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PHARMACEUTICAL ANALYSIS

Rapid Simultaneous Determination of Andrographolides in Andrographis paniculata by Near-Infrared Spectroscopy

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Pages 2747-2762 | Received 14 Jan 2018, Accepted 06 Mar 2018, Published online: 07 May 2018

References

  • Abughefreh, A. A., H. Canatan, and C. I. Ezeamuzie. 2009. In vitro and in vivo anti-inflammatory effects of andrographolide. Int. Immunopharmacol. 9:313–18. doi:10.1016/j.intimp.2008.12.002.
  • Adedipe, O. E., S. D. Johanningsmeier, V. D. Truong, and G. C. Yencho. 2016. Development and validation of a near-infrared spectroscopy method for the prediction of acrylamide content in french-fried potato. J. Agr. Food Chem. 64:1850. doi:10.1021/acs.jafc.5b04733.
  • Ahmad, M., A. Razak, G. A. Akowuah, Z. Asmawi, and I. Zhari. 2007. HPLC profile and antihyperglycemic effect of ethanol extracts of Andrographis paniculata, in normal and streptozotocin-induced diabetic rats. J. Nat. Med. 61:422–29. doi:10.1007/s11418-007-0157-4.
  • Alam, M., S. Ahmad, and A. Malik. 2011. Bioassay guided isolation of antibacterial compounds from Andrographis paniculata. Am. J. Applied Sci. 8:525–34.
  • Badami, S. 2010. A novel microwave-assisted extraction for the isolation of andrographolide from and its antioxidant activity. Nat. Prod. Res. 24:1560–67.
  • Balap, A., S. Lohidasan, A. Sinnathambi, and K. Mahadik. 2017. Herb-drug interaction of Andrographis paniculata (nees) extract and andrographolide on pharmacokinetic and pharmacodynamic of naproxen in rats. J. Ethnopharmacol. 195:214–21. doi:10.1016/j.jep.2016.11.022.
  • Chang, C. W., D. A. Laird, M. J. Mausbach, and C. R. Hurburgh. 2001. Near-infrared reflectance spectroscopy-principal components regression analyses of soil properties. Soil. Sci. Soc. Am. J. 65:480–90. doi:10.2136/sssaj2001.652480x
  • Chinese Pharmacopoeia. 2015. Pharmacopoeia of the people’s Republic of China part I. Beijing, China: China Medical Science Press.
  • Corro-Herrera, V. A., J. Gómez-Rodríguez, P. M. Hayward-Jones, D. M. Barradas-Dermitz, M. G. Aguilar-Uscanga, and A. C. Gschaedler-Mathis. 2016. In-situ monitoring of saccharomyces cerevisiae itv01 bioethanol process using near-infrared spectroscopy NIRS and chemometrics. Biotechnol. Progr. 32:510–17. doi:10.1002/btpr.2222.
  • Ding, G., B. Li, Y. Han, A. Liu, J. Zhang, J. Peng, M. Jiang, Y. Hou, and G. Bai. 2016. A rapid integrated bioactivity evaluation system based on near-infrared spectroscopy for quality control of Flos Chrysanthemi. J. Pharm. Biomed. Anal. 131:391–99. doi:10.1016/j.jpba.2016.09.008.
  • Dong, W., Y. Ni, and S. Kokot. 2014. A novel near-infrared spectroscopy and chemometrics method for rapid analysis of several chemical components and antioxidant activity of mint (Mentha haplocalyx Briq.) samples. Appl. Spectrosc. 68:245. doi:10.1366/13-07091.
  • Douglas, R. K., S. Nawar, M. C. Alamar, A. M. Mouazen, and F. Coulon. 2018. Rapid prediction of total petroleum hydrocarbons concentration in contaminated soil using vis-NIR spectroscopy and regression techniques. Sci. Total Environ. s616–617:147–55.
  • García-Molina, M. D., J. García-Olmo, and F. Barro. 2016. Effective identification of low-gliadin wheat lines by near infrared spectroscopy (NIRS): Implications for the development and analysis of foodstuffs suitable for celiac patients. Plos One 11:1–13. doi:10.1371/journal.pone.0152292.
  • Han, Z., S. Cai, X. Zhang, Q. Qian, Y. Huang, F. Dai, and G. P. Zhang. 2017. Development of predictive models for total phenolics and free p-coumaric acid contents in barley grain by near-infrared spectroscopy. Food Chem. 227:342–48. doi:10.1016/j.foodchem.2017.01.063.
  • Huang, H., M. Liu, and P. Chen. 2014. Recent advances in ultra-high performance liquid chromatography for the analysis of traditional Chinese medicine. Anal. Lett. 47:1835–51. doi:10.1080/00032719.2014.888727.
  • Huang, J. Y., X. L. Liu, S. P. Zhou, L. Tong, and L. Ding. 2014. Research on UPLC-PDA fingerprint of Andrographis paniculata and quantitative determination of 4 major constituents. China J. Chin. Mater. Med. 39:4240–45.
  • Hussain, R. M., Z. N. R. A. Razak, M. M. S. Wan, and M. Mustakim. 2017. Mechanism of antagonistic effects of Andrographis paniculata methanolic extract against staphylococcus aureus. Asian Pac. J. Trop. Med. 10:747–57. doi:10.1016/j.apjtm.2017.07.009.
  • Islam, M. T. 2017. Andrographolide, a new hope in the prevention and treatment of metabolic syndrome. Front. Pharmacol. 8:571. doi:10.3389/fphar.2017.00571.
  • Jain, D. C., M. M. Gupta, S. Saxena, and S. Kumar. 2000. Lc analysis of hepatoprotective diterpenoids from Andrographis paniculata. J. Pharmaceut. Biomed. 22:705. doi:10.1016/s0731-7085(99)00297-6.
  • Karioti, A., P. Timoteo, M. C. Bergonzi, and A. R. Bilia. 2017. A validated method for the quality control of Andrographis paniculata preparations. Planta Med. 83:1207–13. doi:10.1055/s-0043-113827.
  • Li, W., Y. Wang, and H. Qu. 2012. Near infrared spectroscopy as a tool for the rapid analysis of the honeysuckle extracts. Vib. Spectrosc. 62:159–64. doi:10.1016/j.vibspec.2012.07.005.
  • Low, M., C. S. Khoo, G. Münch, S. Govindaraghavan, and N. J. Sucher. 2015. An in vitro study of anti-inflammatory activity of standardised Andrographis paniculata extracts and pure andrographolide. Bmc Complem. Altern. M. 15:1–9. doi:10.1186/s12906-015-0525-7.
  • Malley, D. F., C. McClure, P. D. Martin, K. Buckley, and W. P. McCaughey. 2005. Compositional analysis of cattle manure during composting using a field-portable near-infrared spectrometer. Commun. Soil Sci. Plant Anal. 36:455–75. doi:10.1081/css-200043187
  • Michel, J., W. Albertin, M. Jourdes, F. A. Le, T. Giordanengo, N. Mourey, and P. L. Teissedre. 2016. Variations in oxygen and ellagitannins, and organoleptic properties of red wine aged in french oak barrels classified by a near infrared system. Food Chem. 204:381–90. doi:10.1016/j.foodchem.2016.02.129.
  • Mishr, K., A. P. Dash, and N. Dey. 2011. Andrographolide: a novel antimalarial diterpene lactone compound from andrographis paniculata and its interaction with curcumin and artesunate. J. Trop. Med. 2011:579518. doi:10.1155/2011/579518.
  • Nie, L., Z. Dai, and S. Ma. 2016. Enhanced accuracy of near-infrared spectroscopy for traditional Chinese medicine with competitive adaptive reweighted sampling. Anal. Lett. 49:2259–67. doi:10.1080/00032719.2016.1143479.
  • Nugroho, A. E., N. Y. Lindawati, K. Herlyanti, L. Widyastuti, and S. Pramono. 2013. Anti-diabetic effect of a combination of andrographolide-enriched extract of Andrographis paniculata (burm f.) nees and asiaticoside-enriched extract of Centella asiatica L. in high fructose-fat fed rats. Indian J. exp. Biol. 51:1101–08.
  • Patel, M. B., V. M. Kadakia, and S. H. Mishra. 2008. Simultaneous estimation of andrographolide and wedelolactone in herbal formulations. Indian. J. Pharm. Sci. 70 (5):689. doi:10.4103/0250-474x.45421.
  • Pattiyappan, S., and S. N. Suresh. 2015. In vitro antifungal and anticancer efficacy of methanolic leaf extract of Andrographis paniculata (nees). Int. J. Pharmtech Res. 7:148–55.
  • Pholphana, N., N. Rangkadilok, S. Ritruechai, and J. Satayavivad. 2013. Changes in the contents of four active diterpenoids at different growth stages in Andrographis paniculata (burm.f.) nees (chuanxinlian). Chin. Med. Uk. 8:1–12. doi:10.1186/1749-8546-8-2.
  • Prieto, N., O. Pawluczyk, D. Mer, and J. L. Aalhus. 2017. A review of the principles and applications of near-infrared spectroscopy to characterize meat, fat, and meat products. Appl. Spectrosc. 71:1403–26. doi:10.1177/0003702817709299.
  • Rajani, M., N. Shrivastava, and N. Ravishankara. 2000. A rapid method for isolation of andrographolide from Andrographis paniculata Nees (Kalmegh). Pharm. Biol. 38:204–09. doi:10.1076/1388-0209(200007)38:3;1-s;ft204.
  • Roy, S., K. Rao, C. Bhuvaneswari, A. Giri, and L. N. Mangamoori. 2010. Phytochemical analysis of Andrographis paniculata extract and its antimicrobial activity. World J. Microb. Biot. 26:85–91. doi:10.1007/s11274-009-0146-8.
  • Santos, A. F., E. L. Lima, and J. C. Pinto. 2015. Control and design of average particle size in styrene suspension polymerizations using NIRS. J. Appl. Polym. Sci. 77:453–62. doi:10.1002/(sici)1097-4628(20000711)77:2<453::aid-app23>3.0.co;2-s.
  • Shen, T., W. S. Yang, Y. S. Yi, G. H. Sung, M. H. Rhee, H. Poo, M. Y. Kim, K. W. Kim, J. H. Kim, and J. Y. Cho. 2013. Ap-1/irf-3 targeted anti-inflammatory activity of andrographolide isolated from Andrographis paniculata. Evid-Based Compl. Alt. M. 2013:210736. doi:10.1155/2013/210736.
  • Skou, P. B., T. A. Berg, S. D. Aunsbjerg, D. Thaysen, M. A. Rasmussen, and B. F. Van. 2017. Monitoring process-water quality using near infrared spectroscopy and partial least squares regression with prediction uncertainty estimation. Appl. Spectrosc. 71:410. doi:10.1177/0003702816654165.
  • Tallo-Parra, O., E. Albanell, A. Carbajal, L. Monclus, X. Manteca, and M. Lopez-Bejar. 2017. Prediction of cortisol and progesterone concentrations in cow hair using near-infrared reflectance spectroscopy (NIRS). Appl. Spectrosc. 71:1954. doi:10.1177/0003702817710295.
  • Uttekar, M. M., T. Das, R. S. Pawar, B. Bhandari, V. Menon, N. Nutan, S. K. Gupta, and S. V. Bha. 2012. Anti-HIV activity of semisynthetic derivatives of andrographolide and computational study of hiv-1 gp120 protein binding. Eur. J. Med. Chem. 56:368–74. doi:10.1002/chin.201313186.
  • Wang, M., and G. Franz. 2015. The role of the European Pharmacopoeia (Ph Eur) in quality control of traditional Chinese herbal medicine in European member states. World J. Tradit. Chin. Med. 1:5–15. doi:10.15806/j.issn.2311-8571.2014.0021.
  • Weng, Z., X. Liu, J. Hu, J. Mu, J. Xie, C. Yao, and L. Li. 2017. Protective effect of dehydroandrographolide on obstructive cholestasis in bile duct-ligated mice. Oncotarget 8:87903–13. doi:10.18632/oncotarget.21233.
  • Wu, D., P. Nie, Y. He, and Y. Bao. 2012. Determination of calcium content in powdered milk using near and mid-infrared spectroscopy with variable selection and chemometrics. Food Bioprocess Tech. 5:1402–10. doi:10.1007/s11947-010-0492-4.
  • Xie, Y. J., Z. Wang, W. P. Hu, and S. Xu. 2012. Fast determination of trace dimethyl fumarate in milk with near infrared spectroscopy following fluidized bed enrichment. Anal. Bioanal. Chem. 404:3189–94. doi:10.1007/s00216-012-6436-2.
  • Xie, L., X. Ye, D. Liu, and Y. Ying. 2009. Quantification of glucose, fructose and sucrose in bayberry juice by NIR and PLS. Food Chem. 114:1135–40. doi:10.1016/j.foodchem.2008.10.076.
  • Yan, S. M., J. P. Liu, L. Xu, X. S. Fu, H. F. Cui, Z. Y. Yun, X. P. Yu, and Z. H. Ye. 2014. Rapid discrimination of the geographical origins of an oolong tea (anxi-tieguanyin) by near-infrared spectroscopy and partial least squares discriminant analysis. J. Anal. Methods. Chem. 2014:704971. doi:10.1155/2014/704971.
  • Yan Fang, Z., L. Xingping, Z. Zongde, C. Liren, and L. Yongmin. 2006. Simultaneous determination of andrographolide and dehydroandrographolide in Andrographis paniculata and Chinese medicinal preparations by microemulsion electrokinetic chromatography. J. Pharm. Biom. Anal. 40:157. doi:10.1016/j.jpba.2005.04.003.
  • Zamparini, G., G. Butin, M. O. Fischer, J. L. Gérard, J. L. Hanouz, and J. L. Fellahi. 2015. Noninvasive assessment of peripheral microcirculation by near-infrared spectroscopy: A comparative study in healthy smoking and nonsmoking volunteers. J. Clin. Monit. Comput. 29:555–59. doi:10.1007/s10877-014-9631-1.
  • Zhang, G., P. Li, W. Zhang, and J. Zhao. 2017. Analysis of multiple soybean phytonutrients by near-infrared reflectance spectroscopy. Anal. Bioanal. Chem. 409:1–11. doi:10.1007/s00216-017-0288-8.
  • Zhang, H. Y., X. F. Xu, Y. Huang, D. Q. Wang, and Q. H. Deng. 2014. Characteristic fingerprint analysis and determination of main components on Andrographis paniculata extract by UPLC. Zhong Yao Cai. 37:1055–58.
  • Zhao, J., G. Yang, H. Liu, D. Wang, X. Song, and Y. Chen. 2002. Determination of andrographolide, deoxyandrographolide and neoandrographolide in the Chinese herb Andrographis paniculata by micellar electrokinetic capillary chromatography. Phytochem. Anal. 13:222–27. doi:10.1002/pca.644.

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