RSM-optimized IRAE sample pretreatment and HPLC simultaneous determination of Tryptanthrin, indigo, and indirubin from Chinese herbal medicine Radix Isatidis

Czasopismo : Acta Chromatographica
Tytuł artykułu : RSM-optimized IRAE sample pretreatment and HPLC simultaneous determination of Tryptanthrin, indigo, and indirubin from Chinese herbal medicine Radix Isatidis

Autorzy :
Huo, H. L.
Hebei Medical University Department of Pharmaceutical Analysis, School of Pharmacy Shijiazhuang 050017 China,
Yu, S. H.
Hebei Medical University Department of Pharmaceutical Analysis, School of Pharmacy Shijiazhuang 050017 China,
Liu, X. Z.
Hebei Medical University Department of Pharmaceutical Analysis, School of Pharmacy Shijiazhuang 050017 China,
Meng, Y.
Hebei Medical University Department of Pharmaceutical Analysis, School of Pharmacy Shijiazhuang 050017 China,
Ren, Y. P.
Hebei Medical University Department of Pharmaceutical Analysis, School of Pharmacy Shijiazhuang 050017 China,
Zhang, L. T.
Hebei Medical University Department of Pharmaceutical Analysis, School of Pharmacy Shijiazhuang 050017 China, zhanglantong@263.net,
Liu, L.
Laboratory for New Resources and Quality Evaluation of Chinese Medicines The MOE Key Laboratory for Standardization of Chinese Medicines and The SATCM Key 1200 Cailun Road, Zhangjiang Hi-Tech Park Shanghai 201210 China,
Zhao, T.
Laboratory for New Resources and Quality Evaluation of Chinese Medicines The MOE Key Laboratory for Standardization of Chinese Medicines and The SATCM Key 1200 Cailun Road, Zhangjiang Hi-Tech Park Shanghai 201210 China,
Cheng, X. M.
Laboratory for New Resources and Quality Evaluation of Chinese Medicines The MOE Key Laboratory for Standardization of Chinese Medicines and The SATCM Key 1200 Cailun Road, Zhangjiang Hi-Tech Park Shanghai 201210 China,
Wang, C. H.
Laboratory for New Resources and Quality Evaluation of Chinese Medicines The MOE Key Laboratory for Standardization of Chinese Medicines and The SATCM Key 1200 Cailun Road, Zhangjiang Hi-Tech Park Shanghai 201210 China, wchcxm@hotmail.com,
Wang, Z. T.
Laboratory for New Resources and Quality Evaluation of Chinese Medicines The MOE Key Laboratory for Standardization of Chinese Medicines and The SATCM Key 1200 Cailun Road, Zhangjiang Hi-Tech Park Shanghai 201210 China, wangzt@hotmail.com,
Gao, X.
Sichuan University Department of Clinical Pharmacy and Pharmacy Administration, West China School of Pharmacy Chengdu, Sichuan China, gaomuxouzi@126.com,
Jiang, X.
Sichuan University Department of Clinical Pharmacy and Pharmacy Administration, West China School of Pharmacy Chengdu, Sichuan China,
Wang, L.
Sichuan University Department of Clinical Pharmacy and Pharmacy Administration, West China School of Pharmacy Chengdu, Sichuan China,
Urban, J.
University of South Bohemia in Ceske Budejovice Faculty of Fisheries and Protection of Waters, South Bohemian Research Center of Aquaculture and Biodiversity of Hydrocenoses, School of Complex Systems (former Institute of Physical Biology), Laboratory of Applied System Biology Zamek 136 Nove Hrady 373 33 Czech Republic, urbanj@frov.jcu.cz,
Vaněk, J.
University of South Bohemia in Ceske Budejovice Faculty of Fisheries and Protection of Waters, South Bohemian Research Center of Aquaculture and Biodiversity of Hydrocenoses, School of Complex Systems (former Institute of Physical Biology), Laboratory of Applied System Biology Zamek 136 Nove Hrady 373 33 Czech Republic,
Štys, D.
University of South Bohemia in Ceske Budejovice Faculty of Fisheries and Protection of Waters, South Bohemian Research Center of Aquaculture and Biodiversity of Hydrocenoses, School of Complex Systems (former Institute of Physical Biology), Laboratory of Applied System Biology Zamek 136 Nove Hrady 373 33 Czech Republic,
Li, C. D.
Chinese Academy of Sciences Key Laboratory of Chemistry of Northwestern Plant Resources and Key Laboratory for Natural Medicine of Gansu Province, Lanzhou Institute of Chemical Physics Lanzhou 730000 P.R. China,
Liu, Y.
Chinese Academy of Sciences Key Laboratory of Chemistry of Northwestern Plant Resources and Key Laboratory for Natural Medicine of Gansu Province, Lanzhou Institute of Chemical Physics Lanzhou 730000 P.R. China,
Shi, Y. P.
Chinese Academy of Sciences Key Laboratory of Chemistry of Northwestern Plant Resources and Key Laboratory for Natural Medicine of Gansu Province, Lanzhou Institute of Chemical Physics Lanzhou 730000 P.R. China, shiyp@licp.cas.cn,
Zhang, Y.
Sichuan University Department of Pharmaceutical and Biological Engineering Chengdu 610065 China, hangsong@vip.sina.com,
Peng, Q.
Sichuan University Department of Pharmaceutical and Biological Engineering Chengdu 610065 China,
Zeng, H.
Sichuan University Department of Pharmaceutical and Biological Engineering Chengdu 610065 China,
Yao, S.
Sichuan University Department of Pharmaceutical and Biological Engineering Chengdu 610065 China,
Zhang, Y.
Sichuan University Department of Pharmaceutical and Biological Engineering Chengdu 610065 China,
Song, H.
Sichuan University Department of Pharmaceutical and Biological Engineering Chengdu 610065 China,
Zhou, W.
Guiyang Medical University Department of Pharmaceutical Analysis, School of Pharmacy Guiyang 550004 China,
Zhang, X. Y.
Fudan University Department of Pharmaceutical Analysis, School of Pharmacy Shanghai 201203 China, drxyzhang@126.com,
Lv, Y. P.
Fudan University Department of Pharmaceutical Analysis, School of Pharmacy Shanghai 201203 China,
Liu, X. D.
Fudan University Department of Pharmaceutical Analysis, School of Pharmacy Shanghai 201203 China,
Xu, C.
Fudan University Department of Pharmaceutical Analysis, School of Pharmacy Shanghai 201203 China,
Duan, G. L.
Fudan University Department of Pharmaceutical Analysis, School of Pharmacy Shanghai 201203 China, glduan@shmu.edu.cn,
Abstrakty : Radix Isatidis has widely useful activities including anti-virus, anti-bacterial. Tryptanthrin, indigo, and indirubin are active ingredients in R. Isatidis. Response surface methodology (RSM)-optimized infrared-assisted extraction (IRAE) was developed and combined with HPLC for simultaneous determination of tryptanthrin, indigo, and indirubin from R. Isatidis. IRAE were investigated through extraction yields of the three components and optimized by RSM. The optimum conditions were as follows: infrared power of 129 W, solid/liquid ratio of 1:40 g/mL, and irradiation time of 22.5 min. IRAE conditions obtained by RSM were not only accurate, but also had practical value reflecting the expected optimization. Subsequently, this novel IRAE method was evaluated by extraction yield of the components of R. Isatidis samples from different regions. Compared with common extraction methods including maceration extraction (ME), reflux extraction (RE), ultrasound-assisted extraction (UAE), and microwave-assisted extraction (MAE), IRAE showed higher yield with advantages of no limitation of solvent selection, low cost, convenience under optimum extraction conditions. These results suggested the potential of RSM-optimized IRAE for extraction and analysis of the water-/fat-soluble compositions of Chinese herbal medicine. A simple chromatographic separation for simultaneous determination of tryptanthrin, indigo, and indirubin from Chinese herbal medicine R. Isatidis was performed on a C18 column (Diamonsil 150 mm × 4.6 mm i.d., 5 μm) with a mobile phase isocratic consisting of methanol and water at a flow-rate of 0.8 mL min-1. The retention times of tryptanthrin, indigo, and indirubin were 15.4, 31.9, and 58.6 min, respectively. The linear equations were obtained as follows: y = −3094.5744 + 21208.792x for tryptanthrin (R = 0.9998, 0.9–18.0 μg mL-1), y = 4730.0448 + 30180.567x for indigo (R = 0.9997, 0.5–10.0 μg mL−1) and y = −6582.9045 + 67069.312x for indirubin (R = 0.9997, 0.4–8.0 μg mL-1). The result showed that RSM-optimized IRAE was a simple, efficient pretreatment method for the analysis of complex matrix.

Słowa kluczowe : Chinese herbal medicine, high-performance liquid chromatography, infrared-assisted extraction, Radix Isatidis, response surface methodology, tryptanthrin,
Wydawnictwo : University of Silesia in Katowice
Rocznik : 2013
Numer : Vol. 25, no. 2
Strony : 297 – 315
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DOI :
Cytuj : Huo, H. L. ,Yu, S. H. ,Liu, X. Z. ,Meng, Y. ,Ren, Y. P. ,Zhang, L. T. ,Liu, L. ,Zhao, T. ,Cheng, X. M. ,Wang, C. H. ,Wang, Z. T. ,Gao, X. ,Jiang, X. ,Wang, L. ,Urban, J. ,Vaněk, J. ,Štys, D. ,Li, C. D. ,Liu, Y. ,Shi, Y. P. ,Zhang, Y. ,Peng, Q. ,Zeng, H. ,Yao, S. ,Zhang, Y. ,Song, H. ,Zhou, W. ,Zhang, X. Y. ,Lv, Y. P. ,Liu, X. D. ,Xu, C. ,Duan, G. L. , RSM-optimized IRAE sample pretreatment and HPLC simultaneous determination of Tryptanthrin, indigo, and indirubin from Chinese herbal medicine Radix Isatidis. Acta Chromatographica Vol. 25, no. 2/2013
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