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The Effect of Vapor of Propylene Glycol on Rats

机译:丙二醇蒸气对大鼠的影响

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Propylene glycol (PG) is commonly used as a solvent for odorous chemicals employed in studies of the olfactory system because PG has been considered to be odorless for humans and other animals. However, if laboratory rats can detect the vapor of PG and if exposure to this influences behaviors, such effects might confound data obtained from experiments exposing conscious rats to odorants dissolved in PG. Therefore, we examined this issue using differences in the acoustic startle reflex (ASR) as an index. We also conducted a habituation/dishabituation test to assess the ability of rats to detect the vapor of PG. In addition, we observed Ca2+ responses of vomeronasal neurons (VNs) in rats exposed to PG using the confocal Ca2+-imaging approach. Pure PG vapor significantly enhanced the ASR at a dose of 1 × 10−4 M, which was much lower than the dose for efficiently detecting. In Ca2+ imaging, VNs were activated by PG at a dose of 1 × 10−4 M or lower. These results suggest that PG vapor acts as an aversive stimulus to rats at very low doses, even lower than those required for its detection, indicating that we should consider such effect of PG when it is employed as a solvent for odorants in studies using conscious rats. In addition, our study suggests that some non-pheromonal volatile odorants might affect animal behaviors via the vomeronasal system.
机译:丙二醇(PG)通常用作嗅觉系统研究中使用的有味化学物质的溶剂,因为PG被认为对人类和其他动物无味。但是,如果实验室老鼠可以检测到PG的蒸气,并且如果暴露于这种蒸气会影响行为,则这种影响可能会使从有意识的老鼠暴露于PG的增香剂中进行实验的数据混淆。因此,我们使用声学惊吓反射(ASR)的差异作为指标来研究此问题。我们还进行了适应/适应测试,以评估大鼠检测PG蒸气的能力。此外,我们使用共聚焦的Ca 2 + -成像方法观察了暴露于PG的大鼠的犁鼻神经元(VNs)的Ca 2 + 响应。纯PG蒸气以1×10 -4 M的剂量显着增强了ASR,远低于有效检测的剂量。在Ca 2 + 成像中,PG以1×10 −4 M或更低的剂量激活VN。这些结果表明,PG蒸气以非常低的剂量对大鼠产生厌恶刺激,甚至低于其检测所需的剂量,这表明在使用清醒大鼠的研究中,当将PG用作气味溶剂时,我们应该考虑PG的这种作用。 。此外,我们的研究表明,某些非信息素挥发性增香剂可能会通过犁鼻系统影响动物行为。

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  • 来源
    《Chemical Senses》 |2010年第3期|p.221-228|共8页
  • 作者单位

    Laboratory of Veterinary Ethology, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-8657, Japan|Present address: Animal Research Laboratory, Bioscience Education-Research Center, Akita University, 1-1-1 Hondo, Akita 010-8543, Japan;

    Department of Physiology, Kochi Medical School, Kohasu, Okoh-cho, Nankoku, Kochi 783-8505, Japan;

    Division of Physiology, Department of Human Development and Fostering, Meikai University School of Dentistry, 1-1 Keyakidai, Sakado, Saitama 350-0283, Japan;

    Department of Physiology, Kochi Medical School, Kohasu, Okoh-cho, Nankoku, Kochi 783-8505, Japan|Division of Adaptation Development, Department of Developmental Physiology, National Institute for Physiological Sciences, Okazaki, Aichi 444-8585, Japan;

    Laboratory of Veterinary Ethology, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-8657, Japan;

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