期刊文献+

X线全脑照射对小鼠脑微血管及血脑屏障的影响 被引量:6

Influence of whole-brain irradiation by X-ray in capillaries and blood-brain barrier in mouse brains
原文传递
导出
摘要 目的 探讨放射性脑损伤中可能存在的脑微血管损伤及血脑屏障破坏情况.方法 70只8周龄雄性BALB/C小鼠应用随机数字表分为照射组和对照组,其中照射组行X线全脑照射(单次10 Gy剂量).分别在照射后1、7、30、90、180 d取材(每组每个观察点7只小鼠),采用HE染色观察脑组织微血管形态的改变,采用免疫荧光染色检测全脑第Ⅷ因子相关抗原(vWF)及ZO1蛋白的表达变化.结果 照射后1d开始,照射组小鼠即可见微血管有扩张紊乱,血管内皮细胞与基膜分离,但血管壁仍较薄,血管周隙正常;照射后7d出现血管壁增厚、管腔狭窄;照射后30 d管腔狭窄逐渐加重甚至闭塞,部分血管可见血栓形成,血管周隙开始增大,并持续至180d.与对照组比较,照射后各时间点照射组小鼠脑组织vWF、ZO1蛋白表达阳性细胞数明显减少(vWF:1 d:23.17±2.93 vs 15.80±2.39,7 d:21.25±2.33 vs 11.60±2.30,30 d:19.78±2.16vs 8.20±1.64,90 d:17.21±3.31 vs6.00±2.12,180 d:16.98±1.92 vs 3.80±2.59;ZO1:1 d:26.17±3.31 vs 15.40±1.82,7 d:23.20±2.93vs12.00±1.58,30 d:20.88±2.20vs 9.10±2.55,90 d:18.32±1.87 vs 6.20±1.92,180 d:17.50±1.91vs 2.40±1.52),差异均有统计学意义(P<0.05);且随着时间延长,照射组小鼠脑组织vWF、ZO1蛋白阳性表达细胞数亦逐渐减少,各时间点间比较差异亦均有统计学意义(P<0.05).结论 X线全脑照射能诱导小鼠脑微血管持续损伤及血脑屏障紧密连接破坏,导致放射性脑损伤的发生发展. Objective To investigate the possible presence of radiation brain injury (RBI) in vascular injury and blood-brain barrier (BBB) damage.Methods Seventy 8 weeks old male BALB/C mice were randomly divided into irradiation group and control group;mice in the two groups received whole-brain exposure with a single dose of 10 Gy irradiation or sham irradiation.Tissue samples were taken 1,7,30,90 and 180 days after irradiation (7 mice in each time point per group);HE staining was used to observe the microvascular morphology and density changes;immune-fluorescence staining was used to visualize the differential expressions of factor Ⅷ related antigen (vWF) and zonulaoccludens-1 (ZO-1).Results Micro-vascular disorders began to appear from the first day of irradiation,deteriorating with time extension gradually.After the X-ray irradiation exposure,the protein expressions of vWF and ZO-1 in the irradiation group were significantly decreased as compared with those in the control group 1,7,30,90 and 180 days after irradiation (vWF:23.17±2.93 vs 15.80±2.39,21.25±2.33 vs 11.60±2.3,19.78±2.16 vs 8.20±1.64,17.21±3.31 vs 6.00±2.12 and 16.98±1.92 vs 3.80±2.59;ZO1:26.17±3.31 vs 15.40±1.82,23.20±2.93 vs 12.00±1.58,20.88±2.20 vs 9.10±2.55,18.32±1.87 vs 6.20±1.92 and 17.50±1.91 vs 2.40±1.52,P〈0.05);besides,the decreased expression ofvWF and ZO-1 in the irradiation group showed a time-depended manner,with significant differences between each two time points (P〈0.05).Conclusion X-rays may induce persistent micro-vascular injury and destroyed BBB tight junctions,which may be closely related to the occurrence and development of RBI.
出处 《中华神经医学杂志》 CAS CSCD 北大核心 2015年第5期454-459,共6页 Chinese Journal of Neuromedicine
基金 国家自然科学基金(81271386)
关键词 X线照射 放射性脑损伤 微血管 血脑屏障 X-ray Radiation brain injury Micro-vascular Blood-brain barrier
  • 相关文献

参考文献15

  • 1Regal PJ, Di Stefano AL, Berzero G, et al. Acute late-onset encephalopathy after radiotherapy: an unusual life-threatening complication[J]. Neurology, 2014, 82(12): 1102.
  • 2Strenger V, Lackner H, Mayer R, et al. Incidence and clinical course of radionecrosis in children with brain tumors. A 20-year longitudinal observational study [J]. Strahlenther Onkol, 2013, 189 (9): 759-64.
  • 33upta M, Rana P, Trivedi R, et al. Comparative evaluation of brain neurometabolites and DTI indices following whole body and ~ranial irradiation: a magnetic resonance imaging and spectroscopystudy[J]. NMR Biomed, 2013, 26(12): 1733-1741.
  • 4Coderre JA, Morris GM, Micca PL, et al. Late effects of radiation on the central nervous system: role of vascular endothelial damage and glial stem cell survival[J]. Radiat Res, 2006, 166(3): 495-503.
  • 5Benjaminsen IC, Graft BA, Brurberg KG, et al. Assessment of tumor blood perfusion by high-resolution dynamic contrast-enhanced MRI: a preclinical study of human melanoma xenografts[J]. Magn Reson Med, 2004, 52(2): 269-76.
  • 6Brown WR, Blair RM, Moody DM, et al. Capillary loss precedes the cognitive impairment induced by fractionated whole-brain irradiation: a potential rat model of vascular dementia[J]. J Neurol Sci, 2007, 257(1-2): 67-71.
  • 7Tanino T, Kanasaki Y, Tahara T, et al. Radiation-induced microbleeds after cranial irradiation: evaluation by phase-sensitive magnetic resonance imaging with 3.0 tesla[J]. Yonago Acta Med, 2013, 56(1): 7-12.
  • 8Lee WH, Cho HJ, Sormtag WE, et al. Radiation attenuates physiological angiogenesis by differential expression of VEGF, Ang-1, tie-2 and Ang-2 in rat brain[J]. Radiat Res, 2011, 176(6): 753-760.
  • 9Liu Y, Xiao S, Liu J, et al. An experimental study of acute radiation-induced cognitive dysfunction in a young rat model [J]. AJNR Am J Neuroradiol, 2010, 31(2): 383-387.
  • 10Nonoguchi N, Miyatake S, Fukumoto M, et al. The distribution of vascular endothelial growth factor-producing cells in clinical radiation necrosis of the brain: pathological consideration of their potential roles[J]. J Neurooncol, 2011, 105(2): 423-431.

二级参考文献8

共引文献13

同被引文献84

  • 1宋凯,王亚婷,熊凡捷,黄爱玲,张虹.针灸调节学习记忆损伤长时程增强机制的研究进展[J].中华中医药学刊,2022,40(3):84-89. 被引量:9
  • 2章龙珍,曹远东,陈勇,于常州,庄明.全脑常规分割外照射对大鼠血脑屏障药物通透性的影响[J].中华放射肿瘤学杂志,2006,15(3):229-232. 被引量:17
  • 3Li YQ, Chen P, Haimovitz-Friedman A, et al. Endothelial apoptosis initiates acute blood-brain barrier disruption after ionizing radiation [ J ]. Cancer Res, 2003, 63 (18) :5950-5956.
  • 4Yuan H, Gaber MW, Boyd K, et al. Effects of fractionated radiation on the brain vasculature in a murine model:blood-brain barrier permeability, astrocyte proliferation, and ultrastructural changes [Jl. Int J Radiat Oncol Biol Phys, 2006, 66 (3):860- 866. DOI : 10. lO16/j, ijrobp. 2006.06. 043.
  • 5Nakamura K, Tan F, Li ZJ, et al. NGF activation of TrkA induces vascular endothelial growth factor expression via induction of hypoxia-inducible factor-lct[ J]. Mol Cell Neurusci, 2011, 46 (2) :498-506. DO1:10. 1016/j. mcn. 2010.12. 002.
  • 6Morris R. Developments of a water-maze procedure for studying spatial learning in the rat [J~. J Neurosci Methods, 1984, 11 ( 1 ) :47-60. DOI : 10.1016/0165-0270 ( 84 ) 90007-4.
  • 7Warrington JP, Ashpole N, Csiszar A, et al. Whole brain radiation-induced vascular cognitive impairment: mechanisms and implications [J]. J Vasc Res, 2013, 50(6) :445-457. DOI:10. 1159/000354227.
  • 8Fisher M. Pericyte signaling in the neurovascular unit [ J ]. Stroke, 2009, 40 ( 3 ) : S13-S15. DOI : 10. 1161/STROKEAHA. 108.533117.
  • 9Achanta P, Fuss M, Martinez JL Jr. Ionizing radiation impairs the formation of trace fear memories and reduces hippocampal neurogenesis [Jl. Behav Neurosci, 2009, 123 (5) :1036-1045. DOI : 10. 1037/a0016870.
  • 10Raber J, Rola R, LeFevour A, et al. Radiation-induced cognitive impairments are associated with changes in indicators of hippocampal neurogenesis [ J]. Radiat Res, 2004, 162 ( 1 ) :39- 47. DOI:10. 1667/rr3206.

引证文献6

二级引证文献44

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