首页> 美国卫生研究院文献>The Journal of Neuroscience >Taste-Evoked Responses to Sweeteners in the Nucleus of the Solitary Tract Differ between C57BL/6ByJ and 129P3/J Mice
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Taste-Evoked Responses to Sweeteners in the Nucleus of the Solitary Tract Differ between C57BL/6ByJ and 129P3/J Mice

机译:C57BL / 6ByJ和129P3 / J小鼠孤立道核对甜味剂的味觉诱发反应

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摘要

C57BL/6ByJ (B6) and 129P3/J (129) mice have different alleles of Tas1r3, which is thought to influence gustatory transduction of sweeteners, but studies have provided conflicting results regarding differences in sweetness perception between these strains. Single-unit taste-evoked activity was measured in the nucleus of the solitary tract (NST) in anesthetized B6 and 129 mice to address this controversy and to provide the first electrophysiological characterization of this nucleus in mice. Neurons had properties similar to those of NST cells in other species, including mean breadth-of-tuning of 0.8 ± 0.0. There were no strain differences in neural responses at 600 or 900 ms after onset, but, with a 5 s evoked period, responses to the sweeteners sucrose, maltose, acesulfame-K, SC-45647, and d-phenylalanine were significantly larger in B6 relative to 129 mice. The strains did not differ in their mean response to NaSaccharin, but it evoked an across-neuron pattern of activity that was more similar to that of sucrose and less similar to that of NaCl in B6 mice compared with 129 mice. Neurons were classified as sucrose, NaCl, or HCl responsive, with the former more common in B6 than 129 mice. Relative to other neurons, sucrose-responsive cells had delayed but more sustained sweetener responses in both strains. The results suggest that B6 mice perceive some sweeteners as more intense, but NaSaccharin as sweeter and less salty, relative to 129 mice. Furthermore, activity evoked by sweeteners includes a phasic response sent to different NST cells than a later tonic response, and only the latter differs between B6 and 129 mice.
机译:C57BL / 6ByJ(B6)和129P3 / J(129)小鼠具有不同的Tas1r3等位基因,据认为它们影响甜味剂的味觉转导,但是有关这些菌株之间甜味感知差异的研究却存在矛盾。在麻醉的B6和129小鼠中,在孤立道(NST)的核中测量了单位诱发的味觉活性,以解决这一争议并提供小鼠中该核的首次电生理学表征。神经元具有与其他物种的NST细胞相似的特性,包括0.8±0.0的平均调谐宽度。发病后600或900毫秒,神经反应无应变差异,但在5 s的诱发期中,B6对甜味剂蔗糖,麦芽糖,乙酰磺胺酸钾,SC-45647和d-苯丙氨酸的反应明显增加。相对于129只小鼠。这些菌株对NaSaccharin的平均反应没有差异,但与129只小鼠相比,它在B6小鼠中引起的跨神经元活动模式与蔗糖更相似,而与NaCl相似。神经元被分类为蔗糖,NaCl或HCl响应型,前者在B6中比129小鼠更常见。相对于其他神经元,蔗糖反应性细胞在两种菌株中均延迟了甜味剂反应,但持续性更高。结果表明,相对于129只小鼠,B6小鼠对某些甜味剂的感觉更强,但对NaSaccharin的感觉更甜,且盐分更少。此外,甜味剂引起的活性包括与后来的强直反应相比,发往不同NST细胞的阶段性反应,只有后者在B6和129小鼠之间有所不同。

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