首页> 外文期刊>The Journal of Comparative Neurology >Uptake and release of neurotransmitter candidates, (3H)serotonin, (3H)glutamate, and (3H)gamma-aminobutyric acid, in taste buds of the mudpuppy, Necturus maculosus.
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Uptake and release of neurotransmitter candidates, (3H)serotonin, (3H)glutamate, and (3H)gamma-aminobutyric acid, in taste buds of the mudpuppy, Necturus maculosus.

机译:在泥p Necturus maculosus的味蕾中摄取和释放候选神经递质(3H)血清素,(3H)谷氨酸和(3H)γ-氨基丁酸。

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Neurotransmitters in vertebrate taste buds have not yet been identified with confidence. Serotonin, glutamate, and gamma-aminobutyric acid (GABA) have been postulated, but the evidence is incomplete. We undertook an autoradiographic study of [3H]serotonin, [3H]glutamate, and [3H]GABA uptake in lingual epithelium from the amphibian, Necturus maculosus, to determine whether taste bud cells would accumulate and release these substances. Lingual epithelium containing taste buds was incubated in low concentrations (0.4-6 microM) of these tritiated transmitter candidates and the tissue was processed for light microscopic autoradiography. Merkel-like basal taste cells accumulated [3H]serotonin. When the tissue was treated with 40 mM K+ after incubating the tissue in [3H]serotonin, cells released the radiolabelled transmitter. Furthermore, depolarization (KCl)-induced release of [3H]serotonin was Ca-dependent: if Ca2+ was reduced to 0.4 mM and 20 mM Mg2+ added to the high K+ bathing solution, Merkel-like basal cells did not release [3H]serotonin. In contrast, [3H]glutamate was taken up by several cell types, including non-sensory epithelial cells, Schwann cells, and some taste bud cells. [3H]glutamate was not released by depolarizing the tissue with 40 mM K+. [3H]GABA uptake was also widespread, but did not occur in taste bud cells. [3H]GABA accumulated in non-sensory epithelial cells and Schwann cells. These data support the hypothesis that serotonin is a neurotransmitter or neuromodulator released by Merkel-like basal cells in Necturus taste buds. The data do not support (nor rule out) a neurotransmitter role for glutamate or GABA in taste buds.
机译:尚未有信心确定脊椎动物味蕾中的神经递质。假定了5-羟色胺,谷氨酸和γ-氨基丁酸(GABA),但证据不完整。我们进行了一项放射自显影的研究,研究了两栖动物Necturus maculosus舌上皮中的[3H] 5-羟色胺,[3H]谷氨酸和[3H] GABA摄取,以确定味蕾细胞是否会积聚并释放这些物质。在这些concentrations化的递质候选物中低浓度(0.4-6 microM)孵育含有舌上皮的味蕾,并对组织进行光学显微放射自显影。默克尔样基础味觉细胞积累了[3H] 5-羟色胺。在[3H]血清素中孵育组织后,用40 mM K +处理组织时,细胞会释放出放射性标记的递质。此外,去极化(KCl)诱导的[3H] 5-羟色胺释放是Ca依赖性的:如果将Ca2 +降低至0.4 mM,并向高K +沐浴液中添加20 mM Mg2 +,则默克尔样基底细胞不会释放[3H] 5-羟色胺。 。相反,[3H]谷氨酸被几种细胞类型吸收,包括非感觉上皮细胞,雪旺细胞和一些味蕾细胞。通过用40 mM K +使组织去极化,不会释放[3H]谷氨酸。 [3H] GABA的摄取也很普遍,但在味蕾细胞中并未发生。 [3H] GABA积累在非感觉上皮细胞和雪旺氏细胞中。这些数据支持以下假设:5-羟色胺是由Necturus味蕾中的默克尔样基础细胞释放的神经递质或神经调节剂。数据不支持(也不排除)味蕾中谷氨酸或GABA的神经递质作用。

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