期刊文献+

不同高渗刺激对下丘脑视上核和室旁核神经元功能状态的影响 被引量:2

The effect of differential hypertonic stimuli on the functional status of supraoptic nucleus and paraventricular nucleus in hypothalamus
原文传递
导出
摘要 视上核和室旁核是下丘脑中两个与渗透压感受、加压素分泌以及水平衡调节密切相关的核团。为了搞清楚这两个核团在不同刺激条件下的激活状态和反应特性,本文采用慢性和急性渴觉刺激模型,免疫组化和ELISA检测相结合的方法对视上核和室旁核内的Fos表达以及血清加压素水平进行了测定。慢性刺激组动物给予2% NaCl盐水持续2d,而急性刺激组动物皮下直接注射2mol/L的NaCl盐水2.5ml,两组动物的进食保持正常。结果表明,这两种不同的刺激方式引发的Fos表达模式基本相似,视上核、室旁核、下丘脑外侧区以及正中视前区、穹窿下器和终板血管下器等区都检测到大量的Fos阳性胞核。但Fos染色的深浅程度和Fos胞核的数量却在两组之间有明显的差异:急性组胞核浓染,数量多;慢性组胞核淡染,数量少。ELISA检测的结果与此相反,急性组动物血清中加压素的水平很低,与对照组没有明显差异;而慢性组动物血清中的加压素水平很高,几乎是对照组的2倍。以上结果提示,下丘脑神经元的激活和分泌功能与刺激方式密切相关,选择单一刺激模式、单一指标来揭示和衡量其功能状态是缺乏说服力的。 Supraoptic nucleus (SON) and paraventricular nucleus (PVN) are two hypothalamic nuclei essentially involved in osmolarity sensing, vasopressin secretion and subsequent regulation of water balance. To clearly understand the activating and functioning properties of these two nuclei under differential stimuli, we employed chronic and acute thirsty animal models and examined the expression of Fos in neurons and the concentration of vasopressin in blood by immunohistochemical staining and ELISA assay, respectively. Rats were given access to food and a 2% NaCl solution, but not water for 48 h to induce chronic thirst. 2.5 ml of 2 mol/L NaCl solution was s. c injected to make acute thirsty rats. The results showed that the expression patterns of Fos under these two stimuli were quite similar, with preferential expressing in SON, PVN, lateral hypothalamic area, median preoptic nucleus, subfomical nucleus and organum vasculosum of the lamina terminalis. The expressing intensity and the number of Fos positive nuclei were, however, quite different between these two groups, with more densely-stained Fos and higher number of Fos positive nuclei in the acute group. By contrast, the vasopressin level in chronic group was significantly higher than that in control, while its level in acute group was nearly the same to control. These results suggest that the level of vasopressin in blood is not synchronized with Fos expression in SON and PVN, and it is less persuasive to choose the sole stimulus and the sole parameter to disclose and evaluate the activating and secreting properties of hypothalamic neurons.
出处 《神经解剖学杂志》 CAS CSCD 北大核心 2008年第5期458-462,共5页 Chinese Journal of Neuroanatomy
基金 国家自然科学基金(Nos30871004,30400154,30500154)资助项目
关键词 视上核 室旁核 FOS ELISA 刺激 supraoptic nucleus, paraventricular nucleus, Fos, ELISA assay, stimuli
  • 相关文献

参考文献10

  • 1陈宜张.内环境恒定与神经内分泌功能.韩济生主编,神经科学纲要,1993年第一版,666-688.
  • 2Oldfield B J, Bicknell RJ, McAllen RM et al. Intravenous hypertonic saline induces Fos immunoreaetivity in neurons throughout the lamina terminalis. Brain Res, 1991 ;561:151 -156.
  • 3Ding YQ, Lu BZ, Guan ZL et al. Neurokinin B receptor ( NK3 ) - containing neurons in the paraventricular and supraoptic nuclei of the rat hypothalamus synthesize vasopressin and express Fos following intravenous injection of hypertonic saline. Neuroscienee, 1999 ;91 : 1077 - 1085.
  • 4Taylor AC, McCarthy JJ, Stocker SD. Mice lacking the transient receptor vanilloid potential 1 channel display normal thirst responses and central Fos activation to hypernatremia. Am J Physiol Regul Integr Comp Physiol, 2008 ;294 : 1285 - 1293.
  • 5Sharif Naeini R, Witty MF, Seguela Pet al. An N-terminal variant of Trpvl channel is required for osmosensory transduction. Nat Neurosci, 2006 ;9:93 - 98.
  • 6Zenz R, Eferl R, Scheinecker C et al. Activator protein 1 (Fos/ Jun) functions in inflammatory bone and skin disease. Arthritis Res Ther, 2008 ; 10:201 - 210.
  • 7Ding YD, Shi J, Su LY et al. Intracerebroventricular injection of senktide-induced Fos expression in vasopressin-containing hypothalamic neurons in the rat. Brain Res, 2000;882:95 -102.
  • 8王红,张远强,丁玉强,宿长军,郎兵.神经激肽B受体在小鼠中枢神经系统内的定位分布[J].解剖学报,2002,33(1):21-27. 被引量:5
  • 9Bourque CW, Ciura S, Trudel E et al. Neurophysiological characterization of mammalian osmosensitive neurons. Exp Physiol, 2007 ;92:499 -505.
  • 10Cohen DM. The transient receptor potential vanilloid-responsive 1 and 4 cation channels: role in neuronal osmosensing and renal physiology. Curr Opin Nephrol Hypertens, 2007 ; 16:451 - 458.

二级参考文献2

共引文献4

同被引文献27

  • 1Kalra SP. Interacting appetite-regulating pathways in the hypotha- lamic regulation of body weight [ J]. Endocr Rev, 1999, 20:68 - 100.
  • 2De Lecea L, kilduff TS, Peyron C, et al. The hypothalamus-specific peptides with neuroexcitatory activity [ J]. Proc Natl Acad Sci U S A, 1998, 95:322-327.
  • 3Sakurai T, Amemiya A, Ishii M, et al. Orexins and orexin receptots : a family of hypothalamic neuropeptides and G protein-coupled receptors that regulate feeding behavior [J]. J Cell, 1998, 92:573 -585.
  • 4Flier JS, Maratos FE. Obesity and the hypothalamus: novel peptides for new pathways [J]. Cell, 1998, 92:437-440.
  • 5Okumura T, Takakusaki K. Role of orexin in central regulation of gastrointestinal functions[J]. J Gastroenterol, 2008, 43 : 652 - 660.
  • 6Cai XJ, Evans ML, Lister CA, et al. Hypoglycemia activates orexin neurons and selectively increases hypothalamic orexin-B levels : responses inhibited by feeding and possibly mediated by the nucleus of the solitary tract [ J]. Diabetes, 2001, 50 : 105 - 112.
  • 7Briski KP, Sylvester PW. Hypothalamie orexin-A-immunopositive neurons express Fos in response to central glucopenia [ J]. Neuroreport, 2001, 12:531 -534.
  • 8Diano S, Horvath B, Urbanski HF, et al. Fasting activates the non- human primate hypocretin (orexin) system and its postsynaptic targets [ J]. Endocrinology, 2003, 144:3774 - 3778.
  • 9Kurose T, Ueta Y, Yamamoto Y, et al. Effects of restricted feeding on the activity of hypothalamic Orexin (OX) -A containing neurons and OX2 receptor mRNA level in the paraventricular nucleus of rats [J]. RegulPept, 2002, 104:145 -151.
  • 10Cai XJ, Widdowson PS, Harrold J, et al. Hypothalamic orexin expression: modulation by blood glucose and feeding [J]. Diabetes, 1999,48:2132 - 2137.

引证文献2

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部