Phytochemical investigation of polyphenolic compounds for Cirsium vulgare (Savi) Ten. of Ukraine flora

Authors

  • Y. V. Popova Zaporozhzhia State Medical University,
  • A. V. Мazulin Zaporozhzhia State Medical University,
  • G. V. Мazulin Zaporozhzhia State Medical University,
  • Т. V. Оproshanska National University of Pharmacy,

DOI:

https://doi.org/10.14739/2409-2932.2016.1.62052

Keywords:

Thin Layer Chromatography Method, High Performance Liquid Chromatography Method, Flavonoids, Hydroxycinnamic Acids, Cirsium Vulgare (Savi) Ten

Abstract

Aim. The herbs of Cirsium vulgare (Savi) Ten. of Ukraine flora are perspective for identification and  investigation of quantitative analysis of biologically active polyphenolic compounds.

Methods and results. Accumulation of flavonoids and hydroxycinnamic acids in herbs of  Cirsium vulgare (Savi) Ten. of Ukraine flora have been studied. 14 Flavonoids (up to 2,10+0,11% ) and 8 hydroxycinnamic acids (up to 0,24+0,021% ) have been identified in the herbs of Cirsium vulgare (Savi) Ten. of Ukraine flora by HPLC method on LC–20 Prominence (Shimadzu, Japan). The chromatography column is Phenomenex Luna C18(2), l=250 mm, d=4,6 mm.

Basic compounds, which have been identified, are: linarin, luteolin-7-О-β-D-glucopyranoside, apigenin-7-О-β-D-glucopyranoside, apigenin, kaempferol-3-О-methyl ester, hyperoside, luteolin, rutin, quercetin, luteolin-5-О-β-D-glucopyranoside, gispidulin-7-О-β-D-glucopyranoside, chlorogenic acid. Some compounds have been identified for the first time, namely: linarin, kaempferol-3-О-methyl ester, kaempferol-3-О-β-D-glucopyranoside, luteolin-5-О-β-D-glucopyranoside, gispidulin-7-О-β-D-glucopyranoside, neochlorogenic, capftaric, p-cumaric, caffeic, p-oxybenzoic, syringic and protocatechuic acids.

Conclusions. The herbs of Cirsium vulgare (Savi) Ten. are perspective as phytochemical preparations. The standardization method of Cirsium vulgare (Savi) Ten. herbs by flavonoids amount, which are luteolin derivatives has been proposed.

References

Georgievskij, V. P. (Ed). (2011). Analiticheskaya khimiya v sozdanii, standartizacii i kontrole kachestva lekarstvenny`kh sredstv [Analytical chemistry in the creation, standardization and quality control of medicines]. (Vol. 2). Kharkiv: NTMT. [in Ukrainian].

Derzh. p-vo «Naukovo-ekspertnyi farmakopeinyi tsentr» (2009) Derzhavna Farmakopeia Ukrainy [State Pharmacopoeia of Ukraine], (Dodatok 3). Kharkiv [in Ukrainian].

Dorkina, E. G. (2004) Izuchenie gepatozashchitnogo dejstviya prirodnykh flavonoidnykh soedinenij [Investigation of the hepatoprotector action of natural flavonoids]. E`ksperimental`naya i klinicheskaya farmakologiya, 67(6), 41–44. [in Russian].

Kortikov, V. N., & Kortikov, A. V. (2002) Polnaya e`nciklopediya lekarstvennykh rastenij [Complete Encyclopedia of Medicinal Plants]. Rostov n/D.: Prof - Press. [in Russian].

K`osev, P. A. (2011) Lekarstvennye rasteniya: samyj polnyj spravochnik [Medicinal plants: the most complete directory]. Moscow: E`ksmo-Press. [in Russian].

Dobroсhaeva, D. N., Kotov, M. I., Prokudin, Yu. N., Barbarich, A. I., Chopik, V. I., Protopopova, V. V., et al. (1987) Opredelitel` vysshikh rastenij Ukrainy [The determinant of higher plants in Ukraine]. Yu.N. Prokudina (Ed.). Kyiv: Nauk. dumka. [in Ukrainian].

(2001) Statystychnyi analiz rezultativ khimichnoho eksperymentu. Derzhavna Farmakopeia Ukrainy [State Pharmacopoeia of Ukraine], (Dodatok 1), (P. 187–221). Kharkiv [in Ukrainian].

Chekman, I. S. (2000) Flavonoidy – kliniko-farmakolohichnyi aspect [Flavonoids – clinical and pharmacological aspects]. Fitoterapiia v Ukraini, 2, 3–5. [in Ukrainian].

Cherepanov, S. K. (1995) Sosudistye rasteniya Rossii i sopredel`nykh gosudarstv (v predelakh byvshego SSSR). Russkoe izdanie [Vascular plants of Russia and adjacent states (the former USSR). Russian edition]. Saint Petersburg. [in Russian].

Yauhua, L., Wei, S., Xiahua, L., Dongzhiw, W., & Xiaoli, Z. (2009) Chemical Fingerprint and Quantitative Analysis of Cirsium setosum by LC. Chromatographia, 70(1 –2), 125–130.

Zia, Ul., Haq, K., Shafiullah, K., & Yongmei, C. (2013) In vitro antimicrobial activity of the Chemical Constituents of Cirsium arvense (L.) Scop. Journal of medical plant research., 7(25), 1894–1898. doi: 10.5897/JMPR2013.5090.

Jordon-Thaden, I. E., & Louda, S. M. (2003) Chemistry of Cirsium and Carduus: A role in ecological risk assessment for biological control of weeds. Biochemical systematic and Ecology., 31(12), 1353–1396. doi:10.1016/S0305-1978(03)00130-3.

Kozyra, M., & Glowniak, K. (2013) Phenolic acids in extracts obtained from the flowering herbs of Cirsium vulgare (savi) Ten. growing in Poland. Acta Societatis Botanicorum Poloniae, 82(4), 325–329. doi: 10.5586/asbp.2013.039.

Nazaruk, J., Wajs-Bonikowska, A., & Bonikowski, R. (2012) Components and antioxidant activity of fruits of Cirsium palustre and Cirsium rivulare. Chemistry of Natural Compounds, 48(1), 9–10. doi: 10.1007/s10600-012-0147-y.

Thao, N.T.Ph., Cuong, T.D., Hung, T.M., Lee, J.H., Na, M., Son, J. K., et al. (2011) Simultaneous Determination of Bioactive Flavonoids in Some Selected Korean Thistles by Hight – Performance Liquid Chromatography. Arch Pharm. Res., 34(3), 455–461. doi: 10.1007/s12272-011-0314-x.

How to Cite

1.
Popova YV, Мazulin AV, Мazulin GV, Оproshanska ТV. Phytochemical investigation of polyphenolic compounds for Cirsium vulgare (Savi) Ten. of Ukraine flora. Current issues in pharmacy and medicine: science and practice [Internet]. 2016Mar.9 [cited 2024Apr.25];(1). Available from: http://pharmed.zsmu.edu.ua/article/view/62052

Issue

Section

Pharmacognosy and chemistry of natural compounds