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Published in: Chinese Medicine 1/2015

Open Access 01-12-2015 | Research

Online near-infrared analysis coupled with MWPLS and SiPLS models for the multi-ingredient and multi-phase extraction of licorice (Gancao)

Authors: Yang Li, Mingye Guo, Xinyuan Shi, Zhisheng Wu, Jianyu Li, Qun Ma, Yanjiang Qiao

Published in: Chinese Medicine | Issue 1/2015

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Abstract

Background

This study aims to analyze the active pharmaceutical ingredients (APIs) of licorice (Radix Glycyrrhizae; gancao), including glycyrrhizic acid, liquiritin, isoliquiritin and total flavonoids, in multi-ingredient and multi-phase extraction by online near-infrared technology with fiber optic probes and chemometric analysis.

Methods

High-performance liquid chromatography and ultraviolet spectrophotometry determined the APIs content in different extraction phases by online near-infrared analysis, which included sample set selection by the Kennard–Stone algorithm, optimization of spectral pretreatment methods (i.e., orthogonal signal correction and wavelet denoising spectral correction), and model calibration by the partial least-squares algorithm, moving-window partial least-squares algorithm and synergy interval partial least-squares (SiPLS) algorithm. The relative errors and F values were used to assess the models in different extraction phases.

Results

The root-mean-square error of correction, root-mean-square error of cross-validation and root-mean-square error of prediction of APIs in the SiPLS model was less than 0.07. The F values of glycyrrhizic acid, liquiritin, isoliquiritin and total flavonoids were 10,765, 32,431, 649 and 6080, respectively, which were larger than 6.90 (P < 0.01).

Conclusion

The study demonstrated the feasibility of online NIR analysis in the multi-ingredient and multi-phase extraction of APIs from licorice.
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Literature
2.
go back to reference Reich G. Near-infrared spectroscopy and imaging: basic principles and pharmaceutical applications. Adv Drug Deliv Rev. 2005;57(8):1109–43.PubMedCrossRef Reich G. Near-infrared spectroscopy and imaging: basic principles and pharmaceutical applications. Adv Drug Deliv Rev. 2005;57(8):1109–43.PubMedCrossRef
3.
go back to reference Lee M, Seo D, Lee H, Wang I, Kim W, Jeong M, Choi G. In line NIR quantification of film thickness on pharmaceutical pellets during a fluid bed. coating process. Int J Pharm. 2011;403:66–72.PubMedCrossRef Lee M, Seo D, Lee H, Wang I, Kim W, Jeong M, Choi G. In line NIR quantification of film thickness on pharmaceutical pellets during a fluid bed. coating process. Int J Pharm. 2011;403:66–72.PubMedCrossRef
4.
go back to reference Jin Y, Ding H, Wu Y, Liu X, Chen Y. Near-infrared spectroscopy on-line and real-time monitoring of extraction process of Xuebijing Injection. Chin J Pharm Anal. 2012;32(7):1214–34. Jin Y, Ding H, Wu Y, Liu X, Chen Y. Near-infrared spectroscopy on-line and real-time monitoring of extraction process of Xuebijing Injection. Chin J Pharm Anal. 2012;32(7):1214–34.
5.
go back to reference Ni L, Shi X, Gao X, Wang N. Research on the application of on-line detection and analytical technique by NIR in quality control of water extracting process of Salvia miltiorrhiza. Chin J Pharm. 2004;39(8):628–30. Ni L, Shi X, Gao X, Wang N. Research on the application of on-line detection and analytical technique by NIR in quality control of water extracting process of Salvia miltiorrhiza. Chin J Pharm. 2004;39(8):628–30.
6.
go back to reference Zhang Y, Zhang J, Liu Y. Application of on-line quality control for Paeoniflor in Extraction by NIRS. Chin J Pharm. 2010;41(9):662–5. Zhang Y, Zhang J, Liu Y. Application of on-line quality control for Paeoniflor in Extraction by NIRS. Chin J Pharm. 2010;41(9):662–5.
7.
go back to reference Qi Y. Study on application of near-infrared spectroscopy in process analysis for Pueraria Lobata Ohwi production. Pharm. M. Thesis, Zhejiang University, Faculty of Pharmacy; 2006. Qi Y. Study on application of near-infrared spectroscopy in process analysis for Pueraria Lobata Ohwi production. Pharm. M. Thesis, Zhejiang University, Faculty of Pharmacy; 2006.
8.
go back to reference Li W, Qu H. On-line monitoring of total saponins in extracting process of Astragali Radix. Zhong Cao Yao. 2012;43(8):1531–5. Li W, Qu H. On-line monitoring of total saponins in extracting process of Astragali Radix. Zhong Cao Yao. 2012;43(8):1531–5.
9.
go back to reference Wu Y, Jin Y, Li Y, Sun D, Liu X, Chen Y. NIR spectroscopy as a process analytical technology (PAT) tool for on-line and real-time monitoring of an extraction process. Vib Spectrosc. 2012;58:109–18.CrossRef Wu Y, Jin Y, Li Y, Sun D, Liu X, Chen Y. NIR spectroscopy as a process analytical technology (PAT) tool for on-line and real-time monitoring of an extraction process. Vib Spectrosc. 2012;58:109–18.CrossRef
10.
go back to reference Zhang L. A review on pharmacological effects of licorice. Clin J Chin Med. 2014;6(10):147–9. Zhang L. A review on pharmacological effects of licorice. Clin J Chin Med. 2014;6(10):147–9.
11.
go back to reference National Commission of Chinese Pharmacopoeia. Pharmacopeia of People’s Republic of China. Beijing: Chinese medical Science and Technology Press; 2010. National Commission of Chinese Pharmacopoeia. Pharmacopeia of People’s Republic of China. Beijing: Chinese medical Science and Technology Press; 2010.
12.
go back to reference Wu Z, Peng Y, Chen W, Xu B, Ma Q, Shi X, Qiao Y. NIR spectroscopy as a process analytical technology (PAT) tool for monitoring and understanding of a hydrolysis process. Bioresour Technol. 2013;137:394–9.PubMedCrossRef Wu Z, Peng Y, Chen W, Xu B, Ma Q, Shi X, Qiao Y. NIR spectroscopy as a process analytical technology (PAT) tool for monitoring and understanding of a hydrolysis process. Bioresour Technol. 2013;137:394–9.PubMedCrossRef
13.
go back to reference Du W, Chen Z, Zhong L, Wang S, Yu R, Nordon A, Littlejohn D, Holden M. Maintaining the predictive abilities of multivariate calibration models by spectral space transformation. Anal Chim Acta. 2011;690(1):64–70.PubMedCrossRef Du W, Chen Z, Zhong L, Wang S, Yu R, Nordon A, Littlejohn D, Holden M. Maintaining the predictive abilities of multivariate calibration models by spectral space transformation. Anal Chim Acta. 2011;690(1):64–70.PubMedCrossRef
14.
go back to reference Sui C. The research on the applicability development of the on-line near infrared platform in the extraction of traditional Chinese medicine. Pharm. M. Thesis, Beijing University of Chinese Medicine, Faculty of Chinese meteria medica; 2013. Sui C. The research on the applicability development of the on-line near infrared platform in the extraction of traditional Chinese medicine. Pharm. M. Thesis, Beijing University of Chinese Medicine, Faculty of Chinese meteria medica; 2013.
15.
go back to reference Sui C, Wu Z, Peng Y, Zou L, Pei Y, Shi X, Qiao Y. Validation of NIR model for on-line monitoring of Flos Lonicera Japonica extraction process with different batches of materials. Int J Online Eng. 2013;9(4):44–8.CrossRef Sui C, Wu Z, Peng Y, Zou L, Pei Y, Shi X, Qiao Y. Validation of NIR model for on-line monitoring of Flos Lonicera Japonica extraction process with different batches of materials. Int J Online Eng. 2013;9(4):44–8.CrossRef
16.
go back to reference Zhu X, Shan Y, Li G, Huang A, Zhang Z. Prediction of wood property in Chinese Fir based on visible/near-infrared spectroscopy and least square-support vector machine. Spectrochim Acta Part A. 2009;74(2):344–8.CrossRef Zhu X, Shan Y, Li G, Huang A, Zhang Z. Prediction of wood property in Chinese Fir based on visible/near-infrared spectroscopy and least square-support vector machine. Spectrochim Acta Part A. 2009;74(2):344–8.CrossRef
17.
go back to reference Li W, Xing L, Cai Y, Qu H. Classification and quantification analysis of Radix Scutellariae from different origins with near infrared diffuse reflection spectroscopy. Vib Spectrosc. 2011;55(1):58–64.CrossRef Li W, Xing L, Cai Y, Qu H. Classification and quantification analysis of Radix Scutellariae from different origins with near infrared diffuse reflection spectroscopy. Vib Spectrosc. 2011;55(1):58–64.CrossRef
18.
go back to reference Zou X, Zhao J, Malcolm J, Mel H, Mao H. Variables selection methods in near-infrared spectroscopy. Anal Chim Acta. 2010;667:14–32.CrossRef Zou X, Zhao J, Malcolm J, Mel H, Mao H. Variables selection methods in near-infrared spectroscopy. Anal Chim Acta. 2010;667:14–32.CrossRef
19.
go back to reference Wu Z, Shi X, Wan G, Xu M, Zhan X, Qiao Y. Micro-electro-mechanical systems/near-infrared validation of different sampling modes and sample sets coupled with multiple models. Planta Med. 2015;81:167–74.PubMedCrossRef Wu Z, Shi X, Wan G, Xu M, Zhan X, Qiao Y. Micro-electro-mechanical systems/near-infrared validation of different sampling modes and sample sets coupled with multiple models. Planta Med. 2015;81:167–74.PubMedCrossRef
20.
go back to reference Choppin G, Downey J. Near-Infrared studies of the structure of water. IV. Water in relatively nonpolar solvents. J Chen Phys. 2003;56(12):5890–9.CrossRef Choppin G, Downey J. Near-Infrared studies of the structure of water. IV. Water in relatively nonpolar solvents. J Chen Phys. 2003;56(12):5890–9.CrossRef
21.
go back to reference Patricia P, Sanchez M, Dolores P, Guerrero J, Ana G. Evaluating NIR instruments for quantitative and qualitative assessment of intact apple quality. Sci Food Aric. 2009;89(5):781–90.CrossRef Patricia P, Sanchez M, Dolores P, Guerrero J, Ana G. Evaluating NIR instruments for quantitative and qualitative assessment of intact apple quality. Sci Food Aric. 2009;89(5):781–90.CrossRef
22.
go back to reference Roggo Y, Chalus P, Maurer L, Lema-Martinez C, Edmond A, Jent N. A review of near infrared spectroscopy and chemometrics in pharmaceutical technologies. J Pharm Biomed Anal. 2007;44(3):683–700.PubMedCrossRef Roggo Y, Chalus P, Maurer L, Lema-Martinez C, Edmond A, Jent N. A review of near infrared spectroscopy and chemometrics in pharmaceutical technologies. J Pharm Biomed Anal. 2007;44(3):683–700.PubMedCrossRef
23.
go back to reference Zhao N, Wu Z, Zhang Q, Shi X, Ma Q, Qiao Y. Optimization of parameter selection for partial least squares model development. Sci. Rep. 2015;5(11647):1–10. Zhao N, Wu Z, Zhang Q, Shi X, Ma Q, Qiao Y. Optimization of parameter selection for partial least squares model development. Sci. Rep. 2015;5(11647):1–10.
24.
go back to reference Luypaert J, Massart D, Heyden Y. Near-infrared spectroscopy applications in pharmaceutical analysis. Talanta. 2007;72(3):865–83.PubMedCrossRef Luypaert J, Massart D, Heyden Y. Near-infrared spectroscopy applications in pharmaceutical analysis. Talanta. 2007;72(3):865–83.PubMedCrossRef
25.
go back to reference Wu Z, Ma Q, Lin Z, Peng Y, Ai L, Shi X, Qiao Y. A novel model selection strategy using total error concept. Talanta. 2013;107:248–54.PubMedCrossRef Wu Z, Ma Q, Lin Z, Peng Y, Ai L, Shi X, Qiao Y. A novel model selection strategy using total error concept. Talanta. 2013;107:248–54.PubMedCrossRef
26.
go back to reference Lu W. Modern Near Infrared Spectroscopy. 2nd ed. Beijing: China Petrochemical Press; 2007. Lu W. Modern Near Infrared Spectroscopy. 2nd ed. Beijing: China Petrochemical Press; 2007.
27.
go back to reference Wu Z, Sui C, Xu B, Ai L, Ma Q, Shi X, Qiao Y. Multivariate detection limits of on-line NIR model for extraction process of chlorogenic acid from Lonicera japonica. J Pharmaceut Biomed Anal. 2013;77:16–20.CrossRef Wu Z, Sui C, Xu B, Ai L, Ma Q, Shi X, Qiao Y. Multivariate detection limits of on-line NIR model for extraction process of chlorogenic acid from Lonicera japonica. J Pharmaceut Biomed Anal. 2013;77:16–20.CrossRef
Metadata
Title
Online near-infrared analysis coupled with MWPLS and SiPLS models for the multi-ingredient and multi-phase extraction of licorice (Gancao)
Authors
Yang Li
Mingye Guo
Xinyuan Shi
Zhisheng Wu
Jianyu Li
Qun Ma
Yanjiang Qiao
Publication date
01-12-2015
Publisher
BioMed Central
Published in
Chinese Medicine / Issue 1/2015
Electronic ISSN: 1749-8546
DOI
https://doi.org/10.1186/s13020-015-0069-2

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