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Screening of antimicrobial, cytotoxic effects and phenolic compounds of the moss Dicranum scoparium.

Year 2018, Volume: 11 Issue: 1, 87 - 94, 01.01.2018

Abstract

Bryophytes belong to the group of the oldest known land plants, which includes liverworts, hornworts, and mosses. Recent research shows that mosses contain remarkable and unique substances with high biological activity.This study describes phenolic compounds, antimicrobial and cytotoxic activities of Dicranum scoparium Hedw. collected from Sundiken Mountains, Eskisehir. Total phenols contents of the extracts were determined by FolinCiocalteu assay and their amount ranged from 81.90 0.10 to 105.21± 0.10 mg/g of gallic acid equivalents. The highest total phenolic content were obtained from the ethyl acetate extract extract C . Phenolic acids in the extracts acquired by using different polarity solvents were separated by reverse-phase High-Performance Liquid Chromatography, which enabled advanced separation by the use of a C18 column, an acidic mobile phase, and gradient elusion. Also, the most phenolic acid content was measured in the ethyl acetate extract. The results revealed that all extracts were active against Pseudomonas aeruginosa and Bacillus subtilis. Acetone extract and extract C had a potential against 4 tested bacteria. Extract A demonstrated inhibition against 3 bacteria and 3 fungi. The minimum inhibitory concentrations of the most effective extracts ranged from 11.7-187.5 µg/mL for the bacterial strains. Furthermore, methanol, B and C extracts at 0.17, 1.7, 17, 85 and 170 µg/mL concentrations were tested on rat glioma C6 cells. Although none of the above methanol doses affected in 24 hours, 85 and 170 µg/mL slightly decreased C6 viability in 48 hours. Extract B at doses of 17, 85 and 170 µg/mL decreased C6 survival dose dependently in 24 and 48 hours. Only 170 µg/mL extract C reduced the survival ratio in 24 hours, but in 48 hours 0.17, 1.7, 17, 85 and 170 µg/mL concentrations inhibited cell viability. The present study suggests the possibility that D. scoparium may possess antimicrobial and anticancer molecule s

References

  • Asakawa, Y. (2007). Biologically active compounds from bryophytes. Chenia, 9, 73-104.
  • Asakawa, Y., Harrison, L.J., Toyota, M. (1985). Occurrence of a potent piscicidal diterpenedial in the liverwort Riccardia lobata var. yakushimensis. Phytochemistry, 24, 261-262.
  • Asakawa, Y., Ludwiczuk, A., Nagashima, F. (2013). Phytochemical and biological studies of bryophytes. Phytochemistry, 91, 52-80.
  • Asakawa, Y., Toyota, M., Takemoto, T. (1980). Four new sacculatane-type diterpenoids from Trichocoleopsis sacculata and Pellia endiviaefolia. Phytochemistry, 19, 1799-1803.
  • Bodade, R.G., Borkar, P.S., Md Saiful, A., Khobragade, C.N. (2008). In vitro screening of bryophytes for antimicrobial activity. Journal of Medicinal Plants, 7, 23-28.
  • Dulger, B., Hacıoglu, N., Uyar, G. (2009). Evaluation of antimicrobial activity of some mosses from Turkey. Asian Journal of Chemistry, 21, 4093-4096.
  • Elibol, B., Ezer, T., Kara, R., Yuvalı Celik, G., Colak, E. (2011). Antifungal and antibacterial effects of some acrocarpic mosses. African Journal of Biotechnology, 10, 986-989.
  • Ertürk, Ö., Şahin, H., Ertürk, E.Y., Hotaman, H.E., Koz, B., Özdemir, Ö. (2015). The antimicrobial and antioxidant activities of extracts obtained from some moss species in Turkey. Herba Polonica, 61, 52-65.
  • Fu, P., Lin, S., Shan, L., Lu, M., Shen, Y.H., Tang, J., Liu, R.H., Zhang, X., Zhu, R.L., Zhang, W.D. (2009). Constituents of the moss Polytrichum commune. Journal of Natural Products, 72, 1335-1337.
  • Ilhan, S., Savaroglu, F., Colak, F., Filik Iscen, C., Erdemgil, F.Z. (2006). Antimicrobial activity of Palustriella commutata (Hedw.) Ochyra extracts (Bryophyta). Turkish Journal of Biology, 30, 149-152.
  • Ivanova, V., Kolarova, M., Aleksieva, K., Dornberger, K.J., Haertl, A., Moellmann, U., Dahse, H.M., Chipev, N. (2007). Sanionins: Antiinflammatory and antibacterial agents with weak cytotoxicity from the Antarctic Moss Sanionia georgico-uncinata. Preparative Biochemistry and Biotechnology, 37, 343-352.
  • Jockovıc, N., Andrade, P.B., Valentao, P., Sabovljevic, M. (2008). HPLC–DAD of Phenolics in Bryophytes Lunularia cruciata, Brachytheciastrum velutinum and Kindbergia praelonga. Journal of the Serbian Chemical Society, 73, 1161-1167.
  • Jones, W.P., Kinghorn, A.D. (2005). Extraction of plant secondary metabolites. In: Sarker SD, Latif Z, Gray AI (eds) Natural Products Isolation 2nd Edn: Methods in Biotechnology Series, Humana Press, Totowa, NJ, 20, 323-351.
  • Klavina, L., Springe, G., Nikolajeva, V., Martsinkevich, I., Nakurte, I., Dzabijeva, D., Steinberga, I. (2015). Chemical composition analysis, antimicrobial activity and cytotoxicity screening of moss extracts (Moss Phytochemistry). Molecules, 20, 17221- 17243.
  • Komala, I., Ito, T., Nagashima, F., Yagi, Y., Asakawa, Y. (2011). Cytotoxic bibenzyls, and germacrane-and pinguisane-type sesquiterpenoids from Indonesian, Tahitian and Japanese liverworts. Natural Product Communications, 6, 303-309.
  • Krzaczkowski, L., Wright, M., Reberioux, D., Massiot, G., Etievant, C., Gairin, J.E. (2009). Pharmacological screening of bryophyte extracts that inhibit growth and induce abnormal phenotypes in human HeLa cancer cells. Fundamental and Clinical Pharmacology, 23, 473-482.
  • NCCLS, (2008). Performance standards for antimicrobial susceptibility testing; ninth informational supplement. NCCLS document M100-S9. Wayne, PA, National Committee for Clinical Laboratory Standard pp. 120-126.
  • Oztopcu-Vatan, P., Savaroglu, F., Fılık Iscen, C., Kabadere, S., Ilhan, S., Uyar, R. (2011). Antimicrobial and antiproliferative activities of Homalothecium sericeum (Hedw.) Schimp. extracts. Fresenius Environmental Bulletin, 20, 461-466.
  • Oztopcu-Vatan, P., Kabadere, S., Uyar, R., Savaroglu, F., Kus, G. (2012). Time dependent cytotoxic role of Homalothecium sericeum extracts on glioma. Biological Diversity and Conservation, 5(1), 1-4.
  • Oztürk, N., Tuncel, M., Potoğlu-Erkara, I. (2009). Phenolic compounds and antioxidant activities of some Hypericum species: A comparative study with H. perforatum. Pharmaceutical Biology, 47, 120-127.
  • Özturk, N., Tuncel, M., Tuncel, N.B. (2007). Determination of phenolic acids by a modified HPLC: Its application to various plant materials. Journal of Liquid Chromatography and Related Technologie, 30, 587-596.
  • Sabovljević, A., Sokovic, M., Glamočlija, J., Ćirić, A., Vujičić, M., Pejin, B., Sabovljević, M. (2010). Comparison of extract bio- activities of in-situ and in-vitro grown selected bryophyte species. African Journal of Microbiology Research, 4, 808-812.
  • Sabovljević, A., Soković, M., Sabovljević, M., Grubisic, D. (2006). Antimicrobial activity of Bryum argenteum. Fitoterapia, 77, 144- 145.
  • Sabovljevic, M., Bijelovic, A., Grubisic, D. (2001). Bryophytes as a Potential Source of Medicinal Compounds, Review. Lekovite Sirovine, 21, 17-29.
  • Savaroglu, F., Filik-Iscen, C., Oztopcu-Vatan, P., Kabadere, S., Ilhan, S., Uyar, R. (2011a). Determination of antimicrobial and antiproliferative activities of the aquatic moss Fontinalis antipyretica Hedw. Turkish Journal of Biology, 35, 361-369.
  • Savaroglu, F., Ilhan, S., Filik-Iscen, C. (2011b). An evaluation of the antimicrobial activity of some Turkish mosses. Journal of Medicinal Plants Research, 5, 3286-3292.
  • Singh, M., Govindarajan, R., Nath, V., Rawat, A.K.S., Mehrotra, S. (2006). Antimicrobial, wound healing and antioxidant activity of Plagiochasma appendiculatum Lehm. et Lind. Journal of Ethnopharmacology, 107, 67-72.
  • Singleton, V., Rossi J. (1965). Colorimetry of total phenolics with phosphomolybdic phosphotungstic acid reagents. American Journal of Enology and Viticulture, 16, 144-158.
  • Tsao, R., Deng, Z. (2004). Separation procedures for naturally occurring antioxidant phytochemicals. Journal of Chromatography B, 812, 85-99.
  • Van Hoof, L., Vanden Berghe, D.A., Petit, E., Vlietinck, A.J. (1981). Antibacterial and antiviral screening of Bryophyta. Fitoterapia, 52, 223-229.
  • Veljić, M., Tarbuk, M., Marin, P.D., Ćirić, A., Soković, M., Marin, M. (2008). Antimicrobial activity of methanol extracts of mosses from Serbia. Pharmaceutical Biology, 46, 1-5.
  • Yamada, P., Isoda, H., Han, J.K., Talorete, T.P.N., Yamaguchi, T., Abe, Y. (2007). Inhibitory effect of fulvic acid extracted from Canadian sphagnum peat on chemical mediator release by RBL-2H3 and KU812 cells. Bioscience, Biotechnology and Biochemistry, 71, 1294-1305.

Dicranum scoparium’ nın fenolik bileşikleri ile antimikrobiyal ve sitotoksik etkilerinin taranması

Year 2018, Volume: 11 Issue: 1, 87 - 94, 01.01.2018

Abstract

Bryofitler, ciğer otları, boynuz otları ve yapraklı kara yosunları olmak üzere karada yaşayan en eski bitki türlerindendir. Son zamanlarda yapılan araştırmalar kara yosunlarının sıra dışı ve eşsiz maddeler içerdiğini ve yüksek oranda biyolojik aktivitede bulunduklarını ortaya koymuştur. Bu araştırma, Eskişehir Sündiken Dağlarından toplanan Dicranum scoparium Hedw. ’un fenolik bileşenleri ile antimikrobiyal ve sitotoksik özelliklerini ortaya koyma amacıyla yapılmıştır. Ekstraktların toplam fenol içeriği Folin-Ciocalteu’ nun yaptığı çalışma temel alınarak belirlenmiş ve yapılan analizler sonucunda ekstraktların gallik asit eşdeğerleri 81,90±0,10 ile 105,21±0,10 mg/g arasında bulunmuştur. En yüksek toplam fenolik asit içeriği etil asetat ekstraktından ekstrakt C elde edilmiştir. Farklı polaritelere sahip çözücüler kullanılarak yapılan fenolik asit toplama işlemi, asidik mobil faz olan C18 kolonunun kullanımı ve dereceli elüsyon ile ayrım yapılmasını mümkün kılan ters fazlı Yüksek Performanslı Sıvı Kromatografisi ile yürütülmüştür. Bu işlem sonrasında yine en yüksek fenolik asit içeriği etil asetat ekstraktından elde edilmiştir. Antimikrobiyal analiz sonuçlarına göre tüm ekstraktların Pseudomonas aeruginosa ile Bacillus subtilis’ e karşı aktif olduğu belirlenmiştir. Ayrıca, aseton ekstratı ile ekstrakt C’ nin test edilen 4 bakteriye karşı etkisinin olduğu gözlenmiştir. Ekstrakt A, 3 bakteri ve 3 mantar türüne karşı inhibisyon özelliği sergilemiştir. En etkili ekstraktların minimum inhibitör konsantrasyonları bakteriler için 11,7-187,5 µg/mL olarak ölçülmüştür. Ayrıca sıçan glioma hücreleri C6 üzerinde 0,17, 1,7, 17, 85 ve 170 µg/mL’lik konsantrasyonlara sahip metanol, B ve C ekstraktları test edilmiştir. Yirmi dört saat süre ile denenen metanol ekstraktının hücrelerde herhangi bir sitotoksik etki göstermemesine rağmen, 85 ve 170 µg/mL’ lik konsantrasyonların 48 saat de C6 canlılığını hafif derecede azalttığı gözlenmiştir. 17, 85 ve 170 µg/mL’lik B ekstraktları ise, glioma hücre canlılığını doz ve zamana bağlı olarak azaltmıştır. Ekstrakt C ise 24 saatte yalnızca 170 µg/mL’lik dozunda hücre canlılığı üzerinde etki gösterirken, 48 saat saatte denenen tüm dozlarda sitotoksik etki göstermiştir. Yapılan bu çalışma D. scoparium’ un antimikrobiyal ve antikanser moleküllere sahip olabileceğini göstermiştir

References

  • Asakawa, Y. (2007). Biologically active compounds from bryophytes. Chenia, 9, 73-104.
  • Asakawa, Y., Harrison, L.J., Toyota, M. (1985). Occurrence of a potent piscicidal diterpenedial in the liverwort Riccardia lobata var. yakushimensis. Phytochemistry, 24, 261-262.
  • Asakawa, Y., Ludwiczuk, A., Nagashima, F. (2013). Phytochemical and biological studies of bryophytes. Phytochemistry, 91, 52-80.
  • Asakawa, Y., Toyota, M., Takemoto, T. (1980). Four new sacculatane-type diterpenoids from Trichocoleopsis sacculata and Pellia endiviaefolia. Phytochemistry, 19, 1799-1803.
  • Bodade, R.G., Borkar, P.S., Md Saiful, A., Khobragade, C.N. (2008). In vitro screening of bryophytes for antimicrobial activity. Journal of Medicinal Plants, 7, 23-28.
  • Dulger, B., Hacıoglu, N., Uyar, G. (2009). Evaluation of antimicrobial activity of some mosses from Turkey. Asian Journal of Chemistry, 21, 4093-4096.
  • Elibol, B., Ezer, T., Kara, R., Yuvalı Celik, G., Colak, E. (2011). Antifungal and antibacterial effects of some acrocarpic mosses. African Journal of Biotechnology, 10, 986-989.
  • Ertürk, Ö., Şahin, H., Ertürk, E.Y., Hotaman, H.E., Koz, B., Özdemir, Ö. (2015). The antimicrobial and antioxidant activities of extracts obtained from some moss species in Turkey. Herba Polonica, 61, 52-65.
  • Fu, P., Lin, S., Shan, L., Lu, M., Shen, Y.H., Tang, J., Liu, R.H., Zhang, X., Zhu, R.L., Zhang, W.D. (2009). Constituents of the moss Polytrichum commune. Journal of Natural Products, 72, 1335-1337.
  • Ilhan, S., Savaroglu, F., Colak, F., Filik Iscen, C., Erdemgil, F.Z. (2006). Antimicrobial activity of Palustriella commutata (Hedw.) Ochyra extracts (Bryophyta). Turkish Journal of Biology, 30, 149-152.
  • Ivanova, V., Kolarova, M., Aleksieva, K., Dornberger, K.J., Haertl, A., Moellmann, U., Dahse, H.M., Chipev, N. (2007). Sanionins: Antiinflammatory and antibacterial agents with weak cytotoxicity from the Antarctic Moss Sanionia georgico-uncinata. Preparative Biochemistry and Biotechnology, 37, 343-352.
  • Jockovıc, N., Andrade, P.B., Valentao, P., Sabovljevic, M. (2008). HPLC–DAD of Phenolics in Bryophytes Lunularia cruciata, Brachytheciastrum velutinum and Kindbergia praelonga. Journal of the Serbian Chemical Society, 73, 1161-1167.
  • Jones, W.P., Kinghorn, A.D. (2005). Extraction of plant secondary metabolites. In: Sarker SD, Latif Z, Gray AI (eds) Natural Products Isolation 2nd Edn: Methods in Biotechnology Series, Humana Press, Totowa, NJ, 20, 323-351.
  • Klavina, L., Springe, G., Nikolajeva, V., Martsinkevich, I., Nakurte, I., Dzabijeva, D., Steinberga, I. (2015). Chemical composition analysis, antimicrobial activity and cytotoxicity screening of moss extracts (Moss Phytochemistry). Molecules, 20, 17221- 17243.
  • Komala, I., Ito, T., Nagashima, F., Yagi, Y., Asakawa, Y. (2011). Cytotoxic bibenzyls, and germacrane-and pinguisane-type sesquiterpenoids from Indonesian, Tahitian and Japanese liverworts. Natural Product Communications, 6, 303-309.
  • Krzaczkowski, L., Wright, M., Reberioux, D., Massiot, G., Etievant, C., Gairin, J.E. (2009). Pharmacological screening of bryophyte extracts that inhibit growth and induce abnormal phenotypes in human HeLa cancer cells. Fundamental and Clinical Pharmacology, 23, 473-482.
  • NCCLS, (2008). Performance standards for antimicrobial susceptibility testing; ninth informational supplement. NCCLS document M100-S9. Wayne, PA, National Committee for Clinical Laboratory Standard pp. 120-126.
  • Oztopcu-Vatan, P., Savaroglu, F., Fılık Iscen, C., Kabadere, S., Ilhan, S., Uyar, R. (2011). Antimicrobial and antiproliferative activities of Homalothecium sericeum (Hedw.) Schimp. extracts. Fresenius Environmental Bulletin, 20, 461-466.
  • Oztopcu-Vatan, P., Kabadere, S., Uyar, R., Savaroglu, F., Kus, G. (2012). Time dependent cytotoxic role of Homalothecium sericeum extracts on glioma. Biological Diversity and Conservation, 5(1), 1-4.
  • Oztürk, N., Tuncel, M., Potoğlu-Erkara, I. (2009). Phenolic compounds and antioxidant activities of some Hypericum species: A comparative study with H. perforatum. Pharmaceutical Biology, 47, 120-127.
  • Özturk, N., Tuncel, M., Tuncel, N.B. (2007). Determination of phenolic acids by a modified HPLC: Its application to various plant materials. Journal of Liquid Chromatography and Related Technologie, 30, 587-596.
  • Sabovljević, A., Sokovic, M., Glamočlija, J., Ćirić, A., Vujičić, M., Pejin, B., Sabovljević, M. (2010). Comparison of extract bio- activities of in-situ and in-vitro grown selected bryophyte species. African Journal of Microbiology Research, 4, 808-812.
  • Sabovljević, A., Soković, M., Sabovljević, M., Grubisic, D. (2006). Antimicrobial activity of Bryum argenteum. Fitoterapia, 77, 144- 145.
  • Sabovljevic, M., Bijelovic, A., Grubisic, D. (2001). Bryophytes as a Potential Source of Medicinal Compounds, Review. Lekovite Sirovine, 21, 17-29.
  • Savaroglu, F., Filik-Iscen, C., Oztopcu-Vatan, P., Kabadere, S., Ilhan, S., Uyar, R. (2011a). Determination of antimicrobial and antiproliferative activities of the aquatic moss Fontinalis antipyretica Hedw. Turkish Journal of Biology, 35, 361-369.
  • Savaroglu, F., Ilhan, S., Filik-Iscen, C. (2011b). An evaluation of the antimicrobial activity of some Turkish mosses. Journal of Medicinal Plants Research, 5, 3286-3292.
  • Singh, M., Govindarajan, R., Nath, V., Rawat, A.K.S., Mehrotra, S. (2006). Antimicrobial, wound healing and antioxidant activity of Plagiochasma appendiculatum Lehm. et Lind. Journal of Ethnopharmacology, 107, 67-72.
  • Singleton, V., Rossi J. (1965). Colorimetry of total phenolics with phosphomolybdic phosphotungstic acid reagents. American Journal of Enology and Viticulture, 16, 144-158.
  • Tsao, R., Deng, Z. (2004). Separation procedures for naturally occurring antioxidant phytochemicals. Journal of Chromatography B, 812, 85-99.
  • Van Hoof, L., Vanden Berghe, D.A., Petit, E., Vlietinck, A.J. (1981). Antibacterial and antiviral screening of Bryophyta. Fitoterapia, 52, 223-229.
  • Veljić, M., Tarbuk, M., Marin, P.D., Ćirić, A., Soković, M., Marin, M. (2008). Antimicrobial activity of methanol extracts of mosses from Serbia. Pharmaceutical Biology, 46, 1-5.
  • Yamada, P., Isoda, H., Han, J.K., Talorete, T.P.N., Yamaguchi, T., Abe, Y. (2007). Inhibitory effect of fulvic acid extracted from Canadian sphagnum peat on chemical mediator release by RBL-2H3 and KU812 cells. Bioscience, Biotechnology and Biochemistry, 71, 1294-1305.
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Primary Language Turkish
Journal Section Research Article
Authors

Fılık Iscen This is me

Publication Date January 1, 2018
Published in Issue Year 2018 Volume: 11 Issue: 1

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APA Iscen, F. (2018). Dicranum scoparium’ nın fenolik bileşikleri ile antimikrobiyal ve sitotoksik etkilerinin taranması. Biological Diversity and Conservation, 11(1), 87-94.

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