狗玫瑰水乙醇提取物对庆大霉素肾毒性影响的组织学和生化研究

S. Yari, Z. Shojaie, Samaneh Khodabandehlu, S. Saiedi
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摘要

。庆大霉素(GM)是一种广泛用于治疗革兰氏阴性感染的抗生素。然而,由于其肾毒性,其临床应用受到限制。氧化应激在庆大霉素肾毒性中起重要作用。已有研究表明,Rosa canina L. (RC)果实具有抗氧化、抗诱变和抗癌作用。本研究旨在探讨紫杉醇对转基因大鼠肾毒性的保护作用。30只雄性Wistar大鼠腹腔灌胃GM 100 mg/Kg (B.W),第5组灌胃RC 400 mg/Kg (B.W)。光镜下组织病理学评价各组肾毒性,血清肌酐、尿素生化评价各组肾毒性。与对照组相比,第2组各组大鼠肾脏的相对重量均有所增加(p<0.05),而紫荆提取物使肾体指数降至正常水平。庆大霉素组血清尿素和肌酐水平显著升高(p<0.001),而GM与高剂量RC (400 mg/Kg (B.W))同时给药可改善肾毒性生化指标,显著降低血清肌酐和尿素水平。组织形态学检查显示,大鼠肾小管上皮细胞坏死脱屑,肾小球淤滞,肾皮质炎症细胞浸润,同时给药可减轻这些组织学损伤。由此可见,给药RC对大鼠肾脏具有一定的保护作用,可预防转基因引起的肾脏损伤,因此,建议以RC为基础补充,以减少转基因引起的肾脏损伤。
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The histological and biochemical study on the effects of hydro-ethanolic extract of Rosa canina on gentamicin-induced nephrotoxicity
. Gentamicin (GM) is an antibiotic widely used against gram-negative infections. However, its clinical application is limited due to its nephrotoxicity. Oxidative stress plays an important role in the nephrotoxicity of gentamicin. Previous studies showed that Rosa canina L. (RC) fruits possess antioxidant, antimutagenic and anticarcinogenic effect. The aim of this study was to investigate the protective effect of RC on GM-induced nephrotoxicity in rats. Thirty male Wistar rats were 100 mg/Kg (B.W) of GM intraperitoneally, and Group 5 was treated by oral administration of 400 mg/Kg (B.W) of RC. The nephrotoxicity observed in each group was histopathologically evaluated by light microscopy and biochemically evaluated by measuring the levels of creatinine and urea in the blood serum. The relative weight of kidney in each gentamicin-treated animals in the group 2 was increased in comparison with those in the control group (p<0.05), however, the administration of RC extract decreased the kidney somatic index toward the normal level. While the animals treated with gentamicin showed significantly higher levels of serum urea and creatinine (p<0.001), simultaneous coadministration of GM with a high dose of RC (400 mg/Kg (B.W) ameliorated the biochemical indices of nephrotoxicity, showing the significant decrease in the levels of serum creatinine and urea. In addition, Histomorphological examination showed that the rats treated with GM suffered necrosis and desquamation of tubular epithelial cells, glomerular stasis and inflammatory cell infiltration in renal cortex, while simultaneous administration of RC and GM reduced those histologically damages. It could be concluded that the administration of RC showed a protective effect on the rat kidney by preventing renal damages induced by GM, therefore, the RC-based supplements could be proposed to minimize the GM-induced renal damages.
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