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海兔中血清素免疫反应性CPT中间神经元:感觉输入和运动投射的鉴定

Serotonin-immunoreactive CPT interneurons in Hermissenda: identification of sensory input and motor projections.

作者信息

Tian Lian-Ming, Kawai Ryo, Crow Terry

机构信息

Department of Neurobiology and Anatomy, University of Texas Medical School, Houston, TX 77225, USA.

出版信息

J Neurophysiol. 2006 Jul;96(1):327-35. doi: 10.1152/jn.00035.2006. Epub 2006 Apr 26.

Abstract

Serotonin immunoreactive (5-HT-IR) neurons identified as cerebropleural ganglion triplets (CPTs) in Hermissenda may be homologues of 5-HT-IR neurons identified in other opisthobranch molluscs. In studies of isolated nervous systems and semi-intact preparations we used a combination of immunohistochemical techniques and fluorescent labeling with Lucifer yellow to identify 5-HT-IR CPT neurons after investigating sensory inputs and motor neuron projections. Here we show that identified 5-HT-IR CPT interneurons receive sensory input from mechanoreceptors and photoreceptors. In semi-intact preparations with intact pedal nerves P1 and P2, cutaneous stimulation of the middle or tail regions of the foot with calibrated von Frey hairs elicited spikes recorded from identified CPT interneurons. Illumination of the eyes evoked a small complex excitatory postsynaptic potential (EPSP) and resulted in a modest increase in the spike discharge of CPT interneurons. Immunostaining of Lucifer yellow-labeled neurons revealed that CPT interneurons projected an axonal process to the contralateral pedal ganglion. Depolarization of CPT interneurons with extrinsic current evoked EPSPs and spikes recorded from identified VP2 pedal neurons, motor neurons previously shown to elicit movement of the anterior foot. Extrinsic current stimulation of CPT interneurons in semi-intact preparations evoked movement of the anterior foot but did not facilitate ciliary activity or evoke PSPs recorded in identified VP1 ciliary motor neurons. Our results show that CPT neurons are polysensory interneurons that contribute to reflexive foot contractions in Hermissenda.

摘要

在多板纲海兔中被鉴定为脑胸膜神经节三联体(CPT)的5-羟色胺免疫反应性(5-HT-IR)神经元可能与在其他后鳃亚纲软体动物中鉴定出的5-HT-IR神经元同源。在对分离的神经系统和半完整标本的研究中,我们在研究感觉输入和运动神经元投射后,使用免疫组织化学技术和荧光黄荧光标记相结合的方法来鉴定5-HT-IR CPT神经元。在此我们表明,已鉴定的5-HT-IR CPT中间神经元接收来自机械感受器和光感受器的感觉输入。在具有完整足神经P1和P2的半完整标本中,用校准的von Frey毛对足部中部或尾部区域进行皮肤刺激,可从已鉴定的CPT中间神经元记录到动作电位。眼睛受光照会诱发一个小的复合兴奋性突触后电位(EPSP),并导致CPT中间神经元的动作电位发放适度增加。对荧光黄标记神经元的免疫染色显示,CPT中间神经元向对侧足神经节投射一个轴突过程。用外部电流使CPT中间神经元去极化,可从已鉴定的VP2足运动神经元记录到EPSP和动作电位,VP2足运动神经元是先前已证明可引发前足运动的运动神经元。在半完整标本中对CPT中间神经元进行外部电流刺激可诱发前足运动,但不促进纤毛活动或诱发在已鉴定的VP1纤毛运动神经元中记录到的PSP。我们的结果表明,CPT神经元是多感觉中间神经元,它们参与海兔的反射性足部收缩。

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