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鼻腔对挥发性有机化合物(烷基苯)的辛辣和气味的感官反应。

Sensory reactions of nasal pungency and odor to volatile organic compounds: the alkylbenzenes.

作者信息

Cometto-Muñiz J E, Cain W S

机构信息

John B. Pierce Laboratory, New Haven, CT 06519.

出版信息

Am Ind Hyg Assoc J. 1994 Sep;55(9):811-7. doi: 10.1080/15428119491018529.

Abstract

Research assessed the independent contribution of the trigeminal and olfactory nerves to the detection of airborne chemicals by measuring nasal detection thresholds in subjects clinically diagnosed as lacking a functional sense of smell (anosmics) and in matched normal controls (normosmics). Anosmics can provide only odor-unbiased pungency thresholds. Normosmics provided odor thresholds. Stimuli included homologous alkylbenzenes (from toluene to octylbenzene), chlorobenzene, 1-octene, and 1-octyne. As seen before with homologous alcohols, acetates, and ketones, both types of threshold declined with increasing carbon chain length. Anosmics failed to detect alkylbenzenes above propylbenzene. The strong linear correlation between pungency thresholds and saturated vapor concentration for all tested compounds, as a whole, and the constancy of pungency thresholds expressed as percent of vapor saturation, suggests that nasal pungency from these substances relies heavily on a broadly tuned physicochemical interaction with a susceptible biophase within the cell membrane. Through such a nonspecific mechanism, low, subthreshold levels of a wide variety of volatile organic compounds of low reactivity-as found in many polluted indoor spaces-could add their sensory impact to precipitate noticeable sensory irritation.

摘要

研究通过测量临床诊断为缺乏功能性嗅觉的受试者(嗅觉缺失者)和匹配的正常对照者(嗅觉正常者)的鼻腔检测阈值,评估了三叉神经和嗅觉神经对空气中化学物质检测的独立贡献。嗅觉缺失者只能提供无气味偏向的刺激性阈值。嗅觉正常者提供气味阈值。刺激物包括同系烷基苯(从甲苯到辛基苯)、氯苯、1-辛烯和1-辛炔。正如之前在同系醇、醋酸酯和酮类中所观察到的那样,两种类型的阈值都随着碳链长度的增加而下降。嗅觉缺失者无法检测到丙基苯以上的烷基苯。总体而言,所有测试化合物的刺激性阈值与饱和蒸汽浓度之间存在很强的线性相关性,并且以蒸汽饱和度百分比表示的刺激性阈值恒定不变,这表明这些物质的鼻腔刺激性在很大程度上依赖于与细胞膜内敏感生物相的广泛调节的物理化学相互作用。通过这种非特异性机制,许多污染室内空间中存在的低反应性的各种挥发性有机化合物的低阈值水平,可能会增加它们的感官影响,从而引发明显的感官刺激。

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