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首页> 外文期刊>American Journal of Physiology >A paracrine signaling role for serotonin in rat taste buds: expression and localization of serotonin receptor subtypes.
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A paracrine signaling role for serotonin in rat taste buds: expression and localization of serotonin receptor subtypes.

机译:5-羟色胺在大鼠味蕾中的旁分泌信号传导作用:5-羟色胺受体亚型的表达和定位。

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Recent advances in peripheral taste physiology now suggest that the classic linear view of information processing within the taste bud is inadequate and that paracrine processing, although undemonstrated, may be an essential feature of peripheral gustatory transduction. Taste receptor cells (TRCs) express multiple neurotransmitters of unknown function that could potentially participate in a paracrine role. Serotonin is expressed in a subset of TRCs with afferent synapses; additionally, TRCs respond physiologically to serotonin. This study explored the expression and cellular localization of serotonin receptor subtypes in TRCs as a possible route of paracrine communication. RT-PCR was performed on RNA extracted from rat posterior taste buds with 14 prime sets representing 5-HT(1) through 5-HT(7) receptor subtype families. Data suggest that 5-HT(1A) and 5-HT(3) receptors are expressed in taste buds. Immunocytochemistry with a 5-HT(1A)-specific antibody demonstrated that subsets of TRCs were immunopositive for 5-HT(1A). With the use of double-labeling, serotonin- and 5-HT(1A)-immunopositive cells were observed exclusively in nonoverlapping populations. On the other hand, 5-HT(3)-immunopositive taste receptor cells were not observed. This observation, combined with other data, suggests 5-HT(3) is expressed in postsynaptic neural elements within the bud. We hypothesize that 5-HT release from TRCs activates postsynaptic 5-HT(3) receptors on afferent nerve fibers and, via a paracrine route, inhibits neighboring TRCs via 5-HT(1A) receptors. The ole of the 5-HT(1A)-expressing TRC within the taste bud remains to be explored.
机译:现在,外围味觉生理学的最新进展表明,味蕾内信息处理的经典线性观点是不充分的,旁分泌处理尽管未证实,但可能是外围味觉转导的基本特征。味觉受体细胞(TRC)表达功能未知的多种神经递质,可能参与旁分泌作用。血清素在具有传入突触的TRC子集中表达;另外,TRC在生理上对血清素有反应。这项研究探讨了5-羟色胺受体亚型在TRC中的表达和细胞定位,作为旁分泌交流的一种可能途径。对从大鼠后味蕾中提取的RNA进行了RT-PCR,RNA具有14个主要集,分别代表5-HT(1)至5-HT(7)受体亚型家族。数据表明5-HT(1A)和5-HT(3)受体在味蕾中表达。 5-HT(1A)特异性抗体的免疫细胞化学表明,TRC的子集对5-HT(1A)呈免疫阳性。通过使用双重标记,仅在非重叠人群中观察到了5-羟色胺和5-HT(1A)免疫阳性细胞。另一方面,未观察到5-HT(3)-免疫阳性味觉受体细胞。此观察结果与其他数据相结合,表明5-HT(3)在芽内的突触后神经元中表达。我们假设从TRCs释放5-HT激活传入神经纤维上的突触后5-HT(3)受体,并通过旁分泌途径,通过5-HT(1A)受体抑制邻近的TRCs。味蕾中表达5-HT(1A)的TRC的烯烃仍有待探索。

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