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Characterization of patients with major psychiatric disorders with AMPA receptor positron emission tomography

  • Mai Hatano
  • , Waki Nakajima
  • , Hideaki Tani
  • , Hiroyuki Uchida
  • , Tomoyuki Miyazaki
  • , Tetsu Arisawa
  • , Yuuki Takada
  • , Sakiko Tsugawa
  • , Akane Sano
  • , Kotaro Nakano
  • , Tsuyoshi Eiro
  • , Hiroki Abe
  • , Akira Suda
  • , Takeshi Asami
  • , Akitoyo Hishimoto
  • , Nobuhiro Nagai
  • , Teruki Koizumi
  • , Shinichiro Nakajima
  • , Shunya Kurokawa
  • , Yohei Ohtani
  • Kie Takahashi, Yuhei Kikuchi, Taisuke Yatomi, Shiori Honda, Masahiro Jinzaki, Yoji Hirano, Ryo Mitoma, Shunsuke Tamura, Shingo Baba, Osamu Togao, Hirotaka Kosaka, Hidehiko Okazawa, Yuichi Kimura, Masaru Mimura, Takuya Takahashi

研究成果: Article査読

抄録

Synaptic phenotypes in living patients with psychiatric disorders are poorly characterized. Excitatory glutamate α-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid receptor (AMPAR) is a fundamental component for neurotransmission. We recently developed a positron emission tomography (PET) tracer for AMPAR, [11C]K-2, the first technology to visualize and quantify AMPARs density in living human brain. In this study, we characterized patients with major psychiatric disorders with [11C]K-2. One hundred forty-nine patients with psychiatric disorders (schizophrenia, n = 42; bipolar disorder, n = 37; depression, n = 35; and autism spectrum disorder, n = 35) and 70 healthy participants underwent a PET scan with [11C]K-2 for measurement of AMPAR density. We detected brain regions that showed correlation between AMPAR density and symptomatology scores in each of four disorders. We also found brain areas with significant differences in AMPAR density between patients with each psychiatric disorder and healthy participants. Some of these areas were observed across diseases, indicating that these are commonly affected areas throughout psychiatric disorders. Schizophrenia, bipolar disorder, depression, and autism spectrum disorder are uniquely characterized by AMPAR distribution patterns. Our approach to psychiatric disorders using [11C]K-2 can elucidate the biological mechanisms across diseases and pave the way to develop novel diagnostics and therapeutics based on the synapse physiology.

本文言語English
論文番号115
ページ(範囲)1780-1790
ページ数11
ジャーナルMolecular Psychiatry
30
5
DOI
出版ステータスPublished - 2025 5月

UN SDG

この成果は、次の持続可能な開発目標に貢献しています

  1. SDG 3 - すべての人に健康と福祉を
    SDG 3 すべての人に健康と福祉を

ASJC Scopus subject areas

  • 分子生物学
  • 精神医学および精神衛生
  • 細胞および分子神経科学

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