Startseite Lebenswissenschaften Research for the lichen Usnea barbata metabolites
Artikel
Lizenziert
Nicht lizenziert Erfordert eine Authentifizierung

Research for the lichen Usnea barbata metabolites

  • Yulia Bazarnova , Natalia Politaeva ORCID logo EMAIL logo und Nadegda Lyskova
Veröffentlicht/Copyright: 29. März 2018

Abstract

This work presents investigations of biologically active metabolites of Usnea barbata lichen. Extraction conditions for usnic acid and other biologically active phytocomponents using various solvent systems were chosen. Modern analytical techniques were used to study composition of the obtained extracts; usnic acid and phenolic compound contents were estimated. Antioxidant activity and antimicrobial properties of lichen dry extract against bacteria Bacillus subtilis and Pseudomonas fluorescens were studied.

References

1. Andreev MP, Achti T, Voicechovich AA, Gagarina LV, Gimelbrapt DE, Davydov EA. Lichen flora of Russia. Moscow: Community of Scientific Publishers KMK, 2014.Suche in Google Scholar

2. Moiseeva EN. Biochemical properties of lichens and its practical importance. Moscow-Leningrad: USSR Academy of Science Publisher, 1961.Suche in Google Scholar

3. Kursanov AL, Dyachkov NN. Lichens and its practical application. Moscow-Leningrad: USSR Academy of Science Publisher, 1945.Suche in Google Scholar

4. Yatsina AP. Workbook on lichens. Vytebsk: VGY named after P. M. Masherov, 2012.Suche in Google Scholar

5. Ravinskaya AP. Lichen acids and its biological role. Bull Lower Plants Classification 1984;21:160–79.Suche in Google Scholar

6. Sokolov DN, Lysina OA, Salakhytdinov NF. Usnic acid: synthesis, structure, properties and chemical reactions. Chem Adv 2012;81:747–68.10.1070/RC2012v081n08ABEH004245Suche in Google Scholar

7. Ravinskaya AP, Vainshtein EA. Impact of some ecological factors on lichen substances content. Ecology 1975;3:82–5.Suche in Google Scholar

8. Blagei A, Shutyi L. Phenolic compounds of plant origin. Moscow: Mir, 1977.Suche in Google Scholar

9. Zagoskina NV, Nikolaeva TN, Zavarzin AA. About phenolic compounds content in various lichen types of Kola Peninsula. Chem Plant Mater 2011;4:245–9.Suche in Google Scholar

10. Waksmundzka-Hajnos M, Sherma J. High performance liquid chromatography in phytochemical analysis. Boca Raton, FL, USA: CRC Press, 2010.10.1201/b10320Suche in Google Scholar

11. Elix JA. A catalogue of standardized chromatographic data and biosynthetic relationships for lichen substances, 3rd ed. Canberra: Published by the author, 2014.Suche in Google Scholar

12. Huneck S, Yoshimura I. Identification of lichen substances. Berlin, Heidelberg: Springer-Verlag, 1996.10.1007/978-3-642-85243-5Suche in Google Scholar

13. Culberson CF, Kristinsson HD. A standardized method for the identification of lichen products. J Chromatogr 1970;46:85–93.10.1016/S0021-9673(00)83967-9Suche in Google Scholar

14. Marcano V, Alcocer VR, Mendez AM. Occurrence of usnic acid in Usnea laevis Nylander (lichenized Ascomycetes) from the Venezuelan Andes. J Ethnopharmacol 1999;66:343–6.10.1016/S0378-8741(98)00181-0Suche in Google Scholar PubMed

15. Cansarana D, Kahyab D, Yurdakulola E, Atakolb O. Identification and quantitation of usnic acid from the lichen Usnea species of anatolia and antimicrobial activity. Z Naturforsch 2006;61:773–6.10.1515/znc-2006-11-1202Suche in Google Scholar PubMed

16. Nunes PS, Jesus DC, Bezerra MS, Souza JC, Silva FA, Serafini MR, et al. Validation of a UV-VIS spectrophotometric method for the determination of usnic acid/collagen-based membranes. Scientia Plena 2015;11:1–9.10.14808/sci.plena.2015.094501Suche in Google Scholar

17. Gunasekaran S, Rajan VP, Ramanathan S, Murugaiyah V, Samsudin MW, Din LB. Antibacterial and antioxidant activity of lichens Usnea rubrotincta, Ramalina dumeticola, Cladonia verticillata and their chemical constituents. Malaysian J Anal Sci 2016;20:1–13.10.17576/mjas-2016-2001-01Suche in Google Scholar

18. Temerdashev ZA, Khrapko NV, Tsyupko TG, Voronova OB, Balaba AN. Determination of anti-oxidized activity of foodstuff with use of Fe(III)/Fe(II) organic reagent indicating system. Ind Lab 2006;72:15–9.Suche in Google Scholar

19. MUK 4.2.1890-04 Determination of microorganisms antibacterial susceptibility. Guidelines of 04.02.2004.Suche in Google Scholar

20. Abuiraq L, Kanan G, Wedyan M, El-Oqlah A. Efficacy of extracts of some lichens for potential antibacterial activity. Res J Pharm Biol Chem Sci 2015;6:318–31.Suche in Google Scholar

21. Zugic A, Jeremic I, Isakovic A, Arsic I, Savic S, Tadic V. Evaluation of anticancer and antioxidant activity of a commercially available CO2 supercritical extract of old man’s beard (Usnea barbata). PLoS One 2016;01:14.10.1371/journal.pone.0146342Suche in Google Scholar PubMed PubMed Central

22. Ranković B, Kosanić M, Stanojković T, Vasiljević P, Manojlović N. Biological activities of Toninia candida and Usnea barbata together with their norstictic acid and usnic acid constituents. Int J Mol Sci 2012;13:14707–22.10.3390/ijms131114707Suche in Google Scholar PubMed PubMed Central

Received: 2017-09-28
Revised: 2018-01-28
Accepted: 2018-02-28
Published Online: 2018-03-29
Published in Print: 2018-07-26

©2018 Walter de Gruyter GmbH, Berlin/Boston

Heruntergeladen am 30.12.2025 von https://www.degruyterbrill.com/document/doi/10.1515/znc-2017-0177/pdf
Button zum nach oben scrollen