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Výzkum chemického složení kůry Sorbus aucuparia


: Elena Krivoruchko;  Alexander Markin;  Victoria Samoilova;  Tetiana Ilina;  Oleh Koshovyi
: Čes. slov. Farm., 2018; 67, 113-115
: Short News

V extraktu kůry Sorbus aucuparia byl stanoven metodou GC-MS kvantitativní obsah 40 karboxylových kyselin s prevalencí hexadekandiové, lignocerové, behenové, azelaové, palmitové a benzoové kyseliny, a 39 složek silice. V etanolickém extraktu kůry Sorbus aucuparia byl metodou HPLC kvantitativně stanoven obsah šesti fenolických sloučenin, tj. kyseliny chlorogenové, kávové a galové, katechinu, kvercetinu a apigenin-7-glukosidu.

Klíčová slova:

Sorbus aucuparia kůra • karboxylové kyseliny • fenolické sloučeniny • silice • GC-MS • HPLC


Sources

 1. Khare C. P. Indian Medicinal Plants. An Illustrated Dictionary. Springer India 2007; 618–619.

2. Raudonis R., Raudone L., Gaivelyte K., Viskelis P., Janulis V. Phenolic and antioxidant profiles of rowan (Sorbus L.) fruits. Nat. Prod. Res. 2014; 28(16), 1231–1240.

3. Olszewska M. A., Michel P. Antioxidant activity of inflorescences, leaves and fruits of three Sorbus species in relation to their polyphenolic composition. Nat. Prod. Res. 2009; 23(16), 1507–1521.

4. Olszewska M. A. Variation in the phenolic content and in vitro antioxidant activity of Sorbus aucuparia leaf extracts during vegetation. Acta Pol. Pharm. 2011; 68(6), 937–944.

5. Olszewska M. A., Presler A., Michel P. Profiling of phenolic compounds and antioxidant activity of dry extracts from the selected Sorbus species. Molecules 2012; 17(3), 3093–3113.

6. Krivoruchko E. V., Andrushchenko О. А., Kononenko A. V. Carboxylic acids from Sorbus aucuparia and Sorbus aria. Chem. Nat. Compd. 2013; 49(4), 742–743.

7. Guerrero-Analco J. A., Martineau L., Saleem A., Madiraju P., Muhammad A., Durst T., Haddad P., Arnason J. T. Bioassay-guided isolation of the antidiabetic principle from Sorbus decora (Rosaceae) used traditionally by the Eeyou Istchee Cree First Nations. J. Nat. Prod. 2010; 73(9), 1519–1523.

8. Lee S. O., Lee H. W., Lee I. S., Im H. G. The pharmacological potential of Sorbus commixta cortex on blood alcohol concentration and hepatic lipid peroxidation in acute alcohol-treated rats. J. Pharm. Pharmacol. 2006; 58(5), 685–693.

9. Saleem A., Liu R., Guerrero-Analco J. A., Bailie A., Foster B., Cuerrier A., Johns T., Haddad P. S., Arnason J. T. An HPLC-ELSD Method for the Determination of Triterpenes in Sorbus decora and Sorbus americana Bark Used by the Eeyou Istchee Cree First Nation. Planta Med. 2016; 82(14), 1302–1307.

10. Osmachko A., Kovaleva A., Goryacha O., Ili’ina T. Сomponents of essential oil of Veronica longifolia L. leaves and flovers. The Pharma Innovation Journal 2014; 3(1), 1–6.

11. Golembiovska O. I. Simultaneous determination of flavonoids and phenolic acids in different parts of Prunella vulgaris L. by high-performance liquid chromatography with photodiode array detection. Int. J. Pharmacog. Phytochem. 2014; 29(1), 1248–1255.

12. Tsitsa-Tzardi E., Loukis A., Philianos S. Constituents of Sorbus torminalis leaves. Fitoterapia 1992; 63(2), 189–190. 

Labels
Pharmacy Clinical pharmacology
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