Optimization of Processing Technology of Ginseng Radix et Rhizoma Rubra by HPLC Fingerprint Combined with Orthogonal Test
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Optimization of Processing Technology of Ginseng Radix et Rhizoma Rubra by HPLC Fingerprint Combined with Orthogonal Test
China PharmacyVol. 31, Issue 10, (2020)
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Published:2020,
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HOU Xinlian, HUANG Lu, PENG Cheng, et al. Optimization of Processing Technology of Ginseng Radix et Rhizoma Rubra by HPLC Fingerprint Combined with Orthogonal Test. [J]. China Pharmacy 31(10).(2020)
DOI:
HOU Xinlian, HUANG Lu, PENG Cheng, et al. Optimization of Processing Technology of Ginseng Radix et Rhizoma Rubra by HPLC Fingerprint Combined with Orthogonal Test. [J]. China Pharmacy 31(10).(2020)DOI:
Optimization of Processing Technology of Ginseng Radix et Rhizoma Rubra by HPLC Fingerprint Combined with Orthogonal Test
OBJECTIVE:To establish an HPLC fing erprint of Ginsen g Radix et Rhizoma Rubra ,and to optimize its processing technology. METHODS :HPLC method was adopted. The determination was performed on Waters SymmetryShield TM RP18 column with mobile phase consisted of acetonitrile-water (gradient elution )at the flow rate of 1.0 mL/min. The column temperature was set at 30 ℃,and the detection wavelength was 203 nm. The sample size was 10 μL. Using ginsenoside Rb1 as reference peak ,HPLC fingerprints of 10 batches of Ginseng Radix et Rhizoma Rubra was established. The similarity of them was evaluated by using Similarity Evaluation System of TCM Chromatogram Fingerprint (2012 A edition ) to confirm common peak. With steaming temperature,time and drying method as factors ,using the content of ginsenoside and fingerprint similarity as index ,the processing technology was optimized with L 16(43)orthogonal test design and verified. Cluster analysis was conducted with SPSS 19.0 statistical software of 10 batches of Ginseng Radix et Rhizoma Rubra and 3 batches of optimal processed sample. RESULTS :There were a total of 13 common peaks in the fingerprints of 10 batches of Ginseng Radix et Rhizoma Rubra. The similarity was more than 0.920;3 common peaks were identified ,such as ginsenoside Rg 1,ginsenoside Re ,ginsenoside Rb 1. The optimal processing technology included that steamed at 100 ℃ for 150 min,dried at 60 ℃. The results of validation test show that the contents of ginsenoside Rg 1,Re and Rb 1 were 0.26%-0.29%,0.17%-0.20%,0.47%-0.54%,and the similarity between 3 batches of Ginseng Radix et Rhizome Rubra optimal processed sample and the control fingerprints was more than 0.970. The results of cluster analysis showed that 10 batches of Gimseng Radix et Rhizoma Rubra and 3 batches of optimal processed sample could be clustered into two categories;HS3-HS10 could be clustered into one category ,and 3 batches of optimal processed sample ,HS1 and HS 2 be clustered into one category. CONCLUSIONS :Established fingerprint can be used for the optimization of processing technology of Gimseng Radix et Rhizoma Rubra ,and characterize the correlation between f luctuation of technology parameter and quality of medicinal material;the optimal processing technology is reasonable an d
Quality evaluation of Xin ’an capsules by combination of fingerprint ,multi-component quantitative analysis and chemical pattern recognition analysis
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