Publication Cover
Spectroscopy Letters
An International Journal for Rapid Communication
Volume 50, 2017 - Issue 6
95
Views
5
CrossRef citations to date
0
Altmetric
ARTICLES

Geo-herbalism research of Polygalae Radix based on element profiles and chemometrics

, , , &
Pages 352-357 | Received 16 Feb 2017, Accepted 16 May 2017, Published online: 05 Jul 2017

References

  • Chinese Pharmacopoeia Committee. Chinese Pharmacopoeia; China Medical Science Press: Beijing, China, 2015; 156.
  • Lee, H. J.; Ban, J. Y.; Koh, S. B.; Seong, N. S.; Song, K. S.; Bae, K. W.; Seong, Y. H. Polygalae radix extract protects cultured rat granule cells against damage induced by NMDA. American Journal of Chinese Medicine 2004, 32(4), 599–610.
  • Choi, J. G.; Kim, H. G.; Kim, M. C.; Yang, W. M.; Huh, Y.; Kim, S. Y.; Oh, M. S. Polygalae radix inhibits toxin-induced neuronal death in the Parkinson’s disease models. Journal of Ethnopharmacology 2011, 134(2), 414–421.
  • Zhao, Y.; Zhou, X.; Zhao, Y. L.; Gong, X. J.; Zhao, C. A study of the geo-herbalism of Evodiae fructus based on a flow-injection mass spectrometric fingerprinting method combined with Chemometrics. Molecules 2015, 20(2), 2658–2667.
  • Liu, P.; Hu, Y.; Guo, D. H.; Wang, D. X.; Tu, H. H.; Ma, L.; Xie, T. T.; Kong, L. Y. Potential antidepressant properties of Radix Polygalae (Yuan Zhi). Phytomedicine 2010, 17(10), 794–799.
  • Ling, Y.; Li, Z.; Chen, M.; Sun, Z.; Fan, M.; Huang, C. Analysis and detection of the chemical constituents of Radix Polygalae and their metabolites in rats after oral administration by ultra high-performance liquid chromatography coupled with electrospray ionization quadrupole time-of-flight tandem mass spectrometry. Journal of Pharmaceutical and Biomedical Analysis 2013, 85, 1–13.
  • Li, J.; Dong, X.; Jiang, Y.; Gao, Q.; Jiang, Z.; Cheung, A. W.; Duan, R.; Dong, T. T.; Tu, P.; Tsim, K. W. Simultaneous determination of phenols in Radix Polygalae by high performance liquid chromatography: Quality assurance of herbs from different regions and seasons. Journal of Separation Science 2007, 30(16), 2583–2589.
  • Shi, Q.; Geng, S.; Chen, J.; Zhou, Q.; Jin, Y.; Lei, H.; Luan, L.; Liu, X.; Wu, Y. An efficient procedure for preparing main acylated pentasaccharides from Polygalae Radix using integrated extraction–adsorption method followed by semi-preparative high performance liquid chromatography. Separation and Purification Technology 2015, 153, 84–90.
  • Mazzanti, G.; Battinelli, L.; Daniele, C.; Costantini, S.; Ciaralli, L.; Evandri, M. G. Purity control of some Chinese crude herbal drugs marketed in Italy. Food and Chemical Toxicology: an International Journal Published for the British Industrial Biological Research Association 2008, 46(9), 3043–3047.
  • Bhat, R.; Kiran, K.; Arun, A. B.; Karim, A. A. Determination of mineral composition and heavy metal content of some nutraceutically valued plant products. Food Analytical Methods 2010, 3(3), 181–187.
  • Tokalıoğlu, Ş. Determination of trace elements in commonly consumed medicinal herbs by ICP-MS and multivariate analysis. Food Chemistry 2012, 134(4), 2504–2508.
  • Cooper, K.; Noller, B. N.; Connell, D. W.; Yu, J.; Sadler, R.; Olszowy, H.; Golding, G.; Tinggi, U.; Moore, M. R.; Myers, S. Public health risks from heavy metals and metalloids present in traditional Chinese medicines. Journal of Toxicology and Environmental Health. Part A 2007, 70(19), 1694–1699.
  • Crans, D. C.; Woll, K. A.; Prusinskas, K.; Johnson, M. D.; Norkus, E. Metal speciation in health and medicine represented by iron and vanadium. Inorganic Chemistry 2013, 52(21), 12262–12275.
  • Ernst, E.; Thompson Coon, J. Heavy metals in traditional Chinese medicines: a systematic review. Clinical Pharmacology and Therapeutics 2001, 70(6), 497–504.
  • Saper, R. B.; Kales, S. N.; Paquin, J.; Burns, M. J.; Eisenberg, D. M.; Davis, R. B.; Phillips, R. S. Heavy metal content of ayurvedic herbal medicine products. Jama 2004, 292(23), 2868–2873.
  • Garvey, G. J.; Hahn, G.; Lee, R. V.; Harbison, R. D. Heavy metal hazards of Asian traditional remedies. International Journal of Environmental Health Research 2001, 11(1), 63–71.
  • Kowal, A.; Panaszek, B.; Barg, W.; Obojski, A. The use of magnesium in bronchial asthma: a new approach to an old problem. Archivum Immunologiae Et Therapiae Experimentalis 2007, 55(1), 35–39.
  • Prasad, A. S. Clinical, immunological, anti-inflammatory and antioxidant roles of zinc. Experimental Gerontology 2008, 43(5), 370–377.
  • Sciacqua, A.; Perticone, M.; Cimellaro, A.; Tassone, E. J.; Tripepi, G.; Andreucci, M.; Sesti, G.; Perticone, F. Multiplicative effect of serum phosphorus levels and insulin resistance on hypertensive vascular stiffness. Thrombosis and Haemostasis 2016, 115(1), 227–229.
  • Rozentryt, P.; Nowak, J.; Niedziela, J.; Hudzik, B.; Doehner, W.; Jankowska, E. A.; Von Haehling, S.; Partyka, R.; Kawecka, E.; Myrda, K.; et al. Serum phosphorus level is related to degree of clinical response to up-titration of heart failure pharmacotherapy. International Journal of Cardiology 2014, 177(1), 248–254.
  • Yang, X.; Li, H.; Zhang, C.; Lin, Z.; Zhang, X.; Zhang, Y.; Yu, Y.; Liu, K.; Li, M.; Zhang, Y.; et al. Serum quantitative proteomic analysis reveals potential zinc-associated biomarkers for nonbacterial prostatitis. Prostate 2015, 75(14), 1538–1555.
  • Younas, M. S.; Butt, M. S.; Pasha, I.; Shahid, M. Effect of zinc fortified edible coated apricots on hematology in rabbits. Journal of Animal and Plant Science 2015, 25(4), 1140–1145.
  • Zhang, W.; Ouyang, Z.; Zhao, M.; Wei, Y.; Peng, H.; Wang, Q.; Guo, L. The influences of inorganic elements in soil on the development of famous: region Atractylodes lancea (Thunb.). DC. Pharmacognosy Magazine 2015, 11(42), 337–344.
  • Li, L.; Zheng, S.; Yang, Q.; Chen, S.; Huang, L. Distinguishing astragalus mongholicus and its Planting Soil Samples from different regions by ICP-AES. Molecules 2016, 21(4), 482.
  • Yi, L.; Dong, N.; Shi, S.; Deng, B.; Yun, Y.; Yi, Z.; Zhang, Y. Metabolomic identification of novel biomarkers of nasopharyngeal carcinoma. RSC Advances 2014, 4(103), 59094–59101.
  • Yi, L.; Dong, N.; Liu, S.; Yi, Z.; Zhang, Y. Chemical features of Pericarpium Citri Reticulatae and Pericarpium Citri Reticulatae Viride revealed by GC-MS metabolomics analysis. Food Chemistry 2015, 186, 192–199.
  • Zhang, X.; Yi, L.; Deng, B.; Chen, L.; Shi, S.; Zhuang, Y.; Zhang, Y. Discrimination of Acori Tatarinowii rhizoma and Acori Calami rhizoma based on quantitative gas chromatographic fingerprints and chemometric methods. Journal of Separation Science 2015, 38(23), 4078–4085.
  • Wold, S.; Sjöström, M.; Eriksson, L.; Eriksson, L. PLS-Regression: a basic tool of chemometrics. Chemometrics and Intelligent Laboratory Systems 2001, 58(2), 109–130.
  • Mehmood, T.; Liland, K. H.; Snipen, L.; Sæbø, S. A review of variable selection methods in partial least squares regression. Chemometrics and Intelligent Laboratory Systems 2012, 118, 62–69.
  • Boccard, J.; Veuthey, J. L.; Rudaz, S. Knowledge discovery in metabolomics: an overview of MS data handling. Journal of Separation Science 2010, 33(3), 290–304.
  • Favilla, S.; Durante, C.; Vigni, M. L.; Cocchi, M. Assessing feature relevance in NPLS models by VIP. Chemometrics and Intelligent Laboratory Systems 2013, 129, 76–86.
  • Ji, B.; Zhang, Z.; Zhang, M.; Zhu, H.; Zhou, K.; Yang, J.; Li, Y.; Sun, L.; Feng, G.; Wang, Y.; et al. Differential expression profiling of the synaptosome proteome in a rat model of antipsychotic resistance. Brain Research 2009, 1295, 170–178.
  • Emond, P.; Mavel, S.; Aïdoud, N.; Nadal-Desbarats, L.; Montigny, F.; Bonnet-Brilhault, F.; Barthélémy, C. R.; Merten, M.; Sarda, P.; Laumonnier, F.; et al. GC-MS-based urine metabolic profiling of autism spectrum disorders. Analytical and Bioanalytical Chemistry 2013, 405(15), 5291–5300.
  • Kwon, Y. K.; Jie, E. Y.; Sartie, A.; Kim, D. J.; Liu, J. R.; Min, B. W.; Kim, S. W. Rapid metabolic discrimination and prediction of dioscin content from African yam tubers using Fourier transform-infrared spectroscopy combined with multivariate analysis. Food Chemistry 2015, 166, 389–396.
  • Chen, L.; Yuan, D.; Zhang, X.; Lv, X. Y.; Wang, L.; Li, J. Elemental analysis of Acori Tatarinowii rhizoma by inductively coupled plasma emission and mass spectrometry with Chemometrics. Analytical Letters 2015, 48(18), 2882–2893.
  • Song, Y. A.; Melik, R.; Rabie, A. N.; Ibrahim, A. M.; Moses, D.; Tan, A.; Han, J.; Lin, S. J. Electrochemical activation and inhibition of neuromuscular systems through modulation of ion concentrations with ion-selective membranes. Nature Materials 2011, 10(12), 980–986.
  • Zhong, N.; Beaumont, V.; Zucker, R. S. Roles for mitochondrial and reverse mode Na+/Ca2+ exchange and the plasmalemma Ca2+ ATPase in post-tetanic potentiation at crayfish neuromuscular junctions. Journal of Neuroscience 2001, 21(24), 9598–9607.
  • Durlach, J.; Bac, P.; Bara, M.; Guiet-Bara, A. Physiopathology of symptomatic and latent forms of central nervous hyperexcitability due to magnesium deficiency: a current general scheme. Magnesium Research 2000, 13(4), 293–302.
  • Delhumeau, A.; Granry, J. C.; Monrigal, J. P.; Costerousse, F. Indications for the use of magnesium in anesthesia and intensive care. Annales Francaises D’anesthesie Et De Reanimation 1995, 14(5), 406–416.
  • Kim, B. E.; Nevitt, T.; Thiele, D. J. Mechanisms for copper acquisition, distribution and regulation. Nature Chemical Biology 2008, 4(3), 176–185.
  • Thurman, R. B.; Gerba, C. P.; Bitton, G. The molecular mechanisms of copper and silver ion disinfection of bacteria and viruses. Critical Reviews in Environmental Control 1989, 18(4), 295–315.
  • Henry, P. R.;. Manganese Bioavailability. In Bioavailability of Nutrients for Animals: Amino Acides, Minerals, and Vitamins; Ammerman, C. B., Baker, D. H., Lewis, A. J., Eds.; Academic Press: San Diego, CA, 1995, 239–256.
  • Cullen, J. J.; Weydert, C.; Hinkhouse, M. M.; Ritchie, J. M.; Domann, F. E.; Spitz, D. R.; Oberley, L. W. The role of manganese superoxide dismutase in the growth of pancreatic adenocarcinoma. Cancer Research 2003, 63(6), 1297–1303.
  • Thompson, K. H.; Orvig, C. Editorial: lanthanide compounds for therapeutic and diagnostic applications. Chemical Society Reviews 2006, 35(6), 499–499.
  • Fricker, S. P. The therapeutic application of lanthanides. Chemical Society Reviews 2006, 35(6), 524–533.
  • Panichev, A. M. Rare earth elements: Review of medical and biological properties and their abundance in the rock materials and mineralized spring waters in the context of animal and human geophagia reasons evaluation. Achievements in the Life Sciences 2015, 9(2), 95–103.
  • Yang, L.; Wang, B.; Tan, J.; Zhu, L. The DNA-Binding and bioactivity of rare earth metal complexes. Mini Reviews in Medicinal Chemistry 2013, 13(10), 1487–1500.
  • Li, J.; Wang, L.; Bai, H.; Yang, B.; Yang, H. Synthesis, characterization, and anti-inflammatory activities of rare earth metal complexes of luteolin. Medicinal Chemistry Research 2011, 20(1), 88–92.
  • Yue, B.; Sun, H.; Chen, Y.; Kong, K.; Chu, H.; Zhao, Y. DNA binding and antibacterial properties of ternary lanthanide complexes with salicylic acid and phenanthroline. Applied Organometallic Chemistry 2014, 28(3), 162–168.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.