Page 98 - 81_02
P. 98
Antioxidant and cytoprotective potentials of Parmeliaceae lichens and identification of active compounds
Melanelixia glabra (Parmeliaceae). Fungal Divers thin-layer chromatographic method. J
2010; 42: 47-55.
12. Leavitt SD, Esslinger, TL, Spribille T, Divakar PK, Chromatography 1972; 72: 113-115.
Lumbsch HT. Multilocus phylogeny of the lichen-
forming fungal genus Melanohalea (Parmeliaceae, 26. Culberson CF. Conditions for the use of Merck silica
Ascomycota): Insights on diversity, distributions, and
a comparison of species tree and concatenated gel 60 F254 plates in the standardized thin-layer
topologies. Mol Phylogenet Evol 2013; 66: 138-152.
13. Paudel B, Bhattarai HD, Koh HY, et al. Ramalin, a technique for the lichen products. J Chromatography
novel nontoxic antioxidant compound from the
Antarctic lichen Ramalina terebrata. Phytomedicine 1974; 97: 107-108.
2011; 18: 1285-1290.
14. Crespo A, Divakar PK, Blanco O, Schroeter B. The 27. Cansaran D, Atakol O, Halici MG, Akay A. HPLC
potential of mitochondrial DNA for establishing
phylogeny and stabiling generic concepts in the analysis of usnic acid in some extracts of the lichen
parmelioid lichens. Taxon 2001; 50: 807-819.
15. Myllys L, Lohtander K, Källersjö M, Tehler A. Parmelia and investigation of their constituent. Pharm
Sequence insertions and ITS data provide congruent
information on Roccella canariensis and R. Biol 2007; 45: 77-81.
tuberculata (Arthoniales, Euascomycetes) Phylogeny.
Mol Phylogenet Evol 1999; 12: 295-309. 28. Orchard AA. Flora of Austarlia. Lichens-
16. Lohtander K, Myllys L, Sundin R, Källersjö M,
Tehler A. The species pair concept in the lichen Lecanorales2, Parmeliaceae. Various authors (Eds).
Dendrographa leucophaea (Arthoniales): Analyses
based on ITS sequences. Bryologist 1998; 101: 404- Australian Biological Resources Study. CSIRO
411.
17. Sayers WE, Barrett T, Benson DA et al. Data Publishing. 1994: Vol 55.
resources of the National Center for Biotechnology
Information. Nucleic Acids Res 2011; 39: D38-D51. 29. Divakar PK, Crespo A. Molecular phylogenetic and
18. Dávalos A, Gómez-Cordovés C, Bartolomé B.
Extending applicability of the oxygen radical phylogenomic approaches in studies of lichen
absorbance capacity (ORAC-fluorescein) assay. J
Agric Food Chem 2004; 52: 48-54. systematics and evolution. In: Upreti DK, Divakar
19. Mosmann T. Rapid colorimetric assay for celular
growth and survival: application to proliferation and PK, Shukla V, Bajpal R (Eds.). Recent advances in
cytotoxicity assays. J Immunol Methods 1983; 65: 55-
63. lichenology: modern methods and approaches in
20. González-Burgos E, Duarte AI, Carretero ME,
Moreira PI, Gómez-Serranillos MP. Mitochondrial- lichen systematics and culture techniques. Springer,
targeted protective properties of isolated diterpenoids
from Sideritis spp. in response to the deleterious New Delhi (IN), 2015: Vol. 2, pp. 45-60.
changes induced by H2O2. J Nat Prod 2013; 76: 933-
938. 30. Schoch CL, Seifert KA, Huhndorf S, et al. Nuclear
21. LeBel CP, Ischiropoulos H, Bondy SC. Evaluation of
the probe 2,7-dichlorofluorescin as an indicator of ribosomal internal transcribed spacer (ITS) region as a
reactive oxygen species formation and oxidative
stress. Chem Res Toxicol 1992; 5: 227-231. universal DNA barcode marker for fungi. Proc Natl
22. Marks N, Berg MJ, Guidotti A, Saito M. Activation of
caspase-3 and apoptosis in cerebellar granule cells. J Acad Sci U S A 2012; 109: 6241-6246.
Neurosci Res 1998; 52: 334-341.
23. Hissin P, Hilf RA. Fluorometric method for 31. Begerow D, Nilsson H, Unterseher M, Maier W.
determination of oxidized and reduced glutathione in
tissues. Anal Biochem 1976; 74: 214-226. Current state and perspectives of fungal DNA
24. Culberson CF. A standardized method for the
identification of lichen products. J Chromatography barcoding and rapid identification. Appl Microbiol
1970; 46: 85-89.
25. Culberson CF. Improved conditions and new data for Biotechnol 2010; 97: 99-108.
the identification of lichen products by a standardized
32. Schoch CL, Robbertse B, Robert V, et al. Finding
needles in haystacks: linking scientific names,
reference specimens and molecular data for Fungi.
Database: Database (Oxford) 2014; 2014:bau061.
33. Apak R, Güçlü K, Demirata B, et al. Comparative
evaluation of various total antioxidant capacity assays
applied to phenolic compounds with the CUPRAC
assay. Molecules 2007; 12: 1496-1547.
34. González-Burgos E, Carretero ME, Gómez-Serranillos
MP. Nrf2-dependent neuroprotective activity of
diterpenoids isolated from Sideritis spp. J
Ethnopharmacol 2013; 147: 645-552.
35. Sinha K, Das J, Pal PB, Sil PC. Oxidative stress: the
mitochondria-dependent and mitochondria-
independent pathways of apoptosis. Arch Toxicol
2013; 87:1157-1180.
36. Perez-Pinzon MA, Stetler RA, Fiskum G. Novel
mitochondrial targets for neuroprotection. J Cereb
Blood Flow Metab 2012; 32: 1362-1376.
37. Robertson GS, Crocker SJ, Nicholson DW, Schulz JB.
Neuroprotection by the inhibition of apoptosis. Brain
Pathol. 2000; 10: 283-92.
38. Andersen JK. Oxidative stress in neurodegeneration:
cause or consequence? Nat. Rev Neurosci 2004; 5:
S18-S25.
39. Behera BC, Verma N, Sonone A, Makhija U.
Experimental studies on the growth and usnic acid
production in "lichen" Usnea ghattensis in vitro.
Microbiol Res 2006; 161: 232-237.
@Real Academia Nacional de Farmacia. Spain 177