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Influence of ovarian steroids on the ultrastructural plasticity of the adult rat supraoptic nucleus induced by central administration of oxytocin.卵巢类固醇对催产素中枢给药诱导的成年大鼠视上核超微结构可塑性的影响。
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Immunohistological Localization of Tenascin in the Developing and Lesioned Adult Mouse Optic Nerve.肌腱蛋白在发育中和成年损伤小鼠视神经中的免疫组织学定位
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Divalent Cations Modulate the Inhibitory Substrate Properties of Murine Glia-derived J1-160 and J1-180 Extracellular Matrix Glycoproteins for Neuronal Adhesion.二价阳离子调节小鼠胶质细胞衍生的J1-160和J1-180细胞外基质糖蛋白对神经元黏附的抑制底物特性。
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Lactation-induced plasticity in the supraoptic nucleus augments axodendritic and axosomatic GABAergic and glutamatergic synapses: an ultrastructural analysis using the disector method.哺乳期诱导的视上核可塑性增强轴突树突和轴突胞体的γ-氨基丁酸能和谷氨酸能突触:使用分割法的超微结构分析
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Expression of high levels of the extracellular matrix glycoprotein, tenascin-C, in the normal adult hypothalamoneurohypophysial system.细胞外基质糖蛋白肌腱蛋白-C在正常成年下丘脑神经垂体系统中的高水平表达。
J Comp Neurol. 1997 Mar 17;379(3):386-98. doi: 10.1002/(sici)1096-9861(19970317)379:3<386::aid-cne5>3.0.co;2-#.
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The noradrenergic innervation of identified hypothalamic magnocellular somata and its contribution to lactation-induced synaptic plasticity.已鉴定的下丘脑大细胞神经元的去甲肾上腺素能神经支配及其对泌乳诱导的突触可塑性的贡献。
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The glutamatergic innervation of oxytocin- and vasopressin-secreting neurons in the rat supraoptic nucleus and its contribution to lactation-induced synaptic plasticity.大鼠视上核中分泌催产素和加压素的神经元的谷氨酸能神经支配及其对泌乳诱导的突触可塑性的作用。
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Physiologically-linked structural plasticity of inhibitory and excitatory synaptic inputs to oxytocin neurons.催产素神经元抑制性和兴奋性突触输入的生理相关结构可塑性。
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Putative factors implicated in the structural plasticity of the hypothalamo-neurohypophysial system.与下丘脑 - 神经垂体系统结构可塑性相关的假定因素。
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Nerve-dependent expression of high polysialic acid neural cell adhesion molecule in neurohypophysial astrocytes of adult rats.成年大鼠神经垂体星形胶质细胞中高聚唾液酸神经细胞黏附分子的神经依赖性表达。
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控制下丘脑神经垂体系统活动依赖性结构可塑性的因素。

Factors governing activity-dependent structural plasticity of the hypothalamoneurohypophysial system.

作者信息

Theodosis D T, El Majdoubi M, Pierre K, Poulain D A

机构信息

Neurobiologie Morphofonctionnelle, INSERM U. 378, Inst. F. Magendie, Bordeaux, France.

出版信息

Cell Mol Neurobiol. 1998 Apr;18(2):285-98. doi: 10.1023/a:1022577105819.

DOI:10.1023/a:1022577105819
PMID:9535294
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11560227/
Abstract
  1. The adult hypothalamoneurohypophysial system (HNS) undergoes reversible morphological changes in response to physiological stimulation. 2. In the hypothalamus, stimulation of neurohormone secretion results in reduced astrocytic coverage of oxytocinergic somata and dendrites so that their surfaces become directly juxtaposed. Concurrently, there is a significant increase in the number of GABAergic, glutamatergic. and noradrenergic synapses impinging on the neurons. 3. In the neurohypophysis, stimulation induces retraction of pituicyte processes from the perivascular area and enlargement and multiplication of neurosecretory terminals. 4. These neuronal-glial and synaptic changes are reversible with cessation of stimulation, thus rendering the HNS an excellent model to study physiologically linked structural neuronal plasticity in the adult CNS. 5. We still do not know the cellular mechanisms and factors underlying such plasticity. Recent studies indicate, however, that the adult HNS expresses molecular characteristics normally associated with histogenesis and/or tissue reorganization in developing or regenerating neural systems. They include expression of cell adhesion molecules such as the highly sialylated isoform of the neural cell adhesion molecule, PSA-NCAM, and the glycoproteins, F3 and tenascin-C. 6. The expression of PSA-NCAM and tenascin-C does not show striking differences in terms of age, sex or physiological condition but that of F3 varies considerably with neurohypophysial stimulation. 7. We postulate that such molecular features allow magnocellular neurons and their glia to undergo neuronal-glial and synaptic plasticity throughout life, provided the proper stimulus intervenes. 8. Thus, in the hypothalamic nuclei, centrally released oxytocin acting in synergy with steroids can induce such plasticity, while adrenaline, acting through beta-adrenergic mechanisms, does so in the neurohypophysis.
摘要
  1. 成人下丘脑神经垂体系统(HNS)会因生理刺激而发生可逆的形态学变化。2. 在下丘脑中,神经激素分泌的刺激会导致催产素能神经元胞体和树突的星形胶质细胞覆盖减少,从而使它们的表面直接并列。同时,作用于这些神经元的γ-氨基丁酸能、谷氨酸能和去甲肾上腺素能突触数量显著增加。3. 在神经垂体中,刺激会诱导垂体细胞突起从血管周围区域回缩,以及神经分泌终末的增大和增殖。4. 随着刺激的停止,这些神经元-胶质细胞和突触变化是可逆的,因此使HNS成为研究成年中枢神经系统中生理相关的结构性神经元可塑性的理想模型。5. 我们仍然不知道这种可塑性背后的细胞机制和因素。然而,最近的研究表明,成年HNS表达通常与发育或再生神经系统中的组织发生和/或组织重组相关的分子特征。它们包括细胞粘附分子的表达,如神经细胞粘附分子的高唾液酸化异构体PSA-NCAM,以及糖蛋白F3和腱生蛋白-C。6. PSA-NCAM和腱生蛋白-C的表达在年龄、性别或生理状况方面没有显著差异,但F3的表达随神经垂体刺激而有很大变化。7. 我们推测,只要有适当的刺激介入,这些分子特征使大细胞神经元及其胶质细胞在一生中都能经历神经元-胶质细胞和突触可塑性。8. 因此,在下丘脑核中,中枢释放的催产素与类固醇协同作用可诱导这种可塑性,而肾上腺素通过β-肾上腺素能机制在神经垂体中发挥作用。