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ATP门控P2X3受体在大鼠味觉乳头和味蕾中的表达。

Expression of ATP-gated P2X3 receptors in rat gustatory papillae and taste buds.

作者信息

Kataoka Shinji, Toyono Takashi, Seta Yuji, Toyoshima Kuniaki

机构信息

Division of Oral Anatomy and Neurobiology, Department of Biosciences, Kyushu Dental College, Japan.

出版信息

Arch Histol Cytol. 2006 Dec;69(4):281-8. doi: 10.1679/aohc.69.281.

Abstract

It has recently become evident that ATP and other extracellular nucleotides could play an important role in signal transductions. ATP mediates excitatory signaling by means of P2X receptors. P2X3, one of its subtypes, a membrane ligand-gated ion channel, is strongly expressed in peripheral sensory neurons. The aim of the present study was to examine the distribution of nerve fibers expressing P2X3 receptors in taste buds in the gustatory papillae and soft palate of rats by immunohistochemistry. We found that the fluorescence ATP marker quinacrine stained subsets of taste bud cells. Numerous nerve fibers innervating taste buds were intensely immunostained with the P2X3 receptor antibody. These nerve fibers ascended among intragemmal cells and terminated just below the taste pores. In order to examine whether P2X3 receptors are involved in signal modulation within taste buds, we used fluorescent double stainings to analyze the distribution of P2X3 receptors and their relationship to alpha-gustducin immunopositive taste receptor cells. Many varicose nerve fibers expressing P2X3 receptor-immunoreactivities were entangled with alpha-gustducin-immunopositive taste receptor cells and ended closely below the taste pores. In fungiform papillae, nerve fibers expressing both P2X3 receptors and PGP 9.5 were observed. In contrast, only PGP 9.5 immunoreactive nerve fibers were recognized in filiform papillae. These results suggest that P2X3 receptors might be involved in taste transmission pathways within taste buds. ATP may act as a neurotransmitter, co-transmitter, or neuromodulator at P2X3 receptors to generate activating gustatory nerve fibers.

摘要

最近有证据表明,ATP和其他细胞外核苷酸可能在信号转导中发挥重要作用。ATP通过P2X受体介导兴奋性信号传导。P2X3是其亚型之一,为膜配体门控离子通道,在外周感觉神经元中强烈表达。本研究旨在通过免疫组织化学检查大鼠味觉乳头和软腭味蕾中表达P2X3受体的神经纤维分布。我们发现荧光ATP标记物喹吖因可对部分味蕾细胞进行染色。大量支配味蕾的神经纤维被P2X3受体抗体强烈免疫染色。这些神经纤维在味蕾细胞间上行,并在味孔下方终止。为了检查P2X3受体是否参与味蕾内的信号调节,我们使用荧光双重染色来分析P2X3受体的分布及其与α - 味导素免疫阳性味觉受体细胞的关系。许多表达P2X3受体免疫反应性的曲张神经纤维与α - 味导素免疫阳性味觉受体细胞缠绕在一起,并在味孔下方紧密终止。在菌状乳头中,观察到同时表达P2X3受体和PGP 9.5的神经纤维。相比之下,在丝状乳头中仅识别出PGP 9.5免疫反应性神经纤维。这些结果表明,P2X3受体可能参与味蕾内的味觉传递途径。ATP可能在P2X3受体处作为神经递质、共递质或神经调节剂发挥作用,以激活味觉神经纤维。

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