嗅覚受容体細胞の嗅覚受容体による嗅覚反応の抑制
T Kurahashi1, G Lowe, G H Gold
1Monell Chemical Senses Center, Philadelphia, PA 19104.
まとめ
臭味剤は,嗅覚受容体細胞の電流を抑制することができ,長時間の応答遅延と"オフ応答"を説明します. この抑制メカニズムは,匂いの特異性を鋭くし,マスクレスポンスを引き起こす可能性があります.
科学分野:
- 神経科学は神経科学である.
- 嗅覚受容体細胞生理学 嗅覚受容体細胞生理学
背景:
- 脊椎動物の嗅覚受容体細胞は,匂いを発する物質が活性化すると,内向きの電流を生成します.
- 現存するモデルでは,嗅覚伝導の遅延やオフレスポンスを完全に説明できない.
研究 の 目的:
- 新鮮なオドラント誘発の電流抑制メカニズムを新鮮なオドラント誘発のオルファクトリー受容体細胞で調査する.
- この抑制が特定の嗅覚応答現象を説明するかどうかを判断する.
主な方法:
- 新鳥の嗅覚受容体細胞からの電気生理学的記録.
- 各種のオドラントによる刺激により,現在の変化を観察する.
主要な成果:
- 匂い剤は,抑制と適応から独立して,内向きの電流を抑制することが判明しました.
- この抑制メカニズムは,長い嗅覚伝達遅延の統一された説明を提供します.
- 抑制は,長時間におい刺激を受けた後に観察された"オフ応答"を説明する.
結論:
- 嗅覚受容体細胞には,匂い誘発による明確な電流抑制メカニズムが存在する.
- 抑制は嗅覚伝導のタイミングと反応のダイナミクスを影響する.
- このメカニズムは,細胞の反応をマスクし,鋭くすることで,匂いの知覚を精製する可能性があります.
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