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首页> 外文期刊>Journal of Pharmacopuncture >Cinnamaldehyde Attenuates Cataractogenesis via Restoration of Hypertension and Oxidative Stress in Fructose-Fed Hypertensive rats
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Cinnamaldehyde Attenuates Cataractogenesis via Restoration of Hypertension and Oxidative Stress in Fructose-Fed Hypertensive rats

机译:肉桂醛通过果糖喂养的高血压大鼠通过恢复高血压和氧化应激来减轻白内障的发生。

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Objectives: Several studies have revealed that systemic hypertension is strongly associated with cataractogenesis. However, the pathophysiology and treatment is often unclear. In this study, we evaluated the anti-cataractogenic effect of cinnamaldehyde (CA), a natural organic compound, in rats with fructose-induced hypertension. Methods: The rats were divided into six groups. For six weeks, the normal group received a suspension of 0.5% carboxy methyl cellulose (10 mL/kg/day, p.o.) while five other groups received a 10% (w/v) fructose solution in their drinking water to induce hypertension. By the end of the third week hypertension had been induced in all the animals receiving fructose. From the beginning of the fourth week to the end of the sixth week, one of those five groups (control) continued to receive only 10% (w/v) fructose solution, one group (standard) received ramipril (1 mg/kg/day, p.o.) plus 10% (w/v) fructose solution, and three groups (experimental) received CA at doses of 20, 30, and 40 mg/kg/day p.o., plus 10% (w/v) fructose solution. Blood pressure was measured weekly using a non-invasive blood pressure apparatus. After six weeks, the animals were sacrificed, and the anti-cataractogenic effects on the eye lenses were evaluated. Results: Administration of fructose elevated both the systolic and the diastolic blood pressures, which were significantly reduced by CA at all dose levels. In the control group, a significant increase in the malonaldehyde (MDA) level and decreases in the total protein, adenosine triphosphate (ATP)ase activity, glutathione peroxidase, catalase, superoxide dismutase and glutathione levels, as compared to the normal group, were observed. Administration of CA at all doses significantly restored the enzymatic, non-enzymatic, antioxidants, total protein, and ATPase levels, but decreased the MDA level, as compared to the control group. Conclusion: The present study revealed that CA modulated the antioxidant parameters of the serum and lens homogenates in hypertension-induced cataractogenic animals.
机译:目的:多项研究表明,系统性高血压与白内障发生密切相关。但是,病理生理和治疗常常不清楚。在这项研究中,我们评估了天然有机化合物肉桂醛(CA)在果糖诱发的高血压大鼠中的抗白内障作用。方法:将大鼠分为六组。六周中,正常组接受0.5%羧甲基纤维素(10 mL / kg /天,口服)的悬浮液,而其他五组接受饮用水中10%(w / v)的果糖溶液以诱发高血压。到第三周末,所有接受果糖的动物都诱发了高血压。从第四周开始到第六周结束,这五组(对照组)中的一组继续仅接受10%(w / v)的果糖溶液,一组(标准)接受雷米普利(1 mg / kg /每日一次,口服)加10%(w / v)果糖溶液,三组(实验组)以口服剂量20、30和40 mg / kg /天口服加10%(w / v)果糖溶液接受CA。使用无创血压仪每周测量一次血压。六周后,处死动物,并评估对晶状体的抗白内障作用。结果:果糖给药可同时升高收缩压和舒张压,在所有剂量水平下,CA均可显着降低。在对照组中,与正常组相比,丙二醛(MDA)水平显着增加,总蛋白,三磷酸腺苷(ATP)酶活性,谷胱甘肽过氧化物酶,过氧化氢酶,超氧化物歧化酶和谷胱甘肽水平下降。 。与对照组相比,所有剂量的CA给药都能显着恢复酶,非酶,抗氧化剂,总蛋白和ATPase的水平,但降低了MDA的水平。结论:本研究表明,CA调节高血压诱发的白内障动物血清和晶状体匀浆的抗氧化参数。

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