基于VEGF 途径探究丹参素对大鼠视网膜静脉阻塞及对视网膜功能的改善作用机制
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河北北方学院附属第二医院眼科,河北 张家口 075100

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R-33


Mechanism of Danshensu in retinal vein occlusion and retinal functions in rats via the VEGF pathway
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Ophthalmology Department of the Second Affiliated Hospital of Hebei North University, Zhangjiakou 075100, China

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    摘要:

    目的 探讨丹参素对视网膜静脉阻塞(RVO)大鼠的改善作用及可能机制。 方法 随机选择8 只SPF 级雄性SD 大鼠作为对照组,剩余大鼠左眼利用孟加拉红联合激光光动力法诱导BRVO 模型,成模大鼠随机分为模型组、丹参素低(15 mg/ kg)、中(30 mg/ kg)、高剂量组(60 mg/ kg),每组各8 只,对照组及模型组大鼠每日经尾静脉注射等量生理盐水,连续21 d。荧光素眼底血管造影(FFA)技术观察视网膜静脉结构;耳静脉微循环检测静脉血液流速;全视野视网膜电图(ffERG)评估视网膜功能;光学相干断层扫描(OCT)测量视网膜层厚度;HE 染色观察视网膜组织学变化;RT-qPCR 技术检测VEGF mRNA 相对表达量;Western blot 技术检测视网膜组织中缺氧诱导因子1α(HIF1α)、细胞外信号调节激酶1/2(ERK1/2)、p-ERK1/2、黏着斑激酶(FAK)、p-FAK、VEGF 及色素上皮衍生因子(PEDF)蛋白表达情况。 结果 给药前,与对照组比较,模型大鼠视网膜静脉血流中断、远端血管迂曲、扩张,视网膜厚度增加,ffERG a 波、b 波振幅降低,耳静脉血液流速降低(P<0. 05);给药后,与对照组比较,模型组及丹参素三个给药组大鼠视网膜静脉阻塞处再通,视网膜厚度、ffERG a 波、b 波振幅及耳静脉血液流速降低(P<0. 05),视网膜存在不同程度损伤,模型组大鼠视网膜结构不完整,神经节细胞层(GCL)细胞数目减少,外核层(ONL)感光细胞层几乎丧失,视网膜组织中VEGF mRNA 及蛋白和HIF1α、p-ERK1/2、p-FAK 蛋白相对表达量升高,PEDF 蛋白相对表达量降低(P<0. 05);与模型组比较,丹参素三个给药组大鼠上述指标及因子表达水平均逆转(P<0. 05),视网膜病理损伤逐渐减轻;丹参素作用效果呈剂量依赖性(P<0. 05)。 结论 丹参素可减轻RVO 大鼠视网膜组织损伤,促进阻塞静脉微循环恢复并改善视网膜功能,其作用机制可能与抑制VEGF 血管生成相关途径的激活有关。

    Abstract:

    Objective To investigate the ameliorative effect and possible mechanism of Danshensu in retinal vein occlusion (RVO) rats. Methods Eight SPF grade male SD rats were randomly selected as the control group. The RVO model was induced by Bengal red combined with the laser photodynamic method in the left eye of the remaining rats. The model rats were randomly divided into model, Danshensu low (15 mg/ kg), medium (30 mg/ kg), and high dose group(60 mg/ kg), with eight rats in each group. Rats in control and model groups were injected with the same amount of normal saline through the caudal vein every day for 21 days. Fundus fluorescein angiography was used to observe the retinal vein structure. The venous blood flow velocity was measured by ear vein microcirculation. A full field electroretinogram(ffERG) was used to evaluate retinal functions. The retinal layer thickness was measured by optical coherence tomography. Histological changes of the retina were observed by HE staining. The relative expression of VEGF mRNA was measured by RT-qPCR. Expression of hypoxia inducible factor 1α (HIF1α), extracellular signal regulated kinase 1/2 (ERK1/2), p-ERK1/2, focal adhesion kinase (FAK), p-FAK, VEGF, and pigment epithelium-derived factor (PEDF) in retinal tissue was detected by Western blot. Results Before administration, compared with the control group, the retinal vein blood flow of model rats was interrupted, distal blood vessels were tortuous and dilated, the retinal thickness was increased, the amplitudes of ffERG a and b waves were decreased, and the blood flow velocity of the ear vein was decreased (P<0. 05). After administration, compared with the control group, retinal vein occlusion was recanalized, the retinal thickness, amplitudes of ffERG a and b waves, and blood flow velocity of the auricular vein were decreased (P<0. 05), and the retina was damaged by various degrees. The retinal structure of the model group was incomplete, the number of ganglion cell layer cells was decreased, the photoreceptor cell layer of the outer nuclear layer was almost lost, and relative expression of VEGF mRNA and HIF1α, p-ERK1/2, and p-FAK proteins was increased in retinal tissue, while the relative expression of PEDF protein was decreased (P<0. 05). Compared with the model group, the changes in the above indexes and factors in the three Danshensu treatment groups were reversed (P<0. 05) and pathological damage of the retina was gradually reduced. The effect of Danshensu was dependent on dose (P<0. 05). Conclusions Danshensu reduces retinal tissue injury, promotes recovery of blocked venous microcirculation, and improves retinal functions in RVO rats. Its mechanism may be related to inhibiting activation of VEGF-related angiogenesis pathways.

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刘志强,李亚坤,白 玫,郭向东,梁春利.基于VEGF 途径探究丹参素对大鼠视网膜静脉阻塞及对视网膜功能的改善作用机制[J].中国比较医学杂志,2023,33(5):52~60.

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  • 收稿日期:2022-04-20
  • 在线发布日期: 2023-06-15
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