Antineoplastic Activity and Genotoxicity of Organic Extracts and Barbatic Acid Isolated from the Lichen Cladonia salzmannii Nyl
Abstract
Background: Secondary metabolites are responsible for most of the biological activities of lichens. Many of these compounds exhibit significant antineoplastic activity. The aim of the present in vitro study was to evaluate the cytotoxic and genotoxic activities of organic extracts and purified barbatic acid from the lichen Cladonia salzmannii (Nyl.).
Methods: The thallus of the lichen (22 g) was cleaned and dried with the solvents diethyl ether, chloroform and acetone. Organic extracts were obtained using the hot exhausted method in a Soxhlet apparatus. Barbatic acid (BAR) was purified from the ether extract (1.3 g). Chemical analysis of the organic extracts and purified BAR was performed using thin-layer chromatography. The purity of purified BAR was determined using high-performance liquid chromatography. The MTT method [3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide] and cytokinesis-block proliferation index (CBPI) were used to determine the cytotoxic activity of the organic extracts and purified BAR. The micronucleus test and comet assay were used to determine genotoxic potential of the organic extracts and purified BAR. Dimethyl sulfoxide was used as the diluting solvent of the samples in all biological tests.
Results: The IC50 results demonstrated significant cytotoxic potential of the ether extract (50 µg/mL) against cell lines NCI-H292 (IC50: 29.91 µg/mL), HEp-2 (IC50: 26.75 µg/mL) and HL-60 (IC50: 3.59 µg/mL) as well as the purified BAR (25 µg/mL) against cell lines HEp-2 (IC50: 15.79 µg/mL) and MCF-7 (IC50: 18.28 µg/mL). The CBPI demonstrated the cytotoxic activity of the purified BAR at all concentrations tested (5, 10, 20 and 40 µg/mL) and all organic extracts (50 µg/mL) against Ehrlich carcinoma cells. For sarcoma 180, only BAR purified at a concentration of 40 µg/mL and the ether and chloroform extracts (50 µg/mL) were considered cytotoxic. The micronucleus test revealed that the purified BAR at a concentration of 5 µg/mL had no genotoxic potential against either tumor cell line. Furthermore, the chloroform extract and purified BAR at a concentration of 10 µg/mL were not considered genotoxic for sarcoma 180. In the comet assay, all compounds tested induced DNA damage in both tumor lines.
Conclusion: Based on the present results, organic extracts and purified barbatic acid from C. salzmannii exhibit cytotoxic and genotoxic activity against of the tumor cell lines tested.
References
GLOBOCAN 2008 v2.0, Cancer incidence and mortality
worldwide: IARC CancerBase No. 10 [Internet]. Lyon, France:
International Agency for Research on Cancer; 2010. Available
at: http://globocan.iarc.fr
2. Torre LA, Bray F, Siegel RL, Ferlay J, Lortet-Tieulent J, Jemal A.
Global cancer statistics, 2012. CA Cancer J Clin. 2015; 65(2): 87108.
3. DeVita VT, Chu E. A history of cancer chemotherapy. Cancer Res
2008; 8643-8653.
4. Fukuda Y, Schuetz JD. ABC transporters and their role in
nucleoside and nucleotide drug resistance. Biochem Pharmacol
2012; 1073-1083.
5. Costa- Lotufo LV, Montenegro RC, Alves APNN, Madeira
SVF, Pessoa C, Moraes MEA, Moraes MOA. Contribuição dos
Produtos Naturais como Fonte de Novos Fármacos Anticâncer:
Estudos no Laboratório Nacional de Oncologia Experimental da
Universidade Federal do Ceará. Rev Virtual Quim 2010; 2(1): 4758.
6. Boustie J, Tomasi S, Grube M. Bioactive lichen metabolites:
alpine habitats as an untapped source. Phytochem Rev 2011;
10: 287-307.
7. Bogo D, Matos MF, Honda NK, Pontes EC, Oguma PM, Santos
EC, Carvalho JE, Nomizo A. In vitro antitumour activity of
orsellinates. Z Naturforsch 2010; 65: 43-48.
8. Koparal AT, Tüylü BA, Türk H. In vitro cytotoxic activities of
(+)-usnic acid and (-)-usnic acid on V79, A549, and human
lymphocyte cells and their non-genotoxicity on human
lymphocytes. Nat Prod Res 2006; 20: 1300-1307.
9. Micheletti AC, Beatriz A, Lima DP, Honda NK, Pessoa CO,
Moraes MO, Lotufo FV, Magalhães HIF, Carvalho NCP. Chemical
constituents of Parmotrema ichexanthonicum Eliasaro & Adler -
isolation, structure modification and evaluation of antibiotic and
cytotoxic activities. Quim Nova 2009; 32: 12-20.
10. Grujičić D, Stošić I, Kosanić M, Stanojković T, Rankovi ć B,
Milošević-djordjević O. Evaluation of in vitro antioxidant,
antimicrobial, genotoxic and anticancer activities of lichen
Cetraria islandica. Cytotechnology 2014; 66: 803-813.
11. Leandro LF, Munari CC, Sato VLFL, Alves JM, Oliveira PF,
Mastrocola DFP, Martins SPL, Moraes TS, Oliveira AI, Tozatti
MG, Cunha WR, Tavares DC. Assessment of the genotoxicity
and antigenotoxicity of (+)- usnic acid in V79 cells and Swiss
mice by the micronucleus and comet assays. Mutat Res 2013;
753: 101-106.
12. Asahina Y, Shibata S. Chemistry of Lichen Substances. Tokyo:
Japan Society for the Promotion of Science; 1954.
13. Culberson CF. Improved conditions and new data for the
identification of lichen products by standardized thin layerchromatographic
method. J Chromatogr 1972; 72: 1113-1125.
14. Legaz ME, Vicente C. Endogenous inactivators of arginase,
arginine decarboxilase and agmnatine amidinohydrolase in
Evernia prunastri thallus. Plant Physiol 1983; 71: 300-302.
15. Mosmann T. Rapid colorimetric assay for cellular growth and
survival: application to proliferation and cytotoxicity assays. J
Immunol Methods 1983; 65: 55-63.
16. Alley MC, Scudiero DA, Monks-hursey ML, Czerwinski MJ, Fine
DL, Abbott BJ, Mayo JG, Shoemaker RH, Boyd MR. Feasibility
of drug screening with panels of human tumor cell lines using a
microculture tetrazolium assay. Cancer Res 1988; 48: 589-601.
17. Rodrigues FA, Bomfim IS, Cavalcanti BC, Pessoa C, Gonçalves
RS, Wardell JL, Wardell SM, Souza MV. Mefloquine–oxazolidine
derivatives: a new class of anticancer agents. Chem Biol Drug
Des 2014; 83: 126-131.
18. Fenech M. The in vitro micronucleus technique. Mutat Res
2000; 455: 81-95.
19. OECD. OECD Guidelines for Testing of Chemicals, No.
487: In Vitro Mammalian Cell Micronucleus Test. [Internet]
Paris: OECD Publishing; 2014. Available at: http://dx.doi.
org/10.1787/9789264224438-en
20. Speit G, Hartmann A. The comet assay: a sensitive genotoxicity
test for the detection of DNA damage and repair. Methods Mol
Biol 2006; 314: 275-286.
21. Collins AR, Oscoz AA, Brunborg G, Gaivão I, Giovannelli L,
Kruszewski M, Smith CC, Stetina R. The comet assay: topical
issues. Mutagenesis 2008; 23: 143–151.
22. R Development Core Team. R: A Language and environment
for statistical computing. [Internet] Vienna: R Foundation for
Statistical Computing; 2010. Available at: https://www.r-project.
org/
23. Ahti T, Stenroos S, Xavier-filho L. The lichen family Cladoniaceae
in Paraiba, Pernambuco and Sergipe, Northeast Brazil. Trop
Bryol 1993; 7: 55-70.
24. Boik J. Natural Compounds in Cancer Therapy. Princeton, Minn,
USA: Oregon Medical Press; 2001.
25. Martins MCB, Rocha TA, Silva TDS, Cavalcanti-Neto MP, Santos
NPS, Silva TG, Aguiar-júnior FCA, Falcão EPS, Pereira EC, Silva
NH. In Vitro and in Vivo Antineoplastic Activity of Barbatic Acid.
Int Arch Med 2016; 9(63): 1-9.
26. Tavares CA. Lipossomas furtivos contendo ácido barbático
de Cladonia salzmannii: desenvolvimento, caracterização e
avaliação da atividade antitumoral [MSci Disertation]. Vitória
de Santo Antão, Brazil, Portuguese: Universidade Federal de
Pernambuco; 2014.

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