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兔嗅球中二尖瓣/簇状细胞对气味分子的编码。I. 脂肪族化合物。

Coding of odor molecules by mitral/tufted cells in rabbit olfactory bulb. I. Aliphatic compounds.

作者信息

Imamura K, Mataga N, Mori K

机构信息

Department of Neuroscience, Osaka Bioscience Institute, Japan.

出版信息

J Neurophysiol. 1992 Dec;68(6):1986-2002. doi: 10.1152/jn.1992.68.6.1986.

Abstract
  1. Recordings of extracellular spike responses were made from single mitral/tufted cells in the main olfactory bulb of urethan-anesthetized rabbits. Olfactory epithelium ipsilateral to the recorded olfactory bulb was stimulated with homologous series of aliphatic compounds using periodic artificial inhalations. 2. In the dorsomedial part of the main olfactory bulb, single mitral/tufted cells were activated by subsets of n-fatty acids with similar hydrocarbon chain lengths. Response selectivities of single mitral/tufted cells were examined in detail using a series of n-fatty acids at five different concentrations. The results indicate that although the range of effective fatty acids is broader at the higher concentrations, the best response at higher concentrations was similar to that determined at lower concentrations. 3. Analysis of single-unit responses to the panel of fatty acids, including those with branched hydrocarbon chains, suggested that the determinants for the response specificities of individual mitral/tufted cells in the dorsomedial region include the overall size of hydrocarbon chains of the odor ligand molecules. 4. Single mitral/tufted cells in the dorsomedial region tended to be activated not only by fatty acids but also by n-aliphatic aldehydes. For a panel of a homologous series of n-aldehydes at five different concentrations, individual mitral/tufted cells showed response selectivity to subsets of aldehydes with similar hydrocarbon chain lengths. 5. In most cases, normal aliphatic alcohols and alkanes were ineffective in activating mitral/tufted cells in the dorsomedial region. This suggests that carbonyl group (--C = O) in the odor molecules plays an important role in determining response specificity of these neurons. 6. Examination with an expanded panel of stimulus odor molecules that included ketones and esters indicated that single mitral/tufted cells sensitive to subsets of fatty acids and n-aliphatic aldehydes were also responsive to subsets of ketones and/or esters having hydrocarbon chain lengths similar to those of the effective fatty acids and aldehydes. 7. The present results show a clear correlation between the tuning specificity of individual mitral/tufted cells and the stereochemical structure of the odor molecules, with respect to 1) length and/or structure of hydrocarbon chain, 2) difference in functional group, and 3) position of the functional group within the molecule. 8. A hypothetical diagram suggesting functional convergence of olfactory nerve input to individual glomeruli is proposed to explain the mechanism for selective activation of individual mitral/tufted cells by a range of odor molecules with similar stereochemical structures.
摘要
  1. 从经乌拉坦麻醉的家兔主嗅球中的单个二尖瓣/簇状细胞记录细胞外锋电位反应。使用周期性人工吸入,用一系列脂肪族化合物刺激与记录嗅球同侧的嗅上皮。2. 在主嗅球的背内侧部分,单个二尖瓣/簇状细胞被具有相似碳氢链长度的正脂肪酸亚组激活。使用一系列五种不同浓度的正脂肪酸详细检查单个二尖瓣/簇状细胞的反应选择性。结果表明,虽然在较高浓度下有效脂肪酸的范围更广,但较高浓度下的最佳反应与较低浓度下确定的反应相似。3. 对包括具有支链碳氢链的脂肪酸在内的一组脂肪酸的单单位反应分析表明,背内侧区域单个二尖瓣/簇状细胞反应特异性的决定因素包括气味配体分子碳氢链的总体大小。4. 背内侧区域的单个二尖瓣/簇状细胞不仅倾向于被脂肪酸激活,还倾向于被正脂肪醛激活。对于一组五种不同浓度的同系正醛,单个二尖瓣/簇状细胞对具有相似碳氢链长度的醛亚组表现出反应选择性。5. 在大多数情况下, 正常脂肪醇和烷烃在激活背内侧区域的二尖瓣/簇状细胞方面无效。这表明气味分子中的羰基(--C = O)在决定这些神经元的反应特异性中起重要作用。6. 用包括酮和酯在内的扩展刺激气味分子组进行检查表明,对脂肪酸和正脂肪醛亚组敏感的单个二尖瓣/簇状细胞也对具有与有效脂肪酸和醛相似碳氢链长度的酮和/或酯亚组有反应。7. 目前的结果表明,单个二尖瓣/簇状细胞的调谐特异性与气味分子的立体化学结构之间存在明显的相关性,涉及1)碳氢链的长度和/或结构,2)官能团的差异,以及3)官能团在分子内的位置。8. 提出了一个假设图,表明嗅神经输入到单个肾小球的功能汇聚,以解释一系列具有相似立体化学结构的气味分子对单个二尖瓣/簇状细胞的选择性激活机制。

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