基本情報
経歴
3-
2012年 - 現在
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2007年 - 2012年
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2005年 - 2007年
受賞
9-
2021年10月
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2019年7月
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2018年11月
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2014年11月
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2009年11月
論文
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Biological psychiatry 2024年9月27日BACKGROUND: The flexibility to adjust actions and attitudes in response to varying social situations is a fundamental aspect of adaptive social behavior. Adaptive social behaviors influence an individual's vulnerability to social stress. While oxytocin has been proposed to facilitate active coping behaviors during social stress, the exact mechanisms remain unknown. METHODS: By using a social defeat stress paradigm in male mice, we identified the distribution of oxytocin receptor (OXTR)-expressing neurons in the ventrolateral part of the ventromedial hypothalamus (vlVMH) that are activated during stress by detection of c-Fos protein expression. We then investigated the role of vlVMH OXTR-expressing neurons in social defeat stress responses by chemogenetic methods or deletion of local OXTRs. The social defeat posture was measured for quantification of adaptive social behavior during repeated social stress. RESULTS: Social defeat stress activated OXTR-expressing neurons rather than estrogen type 1-expressing neurons in the rostral vlVMH. OXTR-expressing neurons in the vlVMH were glutamatergic. Chemogenetic activation of vlVMH OXTR-expressing neurons facilitated exhibition of the social defeat posture during exposure to social stress, while local OXTR deletion suppressed it. In contrast, over-activation of vlVMH-OXTR neurons induced generalized social avoidance after exposure to chronic social defeat stress. Neural circuits for the social defeat posture centered on OXTR-expressing neurons were identified by viral tracers and c-Fos mapping. CONCLUSIONS: VlVMH OXTR-expressing neurons are a functionally unique population of neurons that promote an active coping behavior during social stress, but their excessive and repetitive activation under chronic social stress impairs subsequent social behavior.
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Behavioural processes 105111-105111 2024年9月24日Rodent ultrasonic vocalisations can be used to assess social behaviour and have attracted increasing attention. Rats emit 50-kHz and 22-kHz calls during appetitive and aversive states, respectively. These calls induce behavioural and neural responses in the receiver by transmitting the internal states of the rats, thus serving communicative functions. Recently, we discovered that female Lewis rats emit 31-kHz calls under social isolation and inequality conditions; however, the biological significance of 31-kHz calls remains unknown. In the present study, we conducted three playback experiments to examine the behavioural effects of 31-kHz calls. In the first experiment, Lewis female rats were exposed to four types of sound: 22-kHz, 50-kHz, 31-kHz calls, and environmental noise. As a result, rats stayed significantly longer in the area with a sound-producing speaker, regardless of the sound type, than in the silent speaker area. The duration spent around the sound-producing speaker was particularly extended during the 50-kHz or 31-kHz call playback, compared to the environmental noise or 22-kHz call playback. In the second experiment, rats were exposed to refined versions of sound stimuli that were synthesised to preserve prominent frequency components while removing background noise from original calls. Rats significantly preferred to stay around the speaker for the synthesised 50-kHz and 31-kHz sounds, but not for the synthesised 22-kHz sound. However, in the third experiment, additional 31-kHz sound synthesised from calls emitted by a different rat did not elicit a significant preference for the source side. These results suggest that the rats paid attention to the 31-kHz call, although it is plausible that acoustic variability in the 31-kHz USV may affect their approach behaviour.
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Molecular brain 17(1) 41-41 2024年6月28日The cerebellum plays an important role in cognitive and social functioning. Childhood damage in the cerebellum increases the risk of autism spectrum disorder. Cerebellar inflammation induces social avoidance in mice. Oxytocin regulates social relationship and expression pattern of the oxytocin receptor in the brain is related to social behaviors. However, the expression patterns of the oxytocin receptor in the cerebellum remain controversial. Here, we report that the expression patterns of the oxytocin receptor in the cerebellum are highly variable among knock-in transgenic lines. We used Oxtr-Cre knock-in mice combined with a fluorescent reporter line and found that oxytocin receptor expression in Bergmann glia was more variable than that in Purkinje cells. We found that physical damage with inflammation induced the selective upregulation of the oxytocin receptor in Bergmann glia. Our findings indicate high variability in oxytocin receptor expression in the cerebellum and suggest that the oxytocin receptor can affect neural processing in pathological conditions, such as inflammation.
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The journal of gene medicine e3560 2023年6月30日BACKGROUND: Fabry disease (FD) is an inherited lysosomal storage disease caused by deficiency of α-galactosidase A (α-Gal A) encoded by the GLA gene. The symptoms of FD occur as a result of the accumulation of globotriaosylceramide (Gb3), comprising a substrate of α-Gal A, in the organs. Adeno-associated virus (AAV)-mediated gene therapy is a promising treatment for FD. METHODS: α-Gal A knockout (GLAko) mice were injected intravenously with AAV2 (1 × 1011 viral genomes [vg]) or AAV9 (1 × 1011 or 2 × 1012 vg) vectors carrying human GLA (AAV-hGLA), and plasma, brain, heart, liver and kidney were tested for α-Gal A activity. The vector genome copy numbers (VGCNs) and Gb3 content in each organ were also examined. RESULTS: The plasma α-Gal A enzymatic activity was three-fold higher in the AAV9 2 × 1012 vg group than wild-type (WT) controls, which was maintained for up to 8 weeks after injection. In the AAV9 2 × 1012 vg group, the level of α-Gal A expression was high in the heart and liver, intermediate in the kidney, and low in the brain. VGCNs in the all organs of the AAV9 2 × 1012 vg group significantly increased compared to the phosphate-buffered-saline (PBS) group. Although Gb3 in the heart, liver and kidney of the AAV9 2 × 1012 vg was reduced compared to PBS group and AAV2 group, and the amount of Gb3 in the brain was not reduced. CONCLUSIONS: Systemic injection of AAV9-hGLA resulted in α-Gal A expression and Gb3 reduction in the organs of GLAko mice. To expect a higher expression of α-Gal A in the brain, the injection dosage, administration route and the timing of injection should be reconsidered.
MISC
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Brain and nerve = Shinkei kenkyu no shinpo 75(11) 1205-1209 2023年11月Resilience is a term that describes the capacity of coping with and recovering from stress and adversity. In terms of the concept of allostasis, resilience is the ability to appropriately regulate allostasis, efficiently terminate the allostatic response, prevent the occurrence of allostatic load/overload or restore homeostasis. Recently, it has been shown that oxytocin may be involved in this series of stress adaptation systems. We aim to discuss the changes in oxytocin neuron activation, oxytocin release and its actions of stress adaptation in response to internal and external environmental changes, and the regulation of resilience by oxytocin.
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国際医療福祉大学学会誌 24(抄録号) 148-148 2019年9月
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日本臨床 72(増刊4 最新肥満症学) 224-230 2014年5月
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精神科治療学 28(6) 777-784 2013年6月多くの動物種において親が仔を育てるという母性行動が観察される。主に齧歯動物を用いた研究により、母性行動の中枢として内側視索前野が考えられている。さらに、母性行動には報酬性が伴っており、母性行動に伴い腹側被蓋野から側坐核へ投射するドーパミン作動性ニューロンが活性化することが示唆されている。仔を育てるという経験は、親の脳に大きな変化をもたらす。仔にも可塑的な変化をもたらし、次世代の子育てにも影響を及ぼす。この母性行動の制御に、エストロゲン、プロラクチン、オキシトシンが促進的に関与することが明らかにされている。(著者抄録)
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NEUROSCIENCE RESEARCH 71 E265-E265 2011年
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神経化学 49(2-3) 747-747 2010年8月
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ENDOCRINE JOURNAL 57 S539-S539 2010年3月
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ENDOCRINE JOURNAL 57 S436-S436 2010年3月
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NEUROSCIENCE RESEARCH 68 E412-E412 2010年
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JOURNAL OF PHYSIOLOGICAL SCIENCES 60 S176-S176 2010年
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JOURNAL OF PHYSIOLOGICAL SCIENCES 60 S38-S38 2010年
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NEUROSCIENCE RESEARCH 65 S241-S241 2009年
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JOURNAL OF PHYSIOLOGICAL SCIENCES 59 271-271 2009年
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JOURNAL OF PHYSIOLOGICAL SCIENCES 59 461-461 2009年
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NEUROSCIENCE RESEARCH 65 S220-S220 2009年
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NEUROSCIENCE RESEARCH 61 S187-S187 2008年
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NEUROSCIENCE RESEARCH 58 S222-S222 2007年
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NEUROSCIENCE RESEARCH 58 S220-S220 2007年
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NEUROSCIENCE RESEARCH 55 S28-S28 2006年
講演・口頭発表等
15共同研究・競争的資金等の研究課題
25-
JST 創発的研究支援事業 2021年4月 - 2028年3月
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日本学術振興会 科学研究費助成事業 2024年4月 - 2027年3月
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日本学術振興会 科学研究費助成事業 基盤研究(C) 2020年4月 - 2023年3月
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第21回花王健康科学研究会助成金 2023年
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武田科学振興財団 2023年度武田科学振興財団医学系研究継続助成 2023年