期刊文献+

电离-飞行时间-质谱技术分析免疫大鼠血清和脑脊液的变化 被引量:1

The Diversity of Immunized Rats Serum and Cerebrospinal Fluid Analyzed by SELDI-TOF-MS
暂未订购
导出
摘要 目的研究神经免疫调节网络的上传信号及信号传导途径。方法应用表面加强激光解析电离-飞行时间-质谱技术(SELDI-TOF-MS)对不同免疫状态大鼠的外周血和脑脊液组分进行比对分析,确定信号分子。结果在免疫大鼠外周血清中发现了221个具统计学意义的差异峰,其中184个为正向表达峰值,37个峰为对照组表达增高的负向峰值。实验各组大鼠脑脊液中未见有统计学意义的特异性差异峰表达,在血清中检测到的特异性差异峰在脑脊液中也未见相对应的同步增高。结论在神经免疫调节网络中,由免疫调质直接透过血-脑脊液屏障构成网络传入通路的证据不足。 Objective To study the up delivering signal in neuroimmunoregu lation network and signal transduction pathway involved. Methods Contrast analysis was adopted in the ingredients of peripheral blood and cerebrospinal fluid of different immunized stage rats by surface enhanced laser desorption ionization-time of flight-mass spectrometry(SELDI-TOF MS)technique to determine signal molecules. Results A total of 221 significant different peaks were discovered in peripheral serum of immune animals by SELDI. Among the total of 221 different peaks, 184 peaks were high expressions in experimental groups and the others were reverse- increases in control groups. But no special different peaks which had statistical significance were found in cerebrospinal fluid of immune animals. Also corresponding equal increase couldn't be observed between the special different peaks tested in peripheral serum and cerebrospinal fluid of immune animals. Conclusions These foregoing results demonstrated that there was lack of evidence to verify immune modulator could carry out neuroimmune modulation by cerebrospinal fluid passing through blood brain barrier directly.
出处 《中国神经免疫学和神经病学杂志》 CAS 2008年第1期27-29,32,共4页 Chinese Journal of Neuroimmunology and Neurology
基金 自然科学基金资助项目(30540069,30771987)
关键词 神经免疫调节网络 传人通路 上传信号 neuroimmunoregulation network afferent pathway up-delivering signal
  • 相关文献

参考文献12

  • 1Besedovsky HO,Del Rey A.Immune-neuro-endocrine interactions:facts and hypotheses[J].Endocrine Reviews,1996,17(1):64.
  • 2Hortin GL.The MALDI-TOF mass spectrometric view of the plasma proteome and peptidome[J].Clin Chem,2006,52(7):1223-1237.
  • 3Mirgorodskaya E,Krogh TN,Roepstorff P.Characterization of protein glycosylation by MALDI-TOFMS[J].Methods Mol Biol,2000,146:273-292.
  • 4David M,Jonathan B,David BR,et al.Defence against infection agents[M].In:Immunology[M].7th ed.Canada:MOSBY,2006.247-298.
  • 5Tringali G,Dello Russo C,Preziosi P,et al.Interleukin-1 in the central nervous system:from physiology to pathology[J].Therapie,2000,55(1):171-175.
  • 6Dunn AJ.Cytokine activation of the HPA axis[J].Ann NY Acad Sci,2000,917:608-617.
  • 7Reyes TM,Coe CL.The proinflammatory cytokine network:interactions in the CNS and blood of rhesus monkeys[J].Am J Physiol,1998,274(1 Pt 2):R139-144.
  • 8Hopkins SJ.Central nervous system recognition of peripheral inflammation:a neural,hormonal collaboration[J].Acta Biomed,2007,78(suppl 1):231-247.
  • 9Bakhtiar R,Guan Z.Electron capture dissociation mass spectrometry in characterization of peptides and proteins[J].Biotechnol Lett,2006,28(14):1047-1059.
  • 10高扬,王建中,黄以光,林嘉友,李莉,王东,林荣安.抗原穴位注射增强机体免疫功能的神经免疫调节作用[J].中国医学科学院学报,2001,23(2):163-167. 被引量:4

二级参考文献18

共引文献6

同被引文献17

  • 1Van Dam AM, Bauer J,Tilders FJ, et al. Endotoxin-induced appearance of immunoreactive interleukin-1 beta in ramified microglia in rat brain: a light and electron microscopic study[J]. Neuroscience, 1995, 65 (3) : 815-826.
  • 2Bhattacharjee S, Maj umder N, Bhatta.charyya P, et al. Immunomodulatory role of arabinosylated lipoarabinomannan on Leishmania donovani infected murine macrophages[J]. Indian J Biochem Biophys, 2007, 44(5) : 366-372.
  • 3Johansen P, Senti G, Maria Martinez Gomez J, et al. Medication with antihistamines impairs allergen-specific immunotherapy in mice[J]. Clin Exp Allergy, 2008, 38(3): 512-519.
  • 4Konsman JP, Drukarch B, Van Dam AM. (Peri)vascular production and action of pro-inflammatory cytokines in brain pathology[J]. Clin Sci (Lond), 2007, 112(1):1-25.
  • 5Gill PS, Regrni A, Porter-Gill PA, et al. Interleukin-1 regulation of corticotropin-releasing factor (CRF), glucocorticoid receptor, c-fos and c-jun messenger RNA in the NPLC-KC cell line[J]. Mol Cell Endocrinol, 1998, 137(1): 31-39.
  • 6Zhang Y, Taveggia C, Melendez-Vasquez C, et al. Interleukin-11 potentiates oligodendroeyte survival and maturation, and myelin formation [J]. J Neurosei, 2006, 26(47): 12174-12185.
  • 7Reyes TM, Sawchenko PE. Involvement of the arcuate nucleus of the hypothalamus in interleukin-1-induced anorexia[J]. J Neurosci, 2002, 22(12): 5091 -5099.
  • 8Yi PL, Tsai CH, Lu MK, et al. Interleukin-lbeta mediates sleep alteration in rats with rotenone-induced parkinsonism[J]. Sleep, 2007, 30(4): 413-425.
  • 9Zubareva OE, Krasnova IN, Abdurasulova IN, et al. Effects of serotonin synthesis blockade on interleukin- 1 beta action in the brain of rats[J]. Brain Res, 2001, 915(2) : 244-247.
  • 10Copray JC, Mantingh I, Brouwer N, et al. Expression of interleukin-1 beta in rat dorsal root ganglia[J]. J Neuroimmunol, 2001, 118(2): 203-211.

引证文献1

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