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抗病毒口服液药效学研究 被引量:12

Study on the Pharmacodynamics of Kangbingdu Oral Liquid
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摘要 目的 :通过动物实验研究抗病毒口服液药效学。方法 :细菌内毒素致家兔产生发热模型后不同时间体温波动情况、对流感病毒所致小鼠肺部病变和病毒增殖的影响、测定小鼠最大耐受量。结果 :以 0 .1 93g/kg抗病毒口服液 ig后 ,家兔体温变化与 0 .6 1 0 5 g/kg双黄连口服液组比较在 0 .5 h即有差异 ;与模型对照组比较 ,高、中、低剂量组均有明显差异 ,且能维持 4 h降低体温。小鼠感染病毒后口服本品与模型对照组比较能显著降低动物死亡率 ( P<0 .0 5 ) ,平均生活日数延长。但死亡保护率低于病毒唑。本品及病毒唑组 ,肺病变程度和肺指数均显著低于模型对照组 ( P<0 .0 5 ) ,但其治疗效果不及病毒唑。小鼠最大耐受量倍数为人用量的 1 2 5倍。结论 :抗病毒口服液能明显降低由细菌内毒素所致的发热 ,具有清热解毒作用 ;能有效抑制病毒性肺部感染 ; AIM\ The purpose is to study the pharmacodynamics of Kangbingdu oral liquid (KOL) through animal experiment. METHODS\ The variation in temperature of fevered rabbit induced by endotoxin, the effect of KOL on the pulmonary lesion in mice induced by influenza virus and virus proliferation, and the determination of the maximum tolerance dose of mice were found. RESULTS\ The variation in temperature of rabbit treated by KOL 0.193 g/kg differed from that treated by Shuanghuanglian oral liquid 0.6105 g/kg within half an hour. There was significant difference between the three dosage groups compared with the controlled model group. A descent of temperature lasted four hours. After infected by virus the mortality of mice receiving KOL was remarkably lower than that of the controlled model group ( P <0.05). The average survival time was prolonged but the rate of death protection was lower than that of Virazole group. As for KOL group and Virazole group, the degree of the pulmonary lesion and the pulmonary index were much lower than that of the controlled model group ( P <0.05). But KOL was less effective compared with Virazole. The maximum tolerance dose of mice was 125 times of that of human. CONCLUSION\ Available experiment data indicated that KOL was a safe and nontoxic drug for clearing away heat and toxic material. It can markedly decrease fever induced by endotoxin and effectively inhibit viral pulmonary infection.
出处 《中国药科大学学报》 CAS CSCD 北大核心 2001年第5期388-391,共4页 Journal of China Pharmaceutical University
关键词 抗病毒口服液 清热解毒 流感病毒 急性毒性 药效学 中药 Kangbingdu oral liquid Clearing away heat and toxic material Influenza virus Acute toxicity
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