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Antimycobacterial activity of some lichen extracts

Year 2017, Volume: 10 Issue: 1, 65 - 68, 15.04.2017

Abstract

The acetone, methanol and chloroform extracts of lichens Cetraria aculeata, Cladonia foliacea, Parmelia sulcata, Pseudevernia furfuracea var. furfuracea, Ramalina farinacea and Tornabea scutellifera were investigated for antimycobacteral properties against Mycobacterium tuberculosis H37Rv strain using Microplate Alamar Blue Assay MABA . All of the lichen extracts showed considerable antimycobacterial effect with minimal inhibitory concentration MIC values ranging from 1250 to 156.25 μg/ml. Among the tested lichens, the chloroform extract of the lichen Pseudevernia furfuracea var. furfuracea exhibited the strongest activity with an MIC value of 156.25 μg/ml

References

  • Candan, M., Yılmaz, M., Tay, T., Erdem, M., Türk, A.Ö. (2007). Antimicrobial activity of extracts of the lichen Parmelia sulcata and its salazinic acid constituent. Zeitschrift für Naturforschung, 62c, 619-621.
  • Cantrell, C.L., Franzblau, S.G., Fischer, N.H. (2001). Antimycobacterial plant terpenoids. Planta Medica, 67(8), 685- 694.
  • Cheng, M.J., Wu, M.D., Yanai, H., Su, Y.S., Chen, I.S., Yuan, G.F., Hsieh, S.Y., Chen, J.J. (2012). Secondary metabolites from the endophytic fungus Biscogniauxia formosana and their antimycobacterial activity. Phytochemistry Letters, 5, 467-472.
  • Güvenç, A., Küpeli Akkol, E., Süntar, İ., Keleş, H., Yıldız S., Çalış, İ. (2012). Biological activities of Pseudevernia furfuracea (L.) Zopf extracts and isolation of the active compounds. Journal of Ethnopharmacology, 144, 726-734.
  • Honda, N.K., Pavan, F.R., Coelho, R.G., de Andrade Leite, S.R., Micheletti, A.C., Lopes, T.I.B., Misutsu, M.Y., Beatriz, A., Brum, R.I., Leite, C.Q.F. (2010). Antimycobacterial activity of lichen substances. Phytomedicine, 17, 328-332.
  • Ingólfsdóttir, K., Chung, G.A.C., Skşlason, V.G., Gissurarson, S.R., Vilhelmsdóttir, M. (1998). Antimycobacterial activity of lichen metabolites in vitro. European Journal of Pharmaceutical Sciences, 6, 141-144.
  • Kosanić, M., Manojlović, N., Janković, S., Stanojković, T. Ranković, B. (2013). Evernia prunastri and Pseudoevernia furfuraceae lichens and their major metabolites as antioxidant, antimicrobial and anticancer agents. Food and Chemical Toxicology, 53, 112-118.
  • Kosanić, M.M, Ranković, B.R., Stanojković, T.P. (2012). Antioxidant, antimicrobial, and anticancer activities of three Parmelia species. Journal of the Science of Food and Agriculture, 92, 1909-1916.
  • König, G.M., Wright, A.D., Franzblau, S.G., (2000). Assessment of antimycobacterial activity of a series of mainly marine derived natural products. Planta Medica, 66(4), 337-342.
  • Lucarini, R., Tozatti, M.G., Salloum, A.I.O., Crotti, A.E.M., Silva, M.L.A., Gimenez, V.M.M., Groppo, M., Januário, A.H., Martins, C.H.G., Cunha W.R. (2012). Antimycobacterial activity of Usnea steineri and its major constituent (+)-usnic acid. African Journal of Biotechnology, 11(20), 4636-4639.
  • Mitrović, T., Stamenković, S., Cvetković, V., Tošić, S., Stanković, M., Radojević, I., Stefanović, O., Čomić, L., Dačić, D., Ćurčić, M., Marković, S. (2011). Antioxidant, antimicrobial and antiproliferative activities of five lichen species. International Journal of Molecular Sciences, 12, 5428-5448.
  • Nguta, J.M., Appiah-Opong, R., Nyarko, A.K., Yeboah-Manu D., Addo, P.G.A., Otchere, I.D., Kissi-Twum, A. (2016). Antimycobacterial and cytotoxic activity of selected medicinal plant extracts. Journal of Ethnopharmacology, 182, 10-15.
  • Okunade, A.L., Elvin-Lewis, M.P., Lewis, W.H. (2004). Natural antimycobacterial metabolites: Current status. Phytochemistry, 65, 1017-1032.
  • Pauli, G.F., Case, R.J., Inui, T., Wang, Y., Cho, S., Fischer, N.H., Franzblau, S.G. (2005). New perspectives on natural products in TB drug research. Life Sciences, 78, 485-494.
  • Ramos D.F., Silva, P.E.A. (2010). Antimycobacterial activity of usnic acid against resistant and susceptible strains of Mycobacterium tuberculosis and non-tuberculous mycobacteria. Pharmaceutical Biology, 48(3), 260-263.
  • Smith, C.W., Aptroot, A., Coppins, B.J., Fletcher, A., Gilbert, O.L., James, P.W., Wolseley, P.A. (2009). The Lichens of Great Britain and Ireland. 2nd ed. London: The British Lichen Society.
  • Tay, T., Türk, A.Ö., Yılmaz, M., Türk, H., Kıvanç, M. (2004). Evaluation of the antimicrobial activity of the acetone extract of the lichen Ramalina farinacea and its (+)-usnic acid, norstictic acid, and protocetraric acid constituents. Zeitschrift für Naturforschung, 59c, 384-388.
  • Vartia, K.O. 1973. Antibiotics in lichens. In: Ahmadjian, V., Hale, M.E. (Eds.), The Lichens. New York: Academic Press, pp. 547-561.
  • Wirth, V., Hauck, M., Schultz, M. (2013). Die Flechten Deutschlands. Stuttgart: Ulmer.
  • World Health Organization (WHO). (2016). Global tuberculosis report 2016. http://www.who.int (Erişim tarihi: 09.11.2016).
  • Yılmaz, M., Türk, A.Ö., Tay, T., Merih, K. (2004). The antimicrobial activity of extracts of the lichen Cladonia foliacea and its (-)-usnic acid, atranorin, and fumarprotocetraric acid constituents. Zeitschrift für Naturforschung, 59c, 249-254.

Bazı liken ekstraktlarının antimikobakteriyal aktivitesi

Year 2017, Volume: 10 Issue: 1, 65 - 68, 15.04.2017

Abstract

Cetraria aculeata, Cladonia foliacea, Parmelia sulcata, Pseudevernia furfuracea var. furfuracea, Ramalina farinacea ve Tornabea scutellifera likenlerinin aseton, metanol ve kloroform ekstraktlarının Mycobacterium tuberculosis H37Rv suşuna karşı antimikobakteriyal özellikleri Microplate Alamar Blue Assay MABA kullanılarak incelenmiştir. Liken ekstraktlarının tümü 1250-156.25 μg/ml minimal inhibisyon konsantrasyonu MİK aralığındaki değerler ile önemli ölçüde antimikobakteriyal etki göstermiştir. Test edilen likenler arasında Pseudevernia furfuracea var. furfuracea likeninin kloroform ekstraktı 156.25 μg/ml'lik MİK değeri ile en güçlü aktiviteyi göstermiştir

References

  • Candan, M., Yılmaz, M., Tay, T., Erdem, M., Türk, A.Ö. (2007). Antimicrobial activity of extracts of the lichen Parmelia sulcata and its salazinic acid constituent. Zeitschrift für Naturforschung, 62c, 619-621.
  • Cantrell, C.L., Franzblau, S.G., Fischer, N.H. (2001). Antimycobacterial plant terpenoids. Planta Medica, 67(8), 685- 694.
  • Cheng, M.J., Wu, M.D., Yanai, H., Su, Y.S., Chen, I.S., Yuan, G.F., Hsieh, S.Y., Chen, J.J. (2012). Secondary metabolites from the endophytic fungus Biscogniauxia formosana and their antimycobacterial activity. Phytochemistry Letters, 5, 467-472.
  • Güvenç, A., Küpeli Akkol, E., Süntar, İ., Keleş, H., Yıldız S., Çalış, İ. (2012). Biological activities of Pseudevernia furfuracea (L.) Zopf extracts and isolation of the active compounds. Journal of Ethnopharmacology, 144, 726-734.
  • Honda, N.K., Pavan, F.R., Coelho, R.G., de Andrade Leite, S.R., Micheletti, A.C., Lopes, T.I.B., Misutsu, M.Y., Beatriz, A., Brum, R.I., Leite, C.Q.F. (2010). Antimycobacterial activity of lichen substances. Phytomedicine, 17, 328-332.
  • Ingólfsdóttir, K., Chung, G.A.C., Skşlason, V.G., Gissurarson, S.R., Vilhelmsdóttir, M. (1998). Antimycobacterial activity of lichen metabolites in vitro. European Journal of Pharmaceutical Sciences, 6, 141-144.
  • Kosanić, M., Manojlović, N., Janković, S., Stanojković, T. Ranković, B. (2013). Evernia prunastri and Pseudoevernia furfuraceae lichens and their major metabolites as antioxidant, antimicrobial and anticancer agents. Food and Chemical Toxicology, 53, 112-118.
  • Kosanić, M.M, Ranković, B.R., Stanojković, T.P. (2012). Antioxidant, antimicrobial, and anticancer activities of three Parmelia species. Journal of the Science of Food and Agriculture, 92, 1909-1916.
  • König, G.M., Wright, A.D., Franzblau, S.G., (2000). Assessment of antimycobacterial activity of a series of mainly marine derived natural products. Planta Medica, 66(4), 337-342.
  • Lucarini, R., Tozatti, M.G., Salloum, A.I.O., Crotti, A.E.M., Silva, M.L.A., Gimenez, V.M.M., Groppo, M., Januário, A.H., Martins, C.H.G., Cunha W.R. (2012). Antimycobacterial activity of Usnea steineri and its major constituent (+)-usnic acid. African Journal of Biotechnology, 11(20), 4636-4639.
  • Mitrović, T., Stamenković, S., Cvetković, V., Tošić, S., Stanković, M., Radojević, I., Stefanović, O., Čomić, L., Dačić, D., Ćurčić, M., Marković, S. (2011). Antioxidant, antimicrobial and antiproliferative activities of five lichen species. International Journal of Molecular Sciences, 12, 5428-5448.
  • Nguta, J.M., Appiah-Opong, R., Nyarko, A.K., Yeboah-Manu D., Addo, P.G.A., Otchere, I.D., Kissi-Twum, A. (2016). Antimycobacterial and cytotoxic activity of selected medicinal plant extracts. Journal of Ethnopharmacology, 182, 10-15.
  • Okunade, A.L., Elvin-Lewis, M.P., Lewis, W.H. (2004). Natural antimycobacterial metabolites: Current status. Phytochemistry, 65, 1017-1032.
  • Pauli, G.F., Case, R.J., Inui, T., Wang, Y., Cho, S., Fischer, N.H., Franzblau, S.G. (2005). New perspectives on natural products in TB drug research. Life Sciences, 78, 485-494.
  • Ramos D.F., Silva, P.E.A. (2010). Antimycobacterial activity of usnic acid against resistant and susceptible strains of Mycobacterium tuberculosis and non-tuberculous mycobacteria. Pharmaceutical Biology, 48(3), 260-263.
  • Smith, C.W., Aptroot, A., Coppins, B.J., Fletcher, A., Gilbert, O.L., James, P.W., Wolseley, P.A. (2009). The Lichens of Great Britain and Ireland. 2nd ed. London: The British Lichen Society.
  • Tay, T., Türk, A.Ö., Yılmaz, M., Türk, H., Kıvanç, M. (2004). Evaluation of the antimicrobial activity of the acetone extract of the lichen Ramalina farinacea and its (+)-usnic acid, norstictic acid, and protocetraric acid constituents. Zeitschrift für Naturforschung, 59c, 384-388.
  • Vartia, K.O. 1973. Antibiotics in lichens. In: Ahmadjian, V., Hale, M.E. (Eds.), The Lichens. New York: Academic Press, pp. 547-561.
  • Wirth, V., Hauck, M., Schultz, M. (2013). Die Flechten Deutschlands. Stuttgart: Ulmer.
  • World Health Organization (WHO). (2016). Global tuberculosis report 2016. http://www.who.int (Erişim tarihi: 09.11.2016).
  • Yılmaz, M., Türk, A.Ö., Tay, T., Merih, K. (2004). The antimicrobial activity of extracts of the lichen Cladonia foliacea and its (-)-usnic acid, atranorin, and fumarprotocetraric acid constituents. Zeitschrift für Naturforschung, 59c, 249-254.
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Details

Primary Language English
Journal Section Research Article
Authors

Nalan Yılmaz Sarıözlü This is me

Meral Yılmaz Cankılıç This is me

Publication Date April 15, 2017
Published in Issue Year 2017 Volume: 10 Issue: 1

Cite

APA Yılmaz Sarıözlü, N., & Yılmaz Cankılıç, M. (2017). Antimycobacterial activity of some lichen extracts. Biological Diversity and Conservation, 10(1), 65-68.

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