Department of Biochemistry and Biotechnology, Annamalai University, Annamalai Nagar 608002, Tamil Nadu, India.
Food Chem Toxicol. 2012 Nov;50(11):3984-9. doi: 10.1016/j.fct.2012.08.017. Epub 2012 Aug 16.
In the pathology of myocardial infarction, lysosomal lipid peroxidation and resulting enzyme release play an important role. We evaluated the protective effects of sinapic acid on lysosomal dysfunction in isoproterenol induced myocardial infarcted rats. Male Wistar rats were treated with sinapic acid (12 mg/kg body weight) orally daily for 10 days and isoproterenol (100 mg/kg body weight) was injected twice at an interval of 24 h (9th and 10th day). Then, lysosomal lipid peroxidation, lysosomal enzymes in serum, heart homogenate, lysosomal fraction and myocardial infarct size were measured. Isoproterenol induced myocardial infarcted rats showed a significant increase in serum creatine kinase-MB and lysosomal lipid peroxidation. The activities of β-glucuronidase, β-galactosidase, cathepsin-B and D were significantly increased in serum, heart and the activities of β-glucuronidase and cathepsin-D were significantly decreased in lysosomal fraction of myocardial infarcted rats. Pre-and-co-treatment with sinapic acid normalized all the biochemical parameters and reduced myocardial infarct size in myocardial infarcted rats. In vitro studies confirmed the free radical scavenging effects of sinapic acid. The possible mechanisms for the observed effects are attributed to sinapic acid's free radical scavenging and membrane stabilizing properties. Thus, sinapic acid has protective effects on lysosomal dysfunction in isoproterenol induced myocardial infarcted rats.
在心肌梗死的病理学中,溶酶体脂质过氧化和由此产生的酶释放起着重要作用。我们评估了芥子酸对异丙肾上腺素诱导的心肌梗死大鼠溶酶体功能障碍的保护作用。雄性 Wistar 大鼠每天口服芥子酸(12mg/kg 体重),连续 10 天,异丙肾上腺素(100mg/kg 体重)在 24 小时(第 9 天和第 10 天)间隔内分两次注射。然后,测量溶酶体脂质过氧化、血清、心脏匀浆、溶酶体部分和心肌梗死面积中的溶酶体酶。异丙肾上腺素诱导的心肌梗死大鼠血清肌酸激酶-MB 和溶酶体脂质过氧化显著增加。β-葡糖苷酸酶、β-半乳糖苷酶、组织蛋白酶-B 和 D 的活性在血清、心脏中显著增加,而心肌梗死大鼠溶酶体部分的β-葡糖苷酸酶和组织蛋白酶-D 活性显著降低。芥子酸的预先和共同处理使所有生化参数正常化,并减少心肌梗死大鼠的心肌梗死面积。体外研究证实了芥子酸的清除自由基作用。观察到的作用的可能机制归因于芥子酸的自由基清除和膜稳定特性。因此,芥子酸对异丙肾上腺素诱导的心肌梗死大鼠的溶酶体功能障碍具有保护作用。