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Featured researches published by Takashi Kubota.


Neuroscience Letters | 2016

Traumatic brain injury accelerates amyloid-β deposition and impairs spatial learning in the triple-transgenic mouse model of Alzheimer's disease.

Hajime Shishido; Yasushi Kishimoto; Nobuyuki Kawai; Yasunori Toyota; Masaki Ueno; Takashi Kubota; Yutaka Kirino; Takashi Tamiya

Several pathological and epidemiological studies have demonstrated a possible relationship between traumatic brain injury (TBI) and Alzheimers disease (AD). However, the exact contribution of TBI to AD onset and progression is unclear. Hence, we examined AD-related histopathological changes and cognitive impairment after TBI in triple transgenic (3×Tg)-AD model mice. Five- to seven-month-old 3×Tg-AD model mice were subjected to either TBI by the weight-drop method or a sham treatment. In the 3×Tg-AD mice subjected to TBI, the spatial learning was not significantly different 7 days after TBI compared to that of the sham-treated 3×Tg-AD mice. However, 28 days after TBI, the 3×Tg-AD mice exhibited significantly lower spatial learning than the sham-treated 3×Tg-AD mice. Correspondingly, while a few amyloid-β (Aβ) plaques were observed in both sham-treated and TBI-treated 3×Tg-AD mouse hippocampus 7 days after TBI, the Aβ deposition was significantly greater in 3×Tg-AD mice 28 days after TBI. Thus, we demonstrated that TBI induced a significant increase in hippocampal Aβ deposition 28 days after TBI compared to that of the control animals, which was associated with worse spatial learning ability in 3×Tg-AD mice. The present study suggests that TBI could be a risk factor for accelerated AD progression, particularly when genetic and hereditary predispositions are involved.


Data in Brief | 2016

Data on amyloid precursor protein accumulation, spontaneous physical activity, and motor learning after traumatic brain injury in the triple-transgenic mouse model of Alzheimer׳s disease

Yasushi Kishimoto; Hajime Shishido; Mayumi Sawanishi; Yasunori Toyota; Masaki Ueno; Takashi Kubota; Yutaka Kirino; Takashi Tamiya; Nobuyuki Kawai

This data article contains supporting information regarding the research article entitled “Traumatic brain injury accelerates amyloid-β deposition and impairs spatial learning in the triple-transgenic mouse model of Alzheimer׳s disease” (H. Shishido, Y. Kishimoto, N. Kawai, Y. Toyota, M. Ueno, T. Kubota, Y. Kirino, T. Tamiya, 2016) [1]. Triple-transgenic (3×Tg)-Alzheimer׳s disease (AD) model mice exhibited significantly poorer spatial learning than sham-treated 3×Tg-AD mice 28 days after traumatic brain injury (TBI). Correspondingly, amyloid-β (Aβ) deposition within the hippocampus was significantly greater in 3×Tg-AD mice 28 days after TBI. However, data regarding the short-term and long-term influences of TBI on amyloid precursor protein (APP) accumulation in AD model mice remain limited. Furthermore, there is little data showing whether physical activity and motor learning are affected by TBI in AD model mice. Here, we provide immunocytochemistry data confirming that TBI induces significant increases in APP accumulation in 3×Tg-AD mice at both 7 days and 28 days after TBI. Furthermore, 3×Tg-AD model mice exhibit a reduced ability to acquire conditioned responses (CRs) during delay eyeblink conditioning compared to sham-treated 3×Tg-AD model mice 28 days after TBI. However, physical activity and motor performance are not significantly changed in TBI-treated 3×Tg-AD model mice.


Journal of Pharmacological Sciences | 2016

Ameliorative effect of membrane-associated estrogen receptor G protein coupled receptor 30 activation on object recognition memory in mouse models of Alzheimer's disease.

Takashi Kubota; Hiroshi Matsumoto; Yutaka Kirino


Archive | 2010

Anode structure to be used in organic el element, manufacturing method thereof, and organic el element

Yoshinori Matsuura; Nobuyuki Kawai; Takashi Kubota


Archive | 2010

Element structure of display device and its production method

Yoshinori Matsuura; Hironari Urabe; Takashi Kubota


Archive | 2010

ANODE STRUCTURE FOR USE IN ORGANIC EL DEVICE, PRODUCTION METHOD THEREOF AND ORGANIC EL DEVICE

Yoshinori Matsuura; Nobuyuki Kawai; Takashi Kubota


生物物理 | 2010

2P265 アルツハイマー病モデルマウスの瞬目反射条件付け学習におけるニコチン性アセチルコリン受容体の関与(行動,第48回日本生物物理学会年会)

Takashi Kubota; Yutaka Kirino


Seibutsu Butsuri | 2010

2P265 Contribution of α7 nicotin acetylcholine receptor to the classical eyeblink conditioning in Alzheimer's disease model mice(The 48th Annual Meeting of the Biophysical Society of Japan)

Takashi Kubota; Yutaka Kirino


生物物理 | 2009

3P-204 老化マウスの瞬目反射条件付け学習におけるニコチン性アセチルコリン受容体の関与(行動,第47回日本生物物理学会年会)

Takashi Kubota; Yutaka Kirino


Seibutsu Butsuri | 2009

3P-204 Contribution of nicotinic acetylcholine receptor to the classical eyeblink conditioning in aged mice(Behavior,The 47th Annual Meeting of the Biophysical Society of Japan)

Takashi Kubota; Yutaka Kirino

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Yutaka Kirino

Tokushima Bunri University

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Yasushi Kishimoto

Tokushima Bunri University

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Hiroshi Matsumoto

Tokushima Bunri University

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Mayumi Sawanishi

Tokushima Bunri University

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