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1.
China Pharmacy ; (12): 2106-2111, 2020.
Article in Chinese | WPRIM | ID: wpr-825190

ABSTRACT

OBJECTIVE:To improve the quality standard of Compound child antifebrile suppository. METHODS :Based on the previous quality standard ,TLC identification methods were established for artificial cow-bezoar and Baphicacanthis Cusiae Rhizoma et Radix. HPLC method was established for content determination of choleic acid (CA),hyodeoxycholic acid (HDCA) and paracetamol. RESULTS :TLC chromatogram of artificial cow-bezoar and Baphicacanthis Cusiae Rhizoma et Radix all showed the same color spots in the same position as the corresponding substance control or reference medicinal material ,while the negative samples had no interference. HPLC was performed on Welch Xtimate C 18 column(CA,HDCA)or Agilent ZORBAX SB-C 18 column(paracetamol)with mobile phase consisted of acetonitrile-0.5% formic acetic acid (by gradient elution ,CA and HDCA )or methanol-water(20∶80,V/V,paracetamol)at the flow rate of 1.0 mL/min. ELSD was used with a nitrogen flow-rate of 2.0 L/min at a drift tube temperature of 105 ℃(CA,HDCA). The detection wavelength was set at 244 nm(paracetamol). The linear ranges of CA,HDCA,paracetamol were 0.150 0-4.500 0,0.212 5-6.375 0,0.081 9-1.638 5 μg(all r>0.999 2). RSDs of precision , reproducibility and stability tests were all lower than 3%(n=6 or n=7). The average recoveries were 100.35%,101.39%, 98.81%(all RSD <3%,n=6). CONCLUSIONS :Based on previous quality standard of Compound child antifebrile suppository , TLC method is used to identify artificial cow-bezoar and Baphicacanthis Cusiae Rhizoma et Radix ,and the contents of CA ,HDCA and paracetamol are determined by HPLC ,which can effectively improve the quality control standard of the preparation.

2.
World Science and Technology-Modernization of Traditional Chinese Medicine ; (12): 58-62, 2014.
Article in Chinese | WPRIM | ID: wpr-439841

ABSTRACT

This study was aimed to observe the effect of Xiao-Chai-Hu Decoction (XCHD) with different doses of Bupleurum on body temperature and content of IL-1β, IL-6 and TNF-α in serum among fever rat models induced by lipopolysaccharide (LPS) in order to and investigate its action mechanism. A total of 50 rats were randomly divid-ed into 5 groups, including the normal control group, fever model group, XCHD group (high-dose), XCHD group (middle-dose), and XCHD group (low-dose). The fever rat model was established by intraperitoneal injection of LPS (20 μg/kg). At the same time, all rats were given corresponding XCHD or saline solution by gavage. The body tem-perature of rats (Ti) was measured every 30 min for 240 min after the injection of LPS. Change values of body tem-perature △T(△T=Ti-T0) were calculated. After the last measurement of body temperature, blood was taken for the de-tection of IL-1β, IL-6 and TNF-α level in serum with ELISA. The results showed that the body temperature of XCHD group (high-dose) was obviously decreased at the time point of 3 h, 3.5 h, 4 h (P< 0.01, or P< 0.05). This temperature reducing effect at the time point of 3.5 h and 4 h was better than the XCHD group (middle-dose) and XCHD group (low-dose, P< 0.01, or P< 0.05). Compared with the fever model group, all three XCHD groups can obviously reduce the IL-1β level (P< 0.05). Among them, the XCHD group (high-dose) had obvious effect (P<0.01). Compared with the fever model group, the XCHD group (high-dose) can obviously reduce contents of IL-6 and TNF-α in serum (P< 0.05). It was concluded that XCHD can reduce fever induced by LPS in rats and decrease contents of IL-1β, IL-6 and TNF-α in serum. This effect has a positive dose-effect relationship with the dose of Bu-pleurum in a certain range.

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