miyakawa, Toshitaka Nabeshima, Atsushi Suzuki, Yoshihisa Sugimura
    Molecular Neurobiology 2025年5月14日  査読有り

MISC

 18

書籍等出版物

 1

担当経験のある科目(授業)

 2

共同研究・競争的資金等の研究課題

 5

産業財産権

 1

メディア報道

 4