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早期发育期间饮食中氯化钠缺乏对行为和神经生理味觉反应的影响。

Effects of dietary NaCl deprivation during early development on behavioral and neurophysiological taste responses.

作者信息

Hill D L, Mistretta C M, Bradley R M

出版信息

Behav Neurosci. 1986 Jun;100(3):390-8. doi: 10.1037//0735-7044.100.3.390.

Abstract

In order to determine whether the gustatory system can be modified by restricting dietary NaCl during early development, neurophysiological taste responses were recorded in rats at various times after deprivation, and behavioral taste preferences were measured in adults. Rats deprived of dietary NaCl from the third day of gestation to 12 days postnatally and then placed on a NaCl-replete diet had chorda tympani nerve responses similar to those of nondeprived rats when recordings were made at 28 days of age and older; however, preferences for NaCl solutions over water were significantly less than those of controls when tested at adulthood. NaCl deprivation in pups from the third day of gestation to approximately 35 days postnatally resulted in altered chorda tympani nerve responses to NaCl but not to other stimuli such as NH4Cl and KCl. Therefore, restriction of dietary NaCl at a period in the rat's development when peripheral and central taste responses are changing results in short-term alterations in peripheral neural responses and in long-term changes in preference behaviors.

摘要

为了确定味觉系统在早期发育过程中是否会因限制饮食中的氯化钠而发生改变,研究人员记录了大鼠在剥夺饮食氯化钠后不同时间的神经生理味觉反应,并测量了成年大鼠的行为味觉偏好。从妊娠第3天到出生后12天剥夺饮食氯化钠,然后给予富含氯化钠饮食的大鼠,在28日龄及以上进行记录时,鼓索神经反应与未剥夺饮食的大鼠相似;然而,成年后测试时,与对照组相比,它们对氯化钠溶液相对于水的偏好明显降低。从妊娠第3天到出生后约35天对幼崽进行氯化钠剥夺,导致鼓索神经对氯化钠的反应发生改变,但对氯化铵和氯化钾等其他刺激的反应未改变。因此,在大鼠发育过程中,当外周和中枢味觉反应正在变化时限制饮食中的氯化钠,会导致外周神经反应的短期改变和偏好行为的长期变化。

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