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Strain differences in the neural behavioral and molecular correlates of sweet and salty taste in naive ethanol- and sucrose-exposed P and NP rats

机译:幼稚乙醇和蔗糖暴露的P和NP大鼠的甜味和咸味在神经行为和分子相关性中的应变差异

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摘要

Strain differences between naive, sucrose- and ethanol-exposed alcohol-preferring (P) and alcohol-nonpreferring (NP) rats were investigated in their consumption of ethanol, sucrose, and NaCl; chorda tympani (CT) nerve responses to sweet and salty stimuli; and gene expression in the anterior tongue of T1R3 and TRPV1/TRPV1t. Preference for 5% ethanol and 10% sucrose, CT responses to sweet stimuli, and T1R3 expression were greater in naive P rats than NP rats. The enhancement of the CT response to 0.5 M sucrose in the presence of varying ethanol concentrations (0.5–40%) in naive P rats was higher and shifted to lower ethanol concentrations than NP rats. Chronic ingestion of 5% sucrose or 5% ethanol decreased T1R3 mRNA in NP and P rats. Naive P rats also demonstrated bigger CT responses to NaCl+benzamil and greater TRPV1/TRPV1t expression. TRPV1t agonists produced biphasic effects on NaCl+benzamil CT responses, enhancing the response at low concentrations and inhibiting it at high concentrations. The concentration of a TRPV1/TRPV1t agonist (Maillard reacted peptides conjugated with galacturonic acid) that produced a maximum enhancement in the NaCl+benzamil CT response induced a decrease in NaCl intake and preference in P rats. In naive P rats and NP rats exposed to 5% ethanol in a no-choice paradigm, the biphasic TRPV1t agonist vs. NaCl+benzamil CT response profiles were higher and shifted to lower agonist concentrations than in naive NP rats. TRPV1/TRPV1t mRNA expression increased in NP rats but not in P rats exposed to 5% ethanol in a no-choice paradigm. We conclude that P and NP rats differ in T1R3 and TRPV1/TRPV1t expression and neural and behavioral responses to sweet and salty stimuli and to chronic sucrose and ethanol exposure.
机译:研究了天真,蔗糖和乙醇暴露的酒精偏爱(P)和酒精不偏爱(NP)大鼠之间在乙醇,蔗糖和NaCl消耗方面的应变差异。鼓膜鼓膜(CT)对甜味和咸味刺激的神经反应;和基因表达在T1R3和TRPV1 / TRPV1t的前舌中。与NP大鼠相比,幼稚P大鼠更倾向于5%乙醇和10%蔗糖,CT对甜味刺激的反应以及T1R3表达。在幼稚的P大鼠中,在乙醇浓度变化(0.5–40%)的情况下,对0.5 M蔗糖的CT反应增强比NP大鼠更高,而向较低的乙醇浓度转移。长期摄入5%蔗糖或5%乙醇会降低NP和P大鼠的T1R3 mRNA。幼稚的P大鼠还表现出更大的CT对NaCl +苯扎米尔的反应和更大的TRPV1 / TRPV1t表达。 TRPV1t激动剂对NaCl + benzamil CT反应产生双相影响,在低浓度时增强反应,而在高浓度时抑制。在NaCl +苯扎米尔CT反应中产生最大增强的TRPV1 / TRPV1t激动剂(与半乳糖醛酸偶联的美拉德反应肽)的浓度导致P大鼠的NaCl摄入量和偏好降低。在无选择范式中暴露于5%乙醇的纯天然P大鼠和NP大鼠中,双相TRPV1t激动剂与NaCl +苯扎米尔CT反应曲线比纯天然NP大鼠更高,并且转移到更低的激动剂浓度。在无选择范式中,NP大鼠中TRPV1 / TRPV1t mRNA表达增加,而在5%乙醇中暴露的P大鼠中TRPV1 / TRPV1t mRNA表达却没有增加。我们得出结论,P和NP大鼠在T1R3和TRPV1 / TRPV1t表达以及对甜味和咸味刺激以及对慢性蔗糖和乙醇暴露的神经和行为反应方面存在差异。

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