Suppr超能文献

金鱼视顶盖中的调制性胆碱能系统可能对视拓扑锐化是必要的。

The modulatory cholinergic system in goldfish tectum may be necessary for retinotopic sharpening.

作者信息

Schmidt J T

机构信息

Department of Biological Science and Neurobiology Research Center, State University of New York at Albany 12222, USA.

出版信息

Vis Neurosci. 1995 Nov-Dec;12(6):1093-1103. doi: 10.1017/s095252380000674x.

Abstract

The cholinergic circuit within the tectum and the cholinergic input from the nucleus isthmi mediate a presynaptic augmentation of retinotectal transmitter release via nicotinic receptors. In this study, the cholinergic systems were either eliminated using the cholinergic neurotoxin AF64A or blocked using nicotinic antagonists to test for effects on the activity-driven sharpening of the regenerating retinotectal projection. The effectiveness of the AF64A was verified by recording field potentials elicited by optic tract stimulation and by immunohistochemical staining for choline acetyltransferase (ChAT). At 1 week after intracranial (IC) injection of AF64A (12 to 144 nmoles) into the fluid above the tectum, field potentials showed a selective dose-dependent decrement of the cholinergic polysynaptic component with no effect on the amplitude of the glutamatergic monosynaptic component. The decrement was only partially recovered in recordings at 2 and 6 weeks. In normal fish, the ChAT antibody stains a population of periventricular neurons, their apical dendrites, and a dense plexus within the optic terminal lamina that consists of their local axons and fine dendrites and of input fibers from the nucleus isthmi. One week after IC AF64A injection (48-72 nmoles), most immunostaining in superficial tectum was lost but most neuronal somas in the deep tectum could still be seen, and staining in the tegmentum below the tectum was completely intact. At 2 weeks and later, the staining of neuronal somata largely recovered, but staining of the superficial plexus did not. AF64A treatment at 18 days after nerve crush, when regenerating retinal fibers are beginning to form synapses, prevented retinotopic sharpening of the projection. Recordings showed a rough retinotopic map on the tectum but the multiunit receptive fields (MURFs) at each tectal point averaged 34 deg vs. 11 deg in vehicle-injected control regenerates. AF64A treatment before nerve crush also blocked sharpening, ruling out a direct effect on retinal growth cones or retinal fibers, as AF64A rapidly decomposes, whereas its effect on the cholinergic fibers is long-lasting. IC injection or minipump infusion of the nicotine antagonists alpha-bungarotoxin (alpha BTX), neuronal bungarotoxin (nBTX), and pancuronium during regeneration also prevented sharpening (MURFs averaging 29.4 deg, 33.0 deg, and 31.4 deg, respectively). Control Ringer's solution infusions or injections over the same period (19-37 days postcrush) had no effect on regenerated MURF size (11.7 deg). The results show that the cholinergic innervation, which modulates transmitter release, is required for activity-driven retinotopic sharpening, thought to be triggered by NMDA receptor activation.

摘要

顶盖内的胆碱能回路以及来自峡核的胆碱能输入,通过烟碱受体介导视网膜顶盖递质释放的突触前增强。在本研究中,使用胆碱能神经毒素AF64A消除胆碱能系统,或使用烟碱拮抗剂阻断该系统,以测试其对再生视网膜顶盖投射的活动驱动锐化的影响。通过记录视束刺激引发的场电位以及对胆碱乙酰转移酶(ChAT)进行免疫组织化学染色,验证了AF64A的有效性。在将AF64A(12至144纳摩尔)颅内(IC)注射到顶盖上方的液体中1周后,场电位显示胆碱能多突触成分出现选择性剂量依赖性降低,而对谷氨酸能单突触成分的幅度没有影响。在2周和6周的记录中,这种降低仅部分恢复。在正常鱼类中,ChAT抗体可染色一群脑室周围神经元、它们的顶端树突,以及视终端板层内的密集神经丛,该神经丛由它们的局部轴突、细树突以及来自峡核的输入纤维组成。IC注射AF64A(48 - 72纳摩尔)1周后,顶盖浅层的大多数免疫染色消失,但仍可看到深层顶盖中的大多数神经元胞体,并且顶盖下方被盖中的染色完全完整。在2周及以后,神经元胞体的染色大部分恢复,但浅层神经丛的染色未恢复。在神经挤压后18天(此时再生的视网膜纤维开始形成突触)进行AF64A处理,可阻止投射的视网膜定位锐化。记录显示顶盖有粗略的视网膜定位图,但在每个顶盖点的多单位感受野(MURF)在注射载体的对照再生鱼中平均为11度,而在AF64A处理的鱼中平均为34度。在神经挤压前进行AF64A处理也会阻断锐化,排除了对视网膜生长锥或视网膜纤维的直接影响,因为AF64A会迅速分解,而其对胆碱能纤维的影响是持久的。在再生期间IC注射或微型泵输注烟碱拮抗剂α-银环蛇毒素(αBTX)、神经元型银环蛇毒素(nBTX)和泮库溴铵也会阻止锐化(MURF分别平均为29.4度、33.0度和31.4度)。在同一时期(挤压后19 - 37天)输注或注射对照林格氏液对再生的MURF大小没有影响(11.7度)。结果表明,调节递质释放的胆碱能神经支配是活动驱动的视网膜定位锐化所必需的,而视网膜定位锐化被认为是由NMDA受体激活触发的。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验