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81.
中脑黑质是中缝核5-HT神经元最早期的靶组织之一。为了分析神经元对其靶细胞的作用是受某种特异性蛋白或神经营养因子的影响,本文用中缝核提取液作用于体外培养的中脑黑质神经元,证明了该提取液能促进中脑黑质神经元的存活和生长,其活性部分是分子量大于30kD的组份,经SDS-聚丙烯酰胺梯度凝胶电泳,呈现一条主带,分子量在43kD左右。 相似文献
82.
用免疫组化(HRP)、H^+表面透入、核团微量注射、微电泳及损毁等方法探讨了延髓腹侧表面中枢化学感受机制。结果表明它与其浅层核团:斜方体核、外周橄榄腹外侧核(LVPO)、斜方体后核、巨细胞旁外侧核和外侧网状核等有神经结构联系。表面H^+可能被上述核团的突起或胞体感受。非呼吸相关神经元(LVPO)与呼吸相关神经元,同样可能参与中枢化学感受而调节呼吸活动。 相似文献
83.
Karin Decker Ursula Disque-Kaiser Mathias Schreckenberger Stefan Reuss 《Cell and tissue research》1995,282(3):473-480
In the Royal College of Surgeons (RCS) rat, characterized by inherited retinal dystrophy, retinal projections to the brain were studied using anterograde neuronal transport of cholera toxin B subunit upon injection into one eye. The respective immunoreactivity was found predominantly contralateral to the injection site in the lateral geniculate nucleus, superior colliculus, nucleus of the optic tract, medial terminal nucleus of the accessory optic tract, and bilateral hypothalamic suprachiasmatic nuclei. Although terminal density was somewhat reduced in dystrophic rats, the projection patterns in these animals appeared similar to those seen in their congenic controls and were comparable to the visual pathways described for the rat previously. In dystrophic rats, the number of cell bodies exhibiting immunoreactivity to vasoactive intestinal polypeptide, viz. a population of suprachiasmatic neurons receiving major retinohypothalamic input, was reduced by one-third, and some differences were observed in the termination pattern of the geniculohypothalamic tract, as revealed by immunoreactivity to neuropeptide Y in the suprachiasmatic nucleus.This study was supported by grants from the DFG (Re 644/2-1) and the NMFZ, Mainz (to S.R.). 相似文献
84.
Mel Kunkle 《Molecular reproduction and development》1984,9(4):469-479
The sea urchin sperm nucleus rapidly loses its conoid morphology and becomes more voluminous and spherical upon its entry into the egg cytoplasm during fertilization. This investigation has attempted to determine what are the structural constraints placed upon the sperm nucleus, so that further investigations might determine the egg cytoplasmic factors that are responsible for modifying nuclear morphology. Isolated sperm nuclei were subjected to various extraction procedures in order to remove the majority of the proteins (histones) and also the DNA; subsequently, the residual structures were processed for and examined by electron microscopy. The data presented in this investigation demonstrate the removal of the sperm nuclear histones plus other nonhistone proteins has no effect on the conoid morphology of the sperm nucleus, yet this protein removal has a profound effect on the structure of the nuclear chromatin. It is also shown that removal of the majority of the nuclear DNA has no effect on the shape of the sperm nucleus. These results indicate that there are other components (possibly a nuclear matrix) associated with the sperm nucleus that are responsible for maintaining its conoid morphology. 相似文献
85.
Ikuko Shihira-Ishikawa 《Protoplasma》1984,122(1-2):27-34
Summary Chromosome behavior preceding secondary nuclei formation within a giant primary nucleus (50–100 m in diameter) inAcetabularia calyculus was observed by the fluorescence emitted from 4-6-diamidino-2-phenylindole (DAPI)-stained DNA.Throughout the period when the large nucleolus was present in the primary nucleus, thin chromonemata were observed twining around the nucleolus. Nuclear division was initiated by degeneration of the sausage-shaped nucleolus into a number of spherical subunits soon after the initiation of cap formation. On the fourth day of cap development, the chromonemata became thicker and chromomeres appeared. They accumulated adjacent to the single spherical nucleolus. The lump of chromosomes became loosened and thick chromosomes were scattered in the nucleus. The peculiar shapes of chromosomes which suggest the existence of chiasmata were frequently observed until the chromosome segregation started. This sequence of chromosome behavior seems to be the prophase of meiotic division. Chromosome segregation, the first meiotic division, occurred on the seventh day of cap development, probably being accompanied by the second meiotic division. Immediately after nuclear division of the primary nucleus, secondary nuclei were formed and cyst formation started 24 hours after repeated mitoses of the secondary nuclei. 相似文献
86.
大鼠尾核头部对中缝大核神经元单位活动的影响及其可能途径 总被引:1,自引:0,他引:1
用玻璃微电极细胞外记录大鼠中缝大核(NRM)神经元的单位放电。共记录277个细胞,NRM 神经元自发放电频率大都在每秒0.5—20次之间,平均为6.41 Hz。其中221个神经元被电刺激尾所激活,35个被抑制,21个无明显变化。NRM 神经元对躯体刺激的反应类型与自发放电的特征有关,兴奋型神经元的自发放电频率较低((?)=4.96Hz),而抑制性神经元的自发放电频率较高((?)=15.03 Hz)。在24例兴奋型神经元中,刺激尾核头部能够激活大多数 NRM 神经元的自发放电和抑制其伤害感受性反应。导水管周围灰质微量注射纳洛酮(2.5ug/0.5μl,n=15)。能够明显阻断刺激尾核头部激活 NRM 神经元自发放电和抑制伤害感受性反应的效应。 相似文献
87.
88.
Rochelle S. Cohen Ph.D. Sookja Kim Chung Donald W. Pfaff 《Cell and tissue research》1984,235(3):485-489
Summary Estrogen is accumulated from the blood by nerve cells in the ventromedial nucleus of the hypothalamus and can facilitate female reproductive behavior by acting on this region of the brain. This cell group was examined in ovariectomized female rats, given estrogen or control treatment, by use of light and electron microscopy. A significantly greater portion of the nerve cells in the estrogen-treated animals had protuberances on their nucleolar surfaces, apparent under the light microscope. The fine structure of such protuberances included dense, aggregated material, which is shown to contain DNA by the sodium tungstate staining technique. Because increased numbers of such protuberances were found in nuclei of cells of the experimental group where previous studies demonstrated a significant increase in ultrastructural signs of biosynthetic activity, they may be associated with increased RNA synthesis. Thus, they could indicate, ultrastructurally, increased synthetic rates for RNA in nerve cells through which estrogen promotes reproductive behavior. 相似文献
89.
Immunocytochemistry and ultrastructure of the neuropil located ventral to the rat supraoptic nucleus
C. R. Yulis B. Peruzzo Prof. E. M. Rodríguez M.D. Ph.D. 《Cell and tissue research》1984,236(1):171-180
Summary The neuropil located ventral to the SON was investigated by the use of immunoperoxidase staining for neurophysins, oxytocin and vasopressin, and electron miroscopy. The study was performed in six groups of rats: 1) control; 2) infusion of isotonic saline into the CSF; 3) infusion of hypertonic saline into the CSF; 4) drinking hypertonic saline for 4 days; 5) same as group 4 but injection of colchicine into the CSF on second day of dehydration; 6) salt loading for 3 months. In the control rats the ventral neuropil contained a few immunoreactive processes, the general morphology of which was completely different from that of the neurosecretory axons emerging from the SON at its dorsal aspect. In rats of groups 3 to 6 the ventral processes (VP) became loaded with neurosecretory granules, whereas the perikarya and axons were depleted. Based on their general morphology and reactivity pattern it is suggested that the VP are dendrites. Most of these dendrites were embedded in a glial cushion formed by the processes of a particular type of marginal glia. Some of these dendrites enveloped an arteriole penetrating the optic tract. All VP were rich in synaptic contacts. The possibility that the VP of neurosecretory cells may be functionally related to the subarachnoid CSF and the arteriolar blood flow is discussed.Supported by Grant RS-82-18 from Direccíon de Investigaciones, Universidad Austral de Chile 相似文献
90.
Dr. O. E. Millhouse 《Cell and tissue research》1978,191(3):473-491
Two sorts of neurons are recognized in Golgi impregnations of the rat ventromedial hypothalamic nucleus (HVM). The two cell types, category I and II neurons, are differentiated on the basis of their somatic, dendritic, and axonal characteristics. Category I neurons form most of the neuronal population and are located throughout HVM. The small number of category II neurons that have been studied occur in lateral HVM. Two varieties of neuronal profile, "common" and "uncommon cells", are seen in thin sections of HVM. The "uncommon cells", in comparison with the "common ones", appear to have a larger soma, a more electron-dense cytoplasmic matrix, an abundance of Nissl bodies, and a population of dense-cored vesicles (100--130 nm in diameter). Some of the somata and proximal dendrites of "common", but not "uncommon" cells, are wrapped in multiple layers of astrocytic processes. Although the correlation is tentative, it is argued that category I neurons correspond to "common cells" and category II, to "uncommon cells". One possible implication of this correspondence is discussed regarding neuronal alteration in response to change in the endocrinological environment of the brain. 相似文献