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Current Pharmaceutical Analysis

Editor-in-Chief

ISSN (Print): 1573-4129
ISSN (Online): 1875-676X

Research Article

New Monitoring Strategy for the Quality Control in the Processing Practice of Scutellariae Radix

Author(s): Qi Huang, Chunsong Cheng, Lili Li, Daiyin Peng* and Cun Zhang*

Volume 16, Issue 3, 2020

Page: [303 - 311] Pages: 9

DOI: 10.2174/1573412915666190314121434

Price: $65

Abstract

Background: Scutellariae Radix (Huangqin) is commonly processed into 3 products for different clinical applications. However, a simple analytical method for quality control has rarely been reported to quickly estimate the degree of processing Huangqin or distinguish differently processed products or unqualified Huangqin products.

Objective: To study a new strategy for quality control in the processing practice of Huangqin.

Methods: Seven kinds of flavonoids that mainly exist in Huangqin were determined by HPLC-DAD. Chromatographic fingerprints were established to study the variation and discipline of the 3 processed products of Huangqin. PCA and OPLS-DA were used to classify differently processed products of Huangqin.

Results: The results showed that baicalin and wogonoside were the main components in the crude and the alcohol Huangqin herb while baicalein and wogonin mainly existed in carbonized Huangqin. The results of mathematical statistics revealed that the processing techniques can make the quality of medicinal materials more uniform.

Conclusion: This multivariate monitoring strategy is suitable for quality control in the processing of Huangqin.

Keywords: Huangqin, processing, quality control, fingerprints, flavonoids, HPLC.

Graphical Abstract
[1]
Sheridan, H.; Kopp, B.; Krenn, L.; Guo, D.; Sendker, J. Traditional Chinese herbal medicine preparation: invoking the butterfly effect. Sci, 2015, 350(6262), S64-S66.
[2]
Wu, X.; Wang, S.; Lu, J.; Jing, Y.; Li, M.; Cao, J.; Bian, B.; Hu, C. Seeing the unseen of Chinese herbal medicine processing (Paozhi): advances in new perspectives. Chin. Med., 2018, 13(1), 4-16.
[http://dx.doi.org/10.1186/s13020-018-0163-3] [PMID: 29375653]
[3]
Zhao, Z.; Liang, Z.; Chan, K.; Lu, G.; Lee, E.L.M.; Chen, H.; Li, L. A unique issue in the standardization of Chinese materia medica: processing. Planta Med., 2010, 76(17), 1975-1986.
[http://dx.doi.org/10.1055/s-0030-1250522] [PMID: 21049396]
[4]
Zhang, D.Y.; Wu, J.; Ye, F.; Xue, L.; Jiang, S.; Yi, J.; Zhang, W.; Wei, H.; Sung, M.; Wang, W.; Li, X. Inhibition of cancer cell proliferation and prostaglandin E2 synthesis by Scutellaria baicalensis. Cancer Res., 2003, 63(14), 4037-4043.
[PMID: 12874003]
[5]
Jeong, K.; Shin, Y.C.; Park, S.; Park, J.S.; Kim, N.; Um, J.Y.; Go, H.; Sun, S.; Lee, S.; Park, W.; Choi, Y.; Song, Y.; Kim, G.; Jeon, C.; Park, J.; Lee, K.; Bang, O.; Ko, S.G. Ethanol extract of Scutellaria baicalensis Georgi prevents oxidative damage and neuroinflammation and memorial impairments in artificial senescense mice. J. Biomed. Sci., 2011, 18(1), 14-25.
[http://dx.doi.org/10.1186/1423-0127-18-14] [PMID: 21299906]
[6]
Li, H.B.; Jiang, Y.; Chen, F. Separation methods used for Scutellaria baicalensis active components. J. Chromatogr. B Analyt. Technol. Biomed. Life Sci., 2004, 812(1-2), 277-290.
[http://dx.doi.org/10.1016/S1570-0232(04)00545-8] [PMID: 15556504]
[7]
Choi, Y.A.; Kang, O.H.; Park, H.J.; Tae, J.; Kim, D.K.; Kang, C.S.; Choi, S.C.; Yun, K.J.; Choi, S.J.; Nah, Y.H.; Kim, Y.H.; Bae, K.H.; Lee, Y.M. Effect of processed Scutellaria baicalensis on dextran sulfate sodium-induced colitis in mice. Int. J. Mol. Med., 2005, 16(4), 667-672.
[PMID: 16142402]
[8]
Han, Y.F.; Zhou, Q.; Chen, H.; Han, C.Y.; Li, S.G.; Liu, C.Y. Clinical application and research progress of carbonized Traditional Chinese Medicine. Amino Acids & Biotic Resources, 2015, 37(3), 1-6.
[9]
Torreggiani, D.; Bertolo, G. Osmotic pre-treatments in fruit processing: chemical, physical and structural effects. J. Food Eng., 2001, 49(2-3), 247-253.
[http://dx.doi.org/10.1016/S0260-8774(00)00210-7]
[10]
Zhao, J.; Wang, M.; Avula, B.; Zhong, L.; Song, Z.; Xu, Q.; Li, S.; Khan, I.A. Effect of Processing on the traditional Chinese herbal medicine flos lonicerae: An NMR-based chemometric approach. Planta Med., 2015, 81(9), 754-764.
[http://dx.doi.org/10.1055/s-0035-1546081] [PMID: 26039268]
[11]
Siddiquia, M.R.; AlOthman, Z.A.; Rahman, N. Analytical techniques in pharmaceutical analysis: a review. Arab. J. Chem., 2017, 10, S1409-S1421.
[http://dx.doi.org/10.1016/j.arabjc.2013.04.016]
[12]
AlOthman, Z.A.; Rahman, N.; Siddiqui, M.R. Review on pharmaceutical impurities, stability studies and degradation products: an analytical approach. Rev. Adv. Sci. Eng, 2013, 2, 155-166.
[http://dx.doi.org/10.1166/rase.2013.1039]
[13]
Rahman, N.; Azmi, S.N.H.; Wu, H.F. The importance of impurity analysis in pharmaceutical products: an integrated approach. Accredit. Qual. Assur., 2006, 11, 69-74.
[http://dx.doi.org/10.1007/s00769-006-0095-y]
[14]
Ma, X.L.; Song, F.F.; Zhang, H.; Huan, X.; Li, S.Y. Compositional Monosaccharide Analysis of Morus nigra Linn by HPLC and HPCE Quantitative Determination and Comparison of Polysaccharide from Morus nigra Linn by HPCE and HPLC. Curr. Pharm. Anal., 2017, 13(5), 433-437.
[http://dx.doi.org/10.2174/1573412913666170330150807] [PMID: 29213223]
[15]
Huang, L.; Fuchino, H.; Kawahara, N.; Narukawa, Y.; Hada, N.; Kiuchi, F. Application of a new method, orthogonal projection to latent structure (OPLS) combined with principal component analysis (PCA), to screening of prostaglandin E2 production inhibitory flavonoids in Scutellaria Root. J. Nat. Med., 2016, 70(4), 731-739.
[http://dx.doi.org/10.1007/s11418-016-1004-2] [PMID: 27164908]
[16]
Feng, X.; Kong, W.; Wei, J.; Ou-Yang, Z.; Yang, M. HPLC fingerprint analysis combined with chemometrics for pattern recognition of ginger. Pharm. Biol., 2014, 52(3), 362-367.
[http://dx.doi.org/10.3109/13880209.2013.837493] [PMID: 24171804]
[17]
Zhu, L.X.; Xu, J.; Wang, R.J.; Li, H.X.; Tan, Y.Z.; Chen, H.B.; Dong, X.P.; Zhao, Z.Z. Correlation between quality and geographical origins of Poria cocos revealed by qualitative fingerprint profiling and quantitative determination of triterpenoid acids. Molecules, 2018, 23(9), 2200-2216.
[http://dx.doi.org/10.3390/molecules23092200] [PMID: 30200284]
[18]
China Pharmacopoeia Committee. Chinese pharmacopoeia; China Medical Science Press: Beijing, China, 2015, pp. 300-301.
[19]
Ku, S.K.; Bae, J.S. Antithrombotic activities of wogonin and wogonoside via inhibiting platelet aggregation. Fitoterapia, 2014, 98, 27-35.
[http://dx.doi.org/10.1016/j.fitote.2014.07.006] [PMID: 25020199]

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