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仓鼠鼓索神经味觉反应的发育

Development of chorda tympani nerve taste responses in the hamster.

作者信息

Hill D L

机构信息

Department of Psychology, University of Virginia, Charlottesville 22903-2477.

出版信息

J Comp Neurol. 1988 Feb 15;268(3):346-56. doi: 10.1002/cne.902680305.

Abstract

To determine whether changes in salt and sugar responses occur during development in the hamster, multifiber responses were recorded from the chorda tympani nerve while stimulating the anterior tongue of preweanling, early postweanling, and adult hamsters. Gustatory stimuli included 0.1 and 0.5 M solutions of NH4Cl, NaCl, LiCl, and KCl, and concentration series (0.01-1.0 M) of glucose, fructose, sucrose, maltose, lactose, and (0.0005-0.01 M) saccharin. Dramatic alterations in hamster peripheral gustatory sensitivities occurred with age, with the direction and magnitude of change dependent on the specific stimulus. Response magnitudes to 0.1 M solutions of NaCl and LiCl decreased with age compared to the NH4Cl response, whereas responses to all other salt stimuli remained constant during development. Responses to all sugars and saccharin compared to the NH4Cl response increased during development across a large concentration range; however, the age at which mature responses were achieved depended on the specific "sweet" stimulus. Whereas these findings demonstrate that the hamster peripheral gustatory system is dynamic during postnatal development, the hamster has a unique developmental pattern of salt taste development compared to other species. Specifically, the effectiveness of NaCl and LiCl decrease during development compared to NH4Cl in the hamster, but increase dramatically in the rat and sheep. Thus, the developmental patterns are opposite in direction for the hamster compared to the rat and sheep and may relate to the environmental pressures imposed upon each species.

摘要

为了确定仓鼠在发育过程中盐和糖的反应是否会发生变化,在刺激断奶前、断奶初期和成年仓鼠的舌尖时,记录了鼓索神经的多纤维反应。味觉刺激包括0.1 M和0.5 M的氯化铵、氯化钠、氯化锂和氯化钾溶液,以及葡萄糖、果糖、蔗糖、麦芽糖、乳糖的浓度系列(0.01 - 1.0 M)和糖精(0.0005 - 0.01 M)。仓鼠外周味觉敏感性随年龄发生显著变化,变化的方向和幅度取决于特定的刺激。与氯化铵反应相比,对0.1 M氯化钠和氯化锂溶液的反应幅度随年龄下降,而对所有其他盐刺激的反应在发育过程中保持不变。与氯化铵反应相比,对所有糖类和糖精的反应在发育过程中在很大的浓度范围内都有所增加;然而,达到成熟反应的年龄取决于特定的“甜味”刺激。虽然这些发现表明仓鼠外周味觉系统在出生后发育过程中是动态的,但与其他物种相比,仓鼠的盐味发育具有独特的发育模式。具体而言,与氯化铵相比,仓鼠发育过程中氯化钠和氯化锂的有效性降低,但在大鼠和绵羊中则显著增加。因此,与大鼠和绵羊相比,仓鼠的发育模式方向相反,这可能与每个物种所面临的环境压力有关。

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