山东大学耳鼻喉眼学报 ›› 2016, Vol. 30 ›› Issue (3): 93-95.doi: 10.6040/j.issn.1673-3770.0.2015.517

• 论著 • 上一篇    下一篇

rh-bFGF对缺血再灌注损伤兔视网膜组织中谷氨酸表达的影响

邵宏超,葛嫣然   

  1. 华北理工大学附属医院眼科, 河北 唐山 063000
  • 收稿日期:2015-12-07 出版日期:2016-06-16 发布日期:2016-06-16
  • 通讯作者: 葛嫣然. E-mail: xinyigeyanran@163.com E-mail:shaohongchao@126.co
  • 作者简介:邵宏超. E-mail: shaohongchao@126.co
  • 基金资助:
    唐山市科技计划项目(12140209A-45)

Effect of rh-bFGF on the level of glutamic acid in retinal tissue of rabbits with ischemia-reperfusion injury.

SHAO Hongchao, GE Yanran   

  1. Department of Ophthalmology, North China University of Sciense and Technology, Tangshan 063000, Hebei, China
  • Received:2015-12-07 Online:2016-06-16 Published:2016-06-16

摘要: 目的 探讨重组人碱性成纤维细胞生长因子(rh-bFGF)对缺血再灌注损伤(IRI)兔视网膜组织中谷氨酸水平的影响。 方法 将66只大耳白兔分为A组[视网膜缺血再灌注损伤(RIRI)组]30只、B组(RIRI+rh-bFGF组)30只和C组(正常假手术组)6只;缺血再灌注后6、12、24、48、72 h,A、B 2组又依次分为5个亚组,每组6只。造模初期,A、B组分别于玻璃体腔内注入相同剂量的生理盐水和rh-bFGF溶液,并于制模后5个时间点处死,摘取眼球。C组给予前房穿刺,无其他操作,处死后摘除眼球。观察3组视网膜病理形态学的变化,并检测视网膜谷氨酸含量。 结果 A组视网膜出现高度水肿,层次紊乱,细胞结构疏松,视网膜节细胞(RGC)出现空泡样变性,神经节细胞数目减少;B组视网膜结构层次和细胞组织变化与A组大致相同,但其损害程度较A组明显减轻;C组视网膜各层次清晰,细胞平行排列且形态规则,RGC呈单层排列、规则,无空泡变性。缺血再灌注后6、12、24、48、72 h,A、B 2组视网膜谷氨酸含量均显著高于C组(P<0.01)。与A组比较,B组各时间点谷氨酸含量明显降低(P<0.01)。 结论 rh-bFGF对兔视网膜损伤具有保护作用,其机制可能与抑制细胞凋亡、降低谷氨酸含量有关。

关键词: 缺血再灌注, 谷氨酸, 视网膜, 重组人碱性成纤维细胞生长因子

Abstract: Objective To explore the effect of recombinant human basic fibroblast growth factor(rh-bFGF)on the level of glutamic acid in retinal tissue of rabbits with ischemia-reperfusion injury. Methods Sixty-six white rabbits were divided into group A[retinal ischemia-reperfusion injury(RIRI)group, n=30], group B(RIRI+rh-bFGF, n=30)and group C(sham-operation group, n=6). Groups A and B were also assigned into 5 subgroups respectively 6, 12, 24, 48 and 72 h after ischemia-reperfusion injury, 6 rabbits in each group. The same dose of normal saline and rh-bFGF solution were respectively injected into the vitreous cavity of rabbits in groups A and B at the early stage of molding. The rabbits were killed and their eyeballs were taken out at five time points after molding. Puncture of anterior chamber was given in group C, and no other operations were given. The rabbits in group C were killed and their eyeballs were taken out. The changes of retinal pathomorphism were observed, and the contents of glutamic acid were detected. Results In group A, the retina was characterized by high edema, disordered levels and loose cell structure. Vacuole degeneration was present in retinal ganglion cells(RGC)and and the number of ganglion cells decreased. In group B, the retinal structure changes were similar to that in A group, but the damage was significantly milder than that in group A. In group C, the levels of retina were clear, the cells were arranged in parallel and retinal morphology was reguLar. RGC was reguLarly arranged in a single layer, and no vacuole degeneration occurred. 6, 12, 24, 48 and 72 h after ischemia-reperfusion injury, the contents of glutamic acid in groups A and B were dramatically higher than that in group C(P<0.01). When compared with group A, the contents of glutamic acid in group B decreased notably at different time points(P<0.01). Conclusion rh-bFGF has a protective effect on retinal injury in rabbits, and its mechanism may be related to the inhibition of cell apoptosis and decreased content of glutamic acid.

Key words: Recombinant human basic fibroblast growth factor, Retina, Ischemia-reperfusion injury, Glutamic acid

中图分类号: 

  • R774.1
[1] Wang X D, Kashii S, Zhao L, et al. Vitamin B6 protects primate retinal neurons from ischemic injury[J]. Brain Res, 2002, 940(1-2):36-43.
[2] 杨丹, 余德立, 余资江. 视网膜缺血再灌注损伤的机制及药物治疗进展[J]. 局解手术学杂志, 2012, 21(5):561-563. YANG Dan, YU Deli, YU Zijiang. Progress of drug therapy for retinal ischemia reperfusion injury and its mechanisms[J]. J Reg Ana Ope Surgery, 2012, 21(5):561-563.
[3] 陈放, 徐珊, 吕伟红, 等. 糖尿病大鼠视网膜氧化应激损伤及葛根素的干预作用[J]. 眼科新进展, 2012, 32(1):15-19. CHEN Fang, XU Shan, L(¨overU)Weihong, et al. Retinal oxidative damage in diabetic rats and protective effect of puerarin on its[J]. Rec Adv Ophthalmol, 2012, 32(1):15-19.
[4] Vorwerk C K, Zurakowski D, McDermott L M, et al. Effects of axonal injury on ganglion cell survival and glutamate homeostasis[J]. Brain Res BuLl, 2004, 62(6):485-490.
[5] 刘朋朋, 张琦. 外源性H2S预处理对大鼠RIRI细胞凋亡的影响[J]. 国际眼科杂志, 2012, 12(1):33-35. LIU Pengpeng, ZHANG Qi. Effect of exogenous hydrogen suLfide preconditioning on cell apoptosis in rat retinal ischemia-reperfusion injury[J]. Inter J Ophthalmol, 2012, 12(1):33-35.
[6] 刘哲峰, 刘英奇, 张希兰, 等. 视网膜对缺血耐受时间的实验研究[J]. 眼科研究, 1988, 6(1):12-14.
[7] FouLds W S, Johnson N F. Rabbit electroretinogram during recovery from induced ischaemia[J]. Trans Ophthalmol Soc U K, 1974, 94(2):383-393.
[8] 李瑞恒, 王丽英, 王建平, 等. 复方樟柳碱联合葛根素治疗视网膜血管阻塞性疾病25例[J]. 山东大学耳鼻喉眼学报, 2010, 24(5):71-71, 75.
[9] Aikawa H, Tomita H, Ishiguro S, et al. Increased expression of glutamate binding protein mRNA in rat retina after ischemia-reperfusion injury[J]. Tohoku J Exp Med, 2003, 199(1):25-33.
[10] 包秀丽, 艾育德. 视网膜缺血性损伤中兴奋性氨基酸的变化[J]. 眼科新进展, 2005, 25(1):24-26. BAO Xiuli, AI Yude. Changes of excitatory amino acids in ischemic retinal damage[J].Rec Adv Ophthalmol, 2005, 25(1):24-26.
[11] 刘索新, 鞠学红. 神经营养因子对视网膜缺血再灌注损伤的影响[J]. 解剖科学进展, 2013, 19(5):454-457.
[12] 宋庆磊, 霍鸣. 评价视网膜缺血再灌注损伤指标的研究进展[J]. 国际眼科杂志, 2014, 34(9):1293-1296. SONG Qinglei, HUO Ming. Progress in evaluation indexs of retinal ischemia-reperfusion injury[J]. Basic Clin Med, 2014, 34(9):1293-1296.
[13] 姜义娜, 田福荣, 林倩, 等. bFGF 经鼻给药对大鼠缺血再灌注脑损伤的保护作用[J]. 温州医科大学学报, 2015, 45(8):560-565. JIANG Yina, TIAN Furong, LIN Qian, et al. Neruoprotective effect of bfgf on ischemic-reperfusion injury in sd rats via intranasal administration[J]. J Wenzhou Med Univ, 2015(8):560-565.
[14] 刘华, 陶宏军. 应用重组人碱性成纤维细胞生长因子论著治疗小儿面颈部烧伤的临床研究[J]. 临床和实验医学杂志, 2012, 11(1):31-32. LIU Hua, TAO Hongjun. A study of the treatment of 67 cases of face and neck burns in children[J]. J Clin Exp Med, 2012, 11(1):31-32.
[15] 车莹, 李校堃, 胡培声, 等. 重组人碱性成纤细胞生长因子单克隆抗体的制备、鉴定及初步应用[J].免疫学杂志, 2011, 27(6):514-518.
[1] 赵娟,焦万珍,赵博军. UWFSS-OCTA检测糖尿病视网膜病变微循环的变化[J]. 山东大学耳鼻喉眼学报, 2026, 40(2): 80-86.
[2] 张欣,刘雅洁,李飞,黄春梅,张卉新,朱家斌. 重度OSA患者眼动脉及视网膜中央动脉血流动力学参数与AHI、LSaQ2的关联性[J]. 山东大学耳鼻喉眼学报, 2026, 40(2): 87-94.
[3] 孙庆祝,沈健,陈星,吴雁冰,曾论. 代谢指标在预测糖尿病性黄斑水肿患者雷珠单抗疗效中的作用[J]. 山东大学耳鼻喉眼学报, 2026, 40(1): 74-81.
[4] 朱云龙,王平,高萌. 误诊为中浆及视网膜炎的后巩膜炎1例并文献复习[J]. 山东大学耳鼻喉眼学报, 2026, 40(1): 99-105.
[5] 陶朵朵,史彬,赵云舒,李勇刚,刘济生. 年龄相关性听力损失患者前扣带回神经递质水平及其与听力水平关系的初步研究[J]. 山东大学耳鼻喉眼学报, 2025, 39(6): 31-39.
[6] 高琳,何金梅,杨明祎. 糖尿病视网膜病变患者血清Sestrin2和NADPH氧化酶2水平与眼底病变的相关性[J]. 山东大学耳鼻喉眼学报, 2025, 39(6): 113-117.
[7] 丁术梁,王超凡,刘建亮. 眼内液检测指导精准治疗急性视网膜坏死1例并文献复习[J]. 山东大学耳鼻喉眼学报, 2025, 39(5): 114-117.
[8] 王焕霞,王淑雅,王影,孙璇,黄杰,王兴荣. 孔源性视网膜脱离玻璃体切除术后继发黄斑前膜的危险因素分析[J]. 山东大学耳鼻喉眼学报, 2025, 39(4): 181-185.
[9] 张国明,魏文斌,林浩添,迟玮,张少冲,赵培泉,雷柏英,陈有信,王雨生,何明光,梁建宏,卢海,陆方,黄欣,梁小玲,赵欣予,吴桢泉,余震,崔凯璇,刘亚玲,项道满,陈长征,张自峰,林铎儒,于珊珊,孙悦,檀韬,陈燕先,彭婕,董力,程湧,朱雪梅,杨鹏,陈少滨. 人工智能技术辅助早产儿视网膜病变诊疗专家共识(2025)[J]. 山东大学耳鼻喉眼学报, 2025, 39(2): 1-5.
[10] 张露,王永晶,贾君,赵健楠,赵芳. 初发单眼眼前黑影飘动患者的光相干断层扫描特征[J]. 山东大学耳鼻喉眼学报, 2025, 39(1): 85-88.
[11] 肖哲,张胜娟,赵子琦,兴辰,李成泉,刘志强. Ultra Q:YAG激光治疗黄斑部视网膜前出血17例并文献复习[J]. 山东大学耳鼻喉眼学报, 2025, 39(1): 130-135.
[12] 许莞菁,孙雨浩,赵军. 姜黄素的抗氧化性对视网膜退行性疾病的影响[J]. 山东大学耳鼻喉眼学报, 2025, 39(1): 146-151.
[13] 杨淞月,张美霞. 单细胞RNA测序技术在视网膜中的研究进展[J]. 山东大学耳鼻喉眼学报, 2025, 39(1): 162-170.
[14] 辛梦,纪芳,代春华,张靖,刘澍. 医用透明质酸钠与平衡盐溶液在微创玻璃体手术中对眼表保护的影响[J]. 山东大学耳鼻喉眼学报, 2024, 38(5): 58-65.
[15] 张金木,郭滨,蒋文君,刘冬梅. M受体信号通路在近视发生发展中作用的研究进展[J]. 山东大学耳鼻喉眼学报, 2024, 38(5): 160-164.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!