Immunoreactive glutamic acid decarboxylase in the trigeminal nucleus caudalis of the cat: a light- and electron-microscopic analysis.

A I Basbaum, E J Glazer, W Oertel
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引用次数: 63

Abstract

This study used antisera directed against glutamic acid decarboxylase (GAD), the biosynthetic enzyme for gamma-aminobutyric acid (GABA), to examine the light- and electron-microscopic distribution of presumed GABA-ergic synapses in the medullary homologue of the cat spinal dorsal horn, the trigeminal nucleus caudalis. At the light-microscopic level, immunoreactive terminals were concentrated in the superficial dorsal horn, laminae I and II. Colchicine was generally ineffective in revealing the distribution of cell bodies. However, in two successful cases, the majority of labeled cells were found in the magnocellular layer, ventral to the substantia gelatinosa, a region that had a lower density of immunoreactive terminals. Other labeled neurons were scattered in laminae I and II. A variety of synaptic arrangements were found at the electron-microscopic level. These derived from two types of labeled terminals. One contained both small round vesicles and large dense-cored vesicles. The second contained small round and pleomorphic vesicles. Some immunoreactive GAD terminals contained a few flat vesicles. Labeled terminals predominantly formed axodendritic synapses, via symmetrical contacts. Several axoaxonic arrangements were also observed. In most cases, the GAD terminal (which did not contain dense-cored vesicles) was presynaptic to another vesicle-containing profile, including the scalloped central terminal thought to derive from primary afferents. Another population of labeled GAD terminals was found postsynaptic to unlabeled vesicle-containing profiles, including central terminals. These data indicate that inhibitory GABA-ergic controls in the trigeminal nucleus caudalis involve both presynaptic and postsynaptic mechanisms and are probably mediated via direct contacts onto ascending projection neurons, as well as via synaptic contacts onto nociceptive primary afferent fibers. The transmission of nociceptive messages by neurons of the spinal cord dorsal horn and trigeminal nucleus caudalis is subject to a variety of segmental and supraspinal controls. Pharmacological and electrophysiological studies have implicated the biogenic amines serotonin and norepinephrine, and the endogenous opioid peptides enkephalin and dynorphin, in those controls (Basbaum and Fields, 1978, 1984; Basbaum et al., 1983; Basbaum, 1985).(ABSTRACT TRUNCATED AT 400 WORDS)

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免疫反应性谷氨酸脱羧酶在猫的三叉神经尾核:光镜和电镜分析。
这项研究使用了针对谷氨酸脱羧酶(GAD)的抗血清,该酶是γ -氨基丁酸(GABA)的生物合成酶,以检查猫脊髓背角的髓质同源物,三叉神经尾核中假定的GABA能突触的光镜和电镜分布。光镜下,免疫反应性终末集中在背浅角、I、II层。秋水仙碱一般不能显示细胞体的分布。然而,在两个成功的案例中,大多数标记细胞位于大细胞层,明胶质的腹侧,该区域具有较低密度的免疫反应性终末。其余标记神经元分散在I、II层。在电子显微镜水平上发现了多种突触排列。这些源于两种类型的标记端子。其中一个既有小的圆囊泡,也有大的密包囊泡。第二个细胞含有小的圆形多形性囊泡。一些免疫反应性GAD末端含有少量扁平囊泡。标记末端主要通过对称接触形成轴突突触。还观察到几种轴突排列。在大多数情况下,GAD末端(不包含密集覆盖的囊泡)与另一个包含囊泡的轮廓,包括被认为来自初级传入的扇形中央末端,是突触前的。另一群标记的GAD末端在突触后被发现到未标记的囊泡,包括中央末端。这些数据表明,三叉神经尾核的抑制性gaba能控制涉及突触前和突触后机制,并可能通过与上行投射神经元的直接接触以及与伤害性初级传入纤维的突触接触来介导。脊髓背角和三叉神经尾核神经元的伤害性信息传递受多种节段性和棘上性控制。药理学和电生理学研究表明,在这些控制组中存在生物胺5 -羟色胺和去甲肾上腺素,以及内源性阿片肽脑啡肽和啡肽(Basbaum和Fields, 1978, 1984;Basbaum et al., 1983;Basbaum, 1985)。(摘要删节为400字)
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GABA distribution in a pain-modulating zone of trigeminal subnucleus interpolaris. Acid phosphatase as a selective marker for a class of small sensory ganglion cells in several mammals: spinal cord distribution, histochemical properties, and relation to fluoride-resistant acid phosphatase (FRAP) of rodents. The intrinsic organization of the ventroposterolateral nucleus and related reticular thalamic nucleus of the rat: a double-labeling ultrastructural investigation with gamma-aminobutyric acid immunogold staining and lectin-conjugated horseradish peroxidase. Spinal and trigeminal projections to the parabrachial nucleus in the rat: electron-microscopic evidence of a spino-ponto-amygdalian somatosensory pathway. The fiber caliber of 5-HT immunoreactive axons in the dorsolateral funiculus of the spinal cord of the rat and cat.
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