期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
脑源性神经营养因子对实验性大鼠高眼压视网膜节细胞EIK-1磷酸化水平的作用 被引量:2
1
作者 朱江 周玉宝 +3 位作者 刘建荣 喻磊 张新宇 付学锋 《神经解剖学杂志》 CAS CSCD 北大核心 2015年第5期584-588,共5页
目的:观察脑源性神经营养因子(BDNF)干预对急性高眼压(HIOP)后大鼠视网膜EIK-1磷酸化水平的影响,以了解BDNF抗高眼压损伤的机制。方法:成年大鼠72只随机分为HIOP组、BDNF预处理高眼压组和溶媒预处理高眼压组(n=24),每组又根据4个时间点... 目的:观察脑源性神经营养因子(BDNF)干预对急性高眼压(HIOP)后大鼠视网膜EIK-1磷酸化水平的影响,以了解BDNF抗高眼压损伤的机制。方法:成年大鼠72只随机分为HIOP组、BDNF预处理高眼压组和溶媒预处理高眼压组(n=24),每组又根据4个时间点细分为4个亚组(n=6)。BDNF预处理高眼压组和溶媒预处理高眼压组大鼠左眼于加压前2 d分别给予BDNF预处理或等量溶媒剂,右眼作为正常对照。用生理盐水升高各组大鼠左侧眼压,至眼压升高至闪光视网膜电图b波消失的临界眼压时停止注射,并维持60 min。大鼠分别存活1、3、7、14 d后处死,冰冻切片行p-EIK-1的免疫组织化学染色。结果:与正常对照比较,急性高眼压后,HIOP和溶媒预处理高眼压视网膜节细胞层p-EIK-1阳性细胞数明显减少(P<0.01);BDNF预处理高眼压组急性高眼压后1d和3d节细胞层p-EIK-1阳性细胞数与正常对照组相似,7d和14 d时有轻度减少(P<0.05)。结论:外源性BDNF可以促进实验大鼠急性高眼压后视网膜节细胞层EIK-1活化,提示节细胞层EIK-1的磷酸化介导了BDNF对受损的视网膜的保护作用。 展开更多
关键词 高眼压(hiop) 脑源性神经营养因子(BDNF) p-EIK-1 大鼠
下载PDF
急性眼高压后大鼠视网膜GLT-1的表达变化
2
作者 李明波 胡生发 +2 位作者 黄良 黄菊芳 罗学港 《现代生物医学进展》 CAS 2007年第6期827-829,共3页
目的:检测急性眼高压后大鼠视网膜GLT-1的表达变化。方法:成年大鼠左眼眼压升高至闪光视网膜电图b波消失的临界眼压且维持缺血60min。实验动物分别存活1、3、7或14d后通过免疫组织化学检测大鼠视网膜GLT-1的表达变化,尼氏染色检测节细... 目的:检测急性眼高压后大鼠视网膜GLT-1的表达变化。方法:成年大鼠左眼眼压升高至闪光视网膜电图b波消失的临界眼压且维持缺血60min。实验动物分别存活1、3、7或14d后通过免疫组织化学检测大鼠视网膜GLT-1的表达变化,尼氏染色检测节细胞的变化。结果:急性眼高压后视网膜随着再灌时间的延长,内层视网膜厚度逐渐变薄,节细胞层细胞数目进行性下降。GLT-1阳性产物主要表达于OPL和IPL。急性HIOP后再灌1天时,与正常组相比,此时GLT-1表达增加(P<0.05)。再灌3天时, GLT-1表达量继续增加。第7天时GLT-1表达开始下调,至14天时,GLT-1表达明显低于3天组,但仍高于正常组(P<0.05)。结论:急性眼高压可导致视网膜GLT-1表达增加,其机制可能与其自身的保护反应有关。 展开更多
关键词 急性高眼压 GLT-1 视网膜 大鼠
下载PDF
Dietary Omega-3 Fatty Acids Deficiency Affects the Glutamatergic Transport System in Rat Retina:Modulatory Effects after High Intraocular Pressure
3
作者 Letícia V.Siqueira Eduardo P.Rico +5 位作者 Mário C.Bulla Luciano Bellini Luiz C.L.Silveira Lúcia Vinadé Diogo O.Souza Júlia D.Moreira 《Food and Nutrition Sciences》 2013年第9期195-201,共7页
Glutamate excitotoxicity has been postulated as a putative mechanism involved in the physiopathology of glaucoma, a disease that can cause retinal cell damage. Thus, the modulation of glutamatergic parameters is a put... Glutamate excitotoxicity has been postulated as a putative mechanism involved in the physiopathology of glaucoma, a disease that can cause retinal cell damage. Thus, the modulation of glutamatergic parameters is a putative therapeutic target to prevent excitotoxic retinal injury. Here, we investigated the effect of dietary omega-3 fatty acids (w3) in the retinal glutamate transport system in basal and ischemic conditions. Female Wistar rats were divided into two groups: w3 diet (w3 group) and w3 deficient-diet (D group). Their pups, at 60 days old, were used for the experiments. Retinal ischemia, a mechanism involved in the physiopathology of glaucoma, was induced by high intraocular pressure (HIOP, 140 180 mmHg for 45 min) to impair retinal blood flow. Analyses were performed 7 days after ischemia. The D group showed a decreased glutamate uptake in basal conditions and after HIOP when compared to the w3 group. After HIOP, there was a decrease in glutamate uptake in the D group that was not observed in the w3 group (p < 0.005). Concerning glutamate transporters, the w3 group presented higher levels of GLT-1 compared to the D group in basal and ischemic conditions. After HIOP, EAAC1 was increased in both groups, while GLT-1 increased only in the D group, compared to basal levels. GLAST and EAAT5 presented no alterations. The modulation of the glutamatergic system by dietary w3 fatty acids points to a potential mechanism by which w3 PUFAs exert beneficial effects in the retina. 展开更多
关键词 N-3 PUFAs RETINA ISCHEMIA hiop GLAUCOMA Glutamate Transporters
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部