Takashi Tominaga

Has grant

Professor

University Name
Country flag
Japan

Research Interests

Explore related searches

Contact this professor

LinkedIn
ORCID
Google Scholar

Recent Grants

Grant: Open

興奮/抑制バランスの波から探る「意識」のスイッチ

Open Date: 2023-03-01

Close Date: 2027-04-01

Grant: Close

拍動循環と脳機能・脳疾患の関連性:全脳摘出標本によるアプローチ

Open Date: 2019-06-28

Close Date: 2022-03-31

Grant: Close

Study for the early prediction system for the neurobehavioral toxicity induced by chemical exposure during development

Open Date: 2019-04-01

Close Date: 2023-03-31

Grant: Close

経験依存的な聴覚嗜好性行動を司る神経回路の同定と動態解析

Open Date: 2019-04-01

Close Date: 2023-03-31

Grant: Close

「個性」創発脳システムの統合的理解を拓く国際的データシェアプラットフォームの構築

Open Date: 2016-06-30

Close Date: 2021-03-31

Articles (16)

Decreases in the number of microglia and neural circuit dysfunction elicited by developmental exposure to neonicotinoid pesticides in mice

Neonicotinoids are insecticides widely used in the world. Although neonicotinoids are believed to be toxic only to insects, their developmental neurotoxicity in mammals is a concern. Therefore, we examined the effects of developmental exposure to neonicotinoids on immune system in the brain and post‐developmental behaviors in this study. Imidacloprid or clothianidin was orally administered to dams at a dosage of 0.1 mg/kg/day from embryonic day 11 to postnatal day 21. Imidacloprid decreased sociability, and both imidacloprid and clothianidin decreased locomotor activity and induced anxiety, depression and abnormal repetitive behaviors after the developmental period. There was no change in the number of neurons in the hippocampus of mice exposed to imidacloprid. However, the number and activity of microglia during development were significantly decreased by imidacloprid exposure. Imidacloprid also induced neural circuit dysfunction in the CA1 and CA3 regions of the hippocampus during the early postnatal period. Exposure to imidacloprid suppressed the expression of csf1r during development. Collectively, these results suggest that developmental exposure to imidacloprid decreases the number and activity of microglia, which can cause neural circuit dysfunction and abnormal behaviors after the developmental period. Care must be taken to avoid exposure to neonicotinoids, especially during development.

Year:

2024

Collaborators (4)

Tohru Yamamoto

Kagawa University

JAPAN

Jahidul Islam

Tohoku University

JAPAN

Yasushi Kishimoto

Professor

Teikyo University

JAPAN

Yasuhiro Ishihara

-

JAPAN
Social connections

How do I reach out?

Sign in for free to see their profile details and contact information.

Meet Kite AI