新発見の脳細胞が記憶に関与 (Meet the newly discovered brain cell that allows you to remember objects)

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2025-02-12 カナダ・ブリティッシュコロンビア大学 (UBC)

ブリティッシュコロンビア大学(UBC)の医学部の研究者たちは、物体の記憶と認識に中心的な役割を果たす新しいタイプの脳細胞「卵形細胞(ovoid cells)」を発見しました。 これらの高度に専門化されたニューロンは、新しい物体に出会うたびに活性化し、その物体を記憶に保存するプロセスを引き起こし、数ヶ月、場合によっては数年後でもそれらを認識できるようにします。この発見は、アルツハイマー病やてんかんなどの治療法開発に新たな道を開く可能性があります。

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非定型海馬興奮性ニューロンは物体記憶を発現し支配する Atypical hippocampal excitatory neurons express and govern object memory

Adrienne I. Kinman,Derek N. Merryweather,Sarah R. Erwin,Regan E. Campbell,Kaitlin E. Sullivan,Larissa Kraus,Margarita Kapustina,Brianna N. Bristow,Mingjia Y. Zhang,Madeline W. Elder,Sydney C. Wood,Ali Tarik,Esther Kim,Joshua Tindall,William Daniels,Mehwish Anwer,Caiying Guo & Mark S. Cembrowski
Nature Communications  Published:12 February 2025
DOI:https://doi.org/10.1038/s41467-025-56260-8

新発見の脳細胞が記憶に関与 (Meet the newly discovered brain cell that allows you to remember objects)

Abstract

Classically, pyramidal cells of the hippocampus are viewed as flexibly representing spatial and non-spatial information. Recent work has illustrated distinct types of hippocampal excitatory neurons, suggesting that hippocampal representations and functions may be constrained and interpreted by these underlying cell-type identities. In mice, here we reveal a non-pyramidal excitatory neuron type — the “ovoid” neuron — that is spatially adjacent to subiculum pyramidal cells but differs in gene expression, electrophysiology, morphology, and connectivity. Functionally, novel object encounters drive sustained ovoid neuron activity, whereas familiar objects fail to drive activity even months after single-trial learning. Silencing ovoid neurons prevents non-spatial object learning but leaves spatial learning intact, and activating ovoid neurons toggles novel-object seeking to familiar-object seeking. Such function is doubly dissociable from pyramidal neurons, wherein manipulation of pyramidal cells affects spatial assays but not non-spatial learning. Ovoid neurons of the subiculum thus illustrate selective cell-type-specific control of non-spatial memory and behavioral preference.

医療・健康
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