南方医科大学学报 ›› 2014, Vol. 34 ›› Issue (11): 1661-.

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复方黄甘延缓5/6肾切除大鼠慢性肾功能衰竭

肖小燕,莫立乾,宋少练,秦敏,杨西晓   

  • 出版日期:2014-11-20 发布日期:2014-11-20

Compound Huang Gan delays chronic renal failure after 5/6 nephrectomy in rats

  • Online:2014-11-20 Published:2014-11-20

摘要: 目的观察复方黄甘对5/6肾切除慢性肾衰模型大鼠的疗效,并探讨其可能的作用机制。方法用HPLC检测复方黄甘提
取物组分并定量;构建5/6肾切除大鼠慢性肾衰模型,将模型大鼠随机分为尿毒清组、科素亚组、复方黄甘低、中、高剂量组和模
型组,另加假手术组共7组,每组10只大鼠,经灌胃给药12周后用全自动生化分析仪检测Scr、BUN、Ucr及24 h UPr;对残余肾
组织进行HE和Masson染色观察病理变化;用RT-PCR和免疫组化检测肾组织FN、MCP-1、ICAM-1的表达。结果复方黄甘提
取物中主要成分及其含量为:甘草苷(0.06%)、丹皮酚(1.06%)、芦荟大黄素(0.1%)、大黄酸(0.47%)、大黄素(0.19%)、大黄酚
(0.41%)和大黄素甲醚(0.13%);复方黄甘低、中、高剂量组Scr、BUN、Ucr、Ccr及24h UPr都显著低于模型组(P<0.05);复方黄甘
给药组肾小球硬化和肾间质纤维化改善较为明显,且肾组织中FN、ICAM-1 mRNA表达和蛋白表达均显著低于模型组(P<
0.05)。结论复方黄甘可改善慢性肾衰模型大鼠肾功能,减轻肾小球硬化和肾间质纤维化,在一定程度上延缓慢性肾功能衰竭
的进展。

Abstract: Objective To observe the effect of compound Huang Gan in delaying chronic renal failure in rats after 5/6
nephrectomy and explore the possible mechanisms. Methods High-performance liquid chromatography was used to was used
identify the components of compound Huang Gan extract. Rat models of 5/6 nephrectomy received a 12-week treatment with
intragastric administration of Niaoduqing, Cozaar, or compound Huang Gan at low, moderate or high doses (n=10). After the
treatments, the rats were sacrificed for detecting Scr, BUN, Ucr and 24h UPr , pathological examination of the renal tissues, and
determination of FN, MCP-1, and ICAM-1 expression levels in the renal tissues using RT-PCR and immunohistochemistry.
Results The major chemical components of compound Huang Gan extract included glycyrrhizin (0.61%), paeonol (1.2%), aloe
emodin (0.72%), rhein (0.85%), emodin (0.87%), chrysophanol (0.79%) and physcion (0.8%). Treatment with compound Huang
Gan at low, moderate and high doses significantly reduced Scr, BUN, Ucr , Ccr and 24 h UPr levels (P<0.05), improved
interstitial fibrosis and glomerulosclerosis, and reduced FN and ICAM-1 expressions (P<0.05) in rats following nephrectomy.
Conclusion Compound Huang Gan can improve the renal function and lessen glomerulosclerosis and renal interstitial fibrosis
to delay the progression of chronic renal failure in rat models of 5/6 nephrectomy.