黑草磁性氢乙醇提取物和氧化镁纳米颗粒对糖尿病雄性大鼠肝脏过氧化氢酶基因表达的影响

Mahboubeh Amini, Maryam Ostadsharif, N. Naghsh
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引用次数: 0

摘要

背景:糖尿病是一种肝脏发生化学、生理和病理变化的代谢性疾病。由于胰岛素的副作用,考虑使用具有类黄酮化合物和抗氧化特性的黑草等草药。本研究分别及同时观察黑草磁性氢乙醇提取物和纳米氧化镁对雄性糖尿病大鼠肝组织中CAT基因表达的影响。材料与方法:40雄性Wistar鼠,诱导糖尿病注射后streptozotomycin (STZ)剂量的60毫克/公斤,治疗的磁hydroathanolic提取黑种草的剂量250毫克/公斤,分别以纳米颗粒的剂量10毫克/公斤,结合磁hydroathanolic提取125毫克/公斤,5毫克/公斤分别以纳米颗粒,每隔一天,提取含有分别以纳米颗粒为28天,猫肝脏基因表达的评估。结果:MgO纳米颗粒提取物对糖尿病患者CAT基因表达的增加程度与二甲双胍治疗的糖尿病患者相同。结论:黑草中百里香醌(TQ)可能通过抗氧化作用提高CAT基因的表达,克服糖尿病引起的氧化应激,对胰腺β细胞具有保护作用。负载纳米颗粒可能导致细胞中抗氧化化合物的更好吸收,并且MgO纳米颗粒作为纳米承包商促进了细胞对颗粒化合物的接触。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of magnetic hydroethanolic extract of Nigella sativa and magnesium oxide nanoparticles (MgO) on catalase gene expression in liver of diabetic male rats
Background : Diabetes is a metabolic disorder with chemical, physiological and pathological changes in the liver. Due to the side effects of insulin, the use of herbal medicines such as Nigella sativa with flavonoid compounds and antioxidant properties is considered. In this study, the effect of magnetic hydroethanolic extract of Nigella sativa and MgO nanoparticles separately and simultaneously on the expression of CAT gene in liver tissue of male diabetic rats was investigated. Materials and methods : 40 male Wistar rats, after induction of diabetes by injection of streptozotomycin (STZ) at a dose of 60 mg / kg, were treated by magnetic hydroathanolic extract of Nigella sativa at a dose of 250 mg / kg, MgO nanoparticles at a dose of 10 mg / kg, combined magnetic hydroathanolic extract 125 mg / kg and 5 mg / kg MgO nanoparticles, and the extract loaded with MgO nanoparticles every other day for 28 days and the expression of liver CAT gene was evaluated. Results : The extract loaded with MgO nanoparticles was able to increase CAT gene expression in diabetics to the extent of gene expression in metformin-treated diabetics. Conclusion : It seems that thymoquinone (TQ) in Nigella sativa due to its antioxidant properties increases the expression of CAT gene and overcomes the oxidative stress caused by diabetes with its protective effect on pancreatic beta cells. Loading the nanoparticles probably resulted in better absorption of the antioxidant compounds in the cell, and the MgO nanoparticles as nanocontractors facilitated the cell's access to the particulate compounds.
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