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大鼠应激诱导气味剂的结构-活性关系。

Structure-activity relationship of stress-inducing odorants in the rat.

机构信息

Physisologie Neuro-sensorielle, CNRS, Université Claude Bernard, F-69622, Villeburbanne, France.

出版信息

J Chem Ecol. 1984 Jul;10(7):1007-18. doi: 10.1007/BF00987509.

Abstract

The stress for 12 sulfur-containing synthetized volatiles was evaluated in male Wistar rats and compared to that for fox-dropping extract concentrate. Stress behavior was analyzed by quantifying various stress responses in a standard open field and measuring the increase in plasma corticosterone concentration. Nine compounds induced stress-a dihydrothiazole, two cyclic polysulfides, five mercaptoketones, and a mercaptan. For the mercaptoketones, the following structure-activity relationships were observed. Size can vary considerably; the mercapto group can be either alpha or beta and either secondary or tertiary. The keto group is not essential, since a structurally related mercaptan remains active. The mercapto group is essential for activity in mercaptoketones, since conversion to a methyl sulfide resulted in a neutral response. This type of odorant could function as an allomone and may have potential in rat control as an area repellent.

摘要

评估了 12 种含硫合成挥发物对雄性 Wistar 大鼠的应激作用,并与狐狸粪便提取物浓缩物进行了比较。通过在标准开阔场量化各种应激反应和测量血浆皮质酮浓度的增加来分析应激行为。有 9 种化合物引起了应激——一种二氢噻唑、两种环状多硫化物、五种巯基酮和一种硫醇。对于巯基酮,观察到以下结构-活性关系。大小可以有很大的变化;巯基可以是α或β,也可以是仲或叔。酮基不是必需的,因为结构上相关的硫醇仍然具有活性。巯基对于巯基酮的活性是必需的,因为转化为甲基硫醚导致中性反应。这种类型的气味可能作为他感物质发挥作用,并可能在控制大鼠方面具有作为区域驱避剂的潜力。

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