南方医科大学学报 ›› 2015, Vol. 35 ›› Issue (11): 1591-.

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依达拉奉可减轻大鼠氧化应激及延缓心肌纤维化

王世祥,陆志锋,许卫,陈友权,陈晞明   

  • 出版日期:2015-11-20 发布日期:2015-11-20

Effect of edaravone on oxidative stress and myocardial fibrosis induced by isoproterenol
in rats

  • Online:2015-11-20 Published:2015-11-20

摘要: 目的探讨依达拉奉减轻氧化应激和抗心肌纤维化作用。方法将50只8周龄SD雄性大鼠随机分5组(对照组,模型组,
依达拉奉低、中、高浓度组)。采用异丙肾上腺素(ISO)构建大鼠心肌纤维化模型,依达拉奉(Eda)各剂量组同时予以依达拉奉干
预,共14 d。第15天检测各组心肌纤维化程度、左心室质量指数(LVMI)、胶原容积分数(CVF),以及心肌组织Ⅰ型、Ⅲ型胶原蛋
白(ColⅠ、Col Ⅲ)、羟脯氨酸(Hyp)、超氧化物歧化酶(SOD)、丙二醛(MDA)、一氧化氮(NO)含量,采用免疫荧光和Western blot
检测心肌组织TGF-β1的表达。结果模型组CVF和LVMI均显著高于对照组(P均为0.000),依达拉奉组随着治疗浓度的增加
(低、中、高浓度),CVF和LVMI呈下降趋势(P<0.05);模型组ColⅠ、Col Ⅲ和Hyp均显著高于对照组(P均为0.000),随着治疗浓
度的增加,ColⅠ、Col Ⅲ和Hyp呈下降趋势;模型组MDA显著高于对照组(P=0.000),SOD和NO水平则显著低于对照组(P均
为0.000);依达拉奉低、中、高浓度组SOD和NO明显高于模型组(P<0.05);模型组TGF-β1显著高于对照组(P=0.000),依达拉奉
低、中、高浓度组TGF-β1明显低于模型组;MDA与LVMI、CVF、ColⅠ、Col Ⅲ、Hyp呈正相关,而SOD和NO均与LVMI、CVF、
ColⅠ、Col Ⅲ、Hyp呈负相关;TGF-β1与LVMI、CVF、ColⅠ、Col Ⅲ、Hyp、MDA呈正相关,而与SOD、NO呈负相关。结论依达
拉奉能减轻氧化应激及抑制TGF-β1表达从而延缓心肌纤维化。

Abstract: Objective To investigate the effect of edaravone on oxidative stress and myocardial fibrosis induced by isoproterenol
in rats. Methods Fifty male SD rats were randomly divided into 5 groups, including a control group, a myocardial fibrosis
model (established by injections of isopropyl adrenaline for 10 days) group, and 3 edaravone groups with edaravone treatment
at low, medium, or high doses for 14 days. After the treatments, the rats were examined for the degree of myocardial fibrosis,
left ventricular mass index (LVMI), collagen volume fraction (CVF), and myocardial contents of collagen I (Col I), collage III
(Col III), hydroxyproline (Hyp), superoxide dismutase (SOD), malondialdehyde (MDA), and nitric oxide (NO); The expression
of transforming growth factor-β1 (TGF-β1) in the myocardial tissues was examined by immunofluorescence assay and Western
blotting. Results Compared with the control rats, the rat models of myocardial fibrosis showed significantly increased CVF
and LVMI (P=0.000), which were lowered by edaravone treatments in a dose-dependent manner (P<0.05). The myocardial
contents of Col I, Col III and Hyp also increased in the model group (P=0.000) and were lowered dose-dependently by
edaravone; the contents of MDA was higher (P=0.000) and SOD and NO were lower in the model group (P=0.000), and
edaravone treatments obviously increased SOD and NO contents (P<0.05). The model rats showed significantly increased
myocardial expression of TGF-β1 (P=0.000), which was markedly lowered by edaravone treatments (P=0.000). The myocardial
content of MDA was positively correlated while SOD and NO were negatively with LVMI, CVF, Col I, Col III and Hyp; TGF-β1
was positively correlated with LVMI, CVF, Col I, Col III, Hyp and MDA but negatively with SOD and NO. Conclusion
Edaravone can relieve oxidative stress and inhibit TGF-β1 activation to ameliorate myocardial fibrosis in rats.