1.Research of Shangke Huoxue Decoction based on multi-component TLC identification and content determination
Xu ZHOU ; Runkong WANG ; Mingquan WU ; Liyang ZHU ; Wei PENG ; He TU
International Journal of Traditional Chinese Medicine 2022;44(7):781-785
Objective:To establish the TLC identification method and content determination method of ferulic acid, ligustilide, hydroxysafflor yellow A and paeoniflorin in Shangke Huoxue Decoction for quality evaluation.Methods:Ferulic acid, ligustilide, hydroxysafflor yellow A and paeoniflorin were qualitatively identified by TLC method, and the content was determined by HPLC method. Waters Symmetry ShieldTM RP18 column (4.6 mm×250 mm, 5 μm) was set, the mobile phase consisted of acetonitrile-0.15% phosphoric acid water with gradient elution at a flow of 1.0 ml/min, and the column temperature was 30 ℃.The detection wavelength was 320 nm (33-50 min for ferulic acid, 55-70 min for ligustilide), 403 nm (7-31 min for hydroxysafflor yellow A) and 230 nm (7-31 min for paeoniflorin).Results:The TLC spots were clear. The linear relationships of ferulic acid, ligustilide, and hydroxysafflor yellow A were good in the range of 3.05-48.74 μg, 3.50-26.24 μg, 21.34-213.44 μg. The method was stable, repeatable with good recovery rate.Conclusion:The TLC and HPLC method for the simutanous determination of the four effective components in Shangke Huoxue Decoction were established, and the methods are suitable for the quality evaluation of Shangke Huoxue Decoction.
2.Optimization of the extraction process of Shangke Huoxue Granule by central composite design-response surface methodology
Runkong WANG ; Liyang ZHU ; Mingquan WU ; Wei PENG ; Heng HU ; Congyang XU ; He TU ; Xu ZHOU
International Journal of Traditional Chinese Medicine 2023;45(4):451-455
Objective:To optimize the extraction process of Shangke Huoxue Granule.Methods:Taking the factors of extraction solvent multiple, extraction time and extraction times as investigation factors, and extraction amount of ferulic acid, paeoniflorin and the ratio of extraction as comprehensive evaluation indices, one-factor experimental design and central composite design-response surface methodology were adopted to optimize the extraction process of Shangke Huoxue Granule.Results:The binomial fitting equation was Y=96.16+2.42 A+0.63 B-3.76 AB-1.57 A2-1.87 B2 ( P<0.01). The optimal extraction process parameters were confirmed to be adding 16 times of water, 64 minutes each time, twice. The deviation rates between the measured values of three verification experiments and the predicted value were 2.00%, 3.23% and 0.66%. Conclusion:The established model of central composite design-response surface methodology has high predictability and the optimized extraction process is stable and feasible.