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心宁有效部位群抗心肌缺血缺氧处方优选
引用本文:王宇红,蔡光先. 心宁有效部位群抗心肌缺血缺氧处方优选[J]. 世界中西医结合杂志, 2007, 2(3): 141-144
作者姓名:王宇红  蔡光先
作者单位:湖南省中医药研究院,湖南,长沙,410013;湖南中医药大学第一附属医院,湖南,长沙,410000;湖南省中医药研究院,湖南,长沙,410013
基金项目:湖南科学技术厅资助项目
摘    要:目的:优选抗心肌缺血药心宁有效部位群配比与剂量,确定心宁处方组成。方法:以抗心肌缺血与耐缺氧作用为考察指标,采用正交试验设计进行方剂学配伍研究。结果:丹参提取物与B草SFE萃取物配伍后,与模型组比较,抗心肌缺血与耐缺氧作用具有显著性差异(P〈0.05)。极差大小与方差分析结果表明,丹参提取物抗心肌缺血作用优于B草萃取物,B草萃取物耐缺氧作用大于丹参提取物。结论:丹参提取物(A)与B草SFE萃取物(B)的最佳配伍比例为A3B2,心宁最优日服用剂量为低剂量(0.8g)。

关 键 词:心宁有效部位群  正交试验  处方优选
文章编号:1673-6613(2007)03-0141-04
修稿时间:2006-12-15

Formulation Research of Xinning by Optimizing its Effective Location Group against Cardiac Ischemia and Hypoxia
Wang Yuhong,Cai Guangxian. Formulation Research of Xinning by Optimizing its Effective Location Group against Cardiac Ischemia and Hypoxia[J]. World Journal Of Integrated Traditional and Wesrern Medicine, 2007, 2(3): 141-144
Authors:Wang Yuhong  Cai Guangxian
Affiliation:Wang Yuhong, Cai Guangxian ( 1. Hunan Institute of Traditional Chinese Medicine, Changsha, Hunan 410013, China ;2. 1st Affiliated Hospital of Hunan University of Chinese Medicine, Changsha, Hunan 410000, China)
Abstract:Objective:To optimize the effective part group and dose of Xinning to against cardiac ischemia, in order to determine the composition of the formula. Methods: Take the anti-ischemia anti-hypooxia as the investigation index, study the combination of the formula with a orthogonal experiment design. Results: The combination of the extractant of Salvia miltiorrhiza and the SFE extractant of Herb B is more effective in anti-ischemia and anti-hypoxia (P<0.05). It was showed in range and variance analysis that the extractant of Salvia miltiorrhiza is more powerful than that of the Herb B in anti-ischemia, however, the hypoxia-standing capacity of the Herb B is high than Salvia miltiorrhiza. Conclusion: The best compatibility proportion between the extractive of Salvia miltiorrhiza (A) and the extractant of the Herb B is A3B2, and the best daily dose is low dosage(0.8 g).
Keywords:Effective part group of Xinning  Variance analysis  Formula optimizing
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