Zacytuj

Akhter N., Wu B., Memon A.M., Mohsin M.: Probiotics and prebiotics associated with aquaculture: A review. Fish Shellfish Immunol 2015, 45, 733–741, doi: 10.1016/j.fsi.2015.05.038.Akhter N. Wu B. Memon A.M. Mohsin M. Probiotics and prebiotics associated with aquaculture: A review Fish Shellfish Immunol 2015 45 733 741 10.1016/j.fsi.2015.05.03826044743Open DOISearch in Google Scholar

Ali M., Chaudhary N.: Ficus hispida Linn.: A review of its pharmacognostic and ethnomedicinal properties. Pharmacogn Rev 2011, 5, 96–102, doi: 10.4103/0973-7847.79104.Ali M. Chaudhary N. Ficus hispida Linn.: A review of its pharmacognostic and ethnomedicinal properties Pharmacogn Rev 2011 5 96 102 10.4103/0973-7847.79104321001122096323Open DOISearch in Google Scholar

Badgujar S.B., Patel V.V., Bandivdekar A.H., Mahajan R.T.: Traditional uses, phytochemistry and pharmacology of Ficus carica a review. Pharm Biol 2014, 52, 1487–1503, doi: 10.1016/j.jep.2019.112204.Badgujar S.B. Patel V.V. Bandivdekar A.H. Mahajan R.T. Traditional uses, phytochemistry and pharmacology of Ficus carica a review Pharm Biol 2014 52 1487 1503 10.1016/j.jep.2019.11220431669442Open DOISearch in Google Scholar

Brummit R.K., Powell C.E.P.: Authors of plant names. A list of authors of scientific names of plants, with recommended standard forms of their names, including abbreviations. Royal Botanic Gardens Kew, London, 1992.Brummit R.K. Powell C.E.P. Authors of plant names A list of authors of scientific names of plants, with recommended standard forms of their names, including abbreviations. Royal Botanic Gardens Kew, London 1992Search in Google Scholar

Burr S.E., Frey J.: Analysis of type III effector genes in typical and atypical Aeromonas salmonicida J Fish Dis 2007, 30, 711–714, doi: 10.1111/j.1365-2761.2007.00859.x.Burr S.E. Frey J. Analysis of type III effector genes in typical and atypical Aeromonas salmonicida J Fish Dis 2007 30 711 714 10.1111/j.1365-2761.2007.00859.x17958615Open DOISearch in Google Scholar

Chatterjee A., Mondal J., Bhowmik R., Bhattachayra A., Roy H., Kundu S.: In-vitro anti-oxidant and antimicrobial study of Ficus hispida JPTRM 2015, 3, 153–166, doi: 10.15415/jptrm.2015.32012.Chatterjee A. Mondal J. Bhowmik R. Bhattachayra A. Roy H. Kundu S. In-vitro anti-oxidant and antimicrobial study of Ficus hispida JPTRM 2015 3 153 166 10.15415/jptrm.2015.32012Open DOISearch in Google Scholar

Cibrian A., Meyer H., Oleas A., Ma N., Meerow H., Francisco-Ortega A., Griffith J.M.: What is the conservation value of a plant in a botanic garden? Using indicators to improve management of Ex Situ collections. Bot Rev 2013, 79, 1–19, doi: 10.1007/s12229-013-9120-0.Cibrian A. Meyer H. Oleas A. Ma N. Meerow H. Francisco-Ortega A. Griffith J.M. What is the conservation value of a plant in a botanic garden? Using indicators to improve management of Ex Situ collections Bot Rev 2013 79 1 19 10.1007/s12229-013-9120-0Open DOISearch in Google Scholar

Clinical and Laboratory Standards Institute: VET03-A: Methods for antimicrobial disk susceptibility testing of bacteria isolated from aquatic animals; Approved Guideline. Vol. 26, No. 23. CLSI, Wayne, 2006.Clinical and Laboratory Standards Institute: VET03-A: Methods for antimicrobial disk susceptibility testing of bacteria isolated from aquatic animals Approved Guideline Vol. 26 No. 23 CLSI, Wayne 2006Search in Google Scholar

Clinical and Laboratory Standards Institute: VET03-/VET04-S2 Performance standards for antimicrobial susceptibility testing of bacteria isolated from aquatic animals, Second Informational Supplement. Vol. 34, No. 15. CLSI, Wayne, 2014.Clinical and Laboratory Standards Institute: VET03-/VET04-S2 Performance standards for antimicrobial susceptibility testing of bacteria isolated from aquatic animals Second Informational Supplement Vol. 34 No. 15 CLSI, Wayne 2014Search in Google Scholar

Cowan M.M.: Plant products as antimicrobial agents. Clin Microbiol Rev 1999, 12, 564–582, doi: 10.1128/CMR.12.4.564.Cowan M.M. Plant products as antimicrobial agents Clin Microbiol Rev 1999 12 564 582 10.1128/CMR.12.4.5648892510515903Open DOISearch in Google Scholar

Cushnie T.P., Lamb A.J.: Antimicrobial activity of flavonoids. Int J Antimicrob Agents 2005, 26, 343–356, doi: 10.1016/j.ijantimicag.2005.09.002.Cushnie T.P. Lamb A.J. Antimicrobial activity of flavonoids Int J Antimicrob Agents 2005 26 343 356 10.1016/j.ijantimicag.2005.09.002712707316323269Open DOISearch in Google Scholar

Daglia M.: Polyphenols as antimicrobial agents. Curr Opin Biotechnol 2012, 23, 174–181, doi: 10.1016/j.copbio.2011.08.007.Daglia M. Polyphenols as antimicrobial agents Curr Opin Biotechnol 2012 23 174 181 doi: 10.1016/j.copbio.2011.08.00710.1016/j.copbio.2011.08.00721925860Search in Google Scholar

Dangarembizi R., Erlwanger K.H., Moyo D., Chivandi E.: Phytochemistry, pharmacology and ethnomedicinal uses of Ficus thonningii (Blume Moraceae): a review. Afr J Tradit Complement Altern Med 2012, 10, 203–212, doi: 10.4314/ajtcam.v10i2.4.Dangarembizi R. Erlwanger K.H. Moyo D. Chivandi E. Phytochemistry, pharmacology and ethnomedicinal uses of Ficus thonningii (Blume Moraceae): a review Afr J Tradit Complement Altern Med 2012 10 203 212 10.4314/ajtcam.v10i2.4374656724146443Open DOISearch in Google Scholar

Galina J., Yin G., Ardó L., Jeney Z.: The use of immunostimulating herbs in fish. An overview of research. Fish Physiol Biochem 2009, 35, 669–676, doi: 10.1007/s10695-009-9304-z.Galina J. Yin G. Ardó L. Jeney Z. The use of immunostimulating herbs in fish An overview of research. Fish Physiol Biochem 2009 35 669 676 10.1007/s10695-009-9304-z19277888Open DOISearch in Google Scholar

Ghosh R., Sharatchandra K., Rita S., Thokchom I.S.: Hypoglycemic activity of Ficus hispida (bark) in normal and diabetic albino rats. Indian J Pharmacol 2004, 36, 222–225.Ghosh R. Sharatchandra K. Rita S. Thokchom I.S. Hypoglycemic activity of Ficus hispida (bark) in normal and diabetic albino rats Indian J Pharmacol 2004 36 222 225Search in Google Scholar

Heuer H., Schmitt H., Smalla K.: Antibiotic resistance gene spread due to manure application on agricultural fields. Curr Opin Microbiol 2011, 14, 236–243, doi: 10.1016/j.mib.2011.04.009.Heuer H. Schmitt H. Smalla K. Antibiotic resistance gene spread due to manure application on agricultural fields Curr Opin Microbiol 2011 14 236 243 10.1016/j.mib.2011.04.00921546307Open DOISearch in Google Scholar

Hoel S., Valdstein O., Jakobsen A.N.: The significance of mesophilic Aeromonas spp. in minimally processed ready-to-eat seafood. Microorganisms 2019, 7, 91, doi: 10.3390/microorganisms7030091.Hoel S. Valdstein O. Jakobsen A.N. The significance of mesophilic Aeromonas spp in minimally processed ready-to-eat seafood. Microorganisms 2019 7 91 10.3390/microorganisms7030091646314130909614Open DOISearch in Google Scholar

Jaafar H.Z., Ibrahim M.H., Karimi E.: Phenolics and flavonoids compounds, phenylanine ammonia lyase and antioxidant activity responses to elevated CO₂ in Labisia pumila (Myrisinaceae). Molecules 2012, 17, 6331–6347, doi: 10.3390/molecules17066331.Jaafar H.Z. Ibrahim M.H. Karimi E. Phenolics and flavonoids compounds, phenylanine ammonia lyase and antioxidant activity responses to elevated CO₂ in Labisia pumila (Myrisinaceae) Molecules 2012 17 6331 6347 10.3390/molecules17066331626835922634843Open DOISearch in Google Scholar

Kozińska A.: Dominant pathogenic species of mesophilic aeromonads isolated from diseased and healthy fish cultured in Poland. J Fish Dis 2007, 30, 293–301, doi: 10.1111/j.1365-2761.2007.00813.x.Kozińska A. Dominant pathogenic species of mesophilic aeromonads isolated from diseased and healthy fish cultured in Poland J Fish Dis 2007 30 293 301 10.1111/j.1365-2761.2007.00813.x17501739Open DOISearch in Google Scholar

Majumder P., Paridhavi M.: An ethno-phytochemical and pharmacological review on novel Indian medicinal plants used in herbal formulations. Int J Pharm Pharm Sci 2013, 5, 74–83.Majumder P. Paridhavi M. An ethno-phytochemical and pharmacological review on novel Indian medicinal plants used in herbal formulations Int J Pharm Pharm Sci 2013 5 74 83Search in Google Scholar

Okoth D.A., Chenia H.Y., Koorbanally N.A.: Antibacterial and antioxidant activities of flavonoids from Lannea alata (Engl.) Engl. (Anacardiaceae). Phytochem Lett 2013, 6, 476–481, doi:10.1016/j.phytol.2013.06.003.Okoth D.A. Chenia H.Y. Koorbanally N.A. Antibacterial and antioxidant activities of flavonoids from Lannea alata (Engl.) Engl (Anacardiaceae). Phytochem Lett 2013 6 476 481 10.1016/j.phytol.2013.06.003Open DOISearch in Google Scholar

Padmanabhan P., Jangle S.N.: Evaluation of in-vitro anti-inflammatory activity of herbal preparation, a combination of four medicinal plants. Int J App Basic Med Res 2012, 2, 109–116.Padmanabhan P. Jangle S.N. Evaluation of in-vitro anti-inflammatory activity of herbal preparation, a combination of four medicinal plants Int J App Basic Med Res 2012 2 109 116Search in Google Scholar

Reverter M., Bontemps N., Lecchini D., Banaigs B., Sasal P.: Use of plant extracts in fish aquaculture as an alternative to chemotherapy: Current status and future perspectives. Aquaculture 2014, 433, 50–61, doi: 10.1016/j.aquaculture.2014.05.048.Reverter M. Bontemps N. Lecchini D. Banaigs B. Sasal P. Use of plant extracts in fish aquaculture as an alternative to chemotherapy: Current status and future perspectives Aquaculture 2014 433 50 61 10.1016/j.aquaculture.2014.05.048Open DOISearch in Google Scholar

Romero J., Feijóo C.G., Navarrete P.: Chapter 6: Antibiotics in aquaculture – use, abuse and alternatives. In: Health and Environment in Aquaculture edited by E.D. Carvalho, G.S. David, R.J. Silva, IntechOpen, London, 2012, pp. 159–198.Romero J. Feijóo C.G. Navarrete P. Chapter 6: Antibiotics in aquaculture – use, abuse and alternatives In Health and Environment in Aquaculture edited by CarvalhoE.D. DavidG.S. SilvaR.J. IntechOpen, London 2012 pp 159 19810.5772/28157Search in Google Scholar

Salem M.Z.M., Salem A.Z.M., Camacho L.M., Ali H.M.: Antimicrobial activities and phytochemical composition of extracts of Ficus species: An overview. Afr J Microbiol Res 2013, 7, 4207–4219, doi: 10.5897/AJMR2013.5570.Salem M.Z.M. Salem A.Z.M. Camacho L.M. Ali H.M. Antimicrobial activities and phytochemical composition of extracts of Ficus species: An overview Afr J Microbiol Res 2013 7 4207 4219 10.5897/AJMR2013.5570Open DOISearch in Google Scholar

Sirisha N., Sreenivasulu M., Sangeeta K., Madhusudhana Chetty C.: Antioxidant properties of Ficus species, a review. Int J Pharmtech Res 2010, 4, 2174–2182.Sirisha N. Sreenivasulu M. Sangeeta K. Madhusudhana Chetty C. Antioxidant properties of Ficus species, a review Int J Pharmtech Res 2010 4 2174 2182Search in Google Scholar

Tkachenko H., Buyun L., Terech-Majewska E., Honcharenko V., Prokopiv A., Osadowski Z.: Preliminary in vitro screening of the antibacterial activity of leaf extracts from various Ficus species (Moraceae) against Yersinia ruckeri Fish Aquat Life 2019, 27, 15–26, doi: 10.2478/aopf-2019-0002.Tkachenko H. Buyun L. Terech-Majewska E. Honcharenko V. Prokopiv A. Osadowski Z. Preliminary in vitro screening of the antibacterial activity of leaf extracts from various Ficus species (Moraceae) against Yersinia ruckeri Fish Aquat Life 2019 27 15 26 10.2478/aopf-2019-0002Open DOISearch in Google Scholar

Tkachenko H., Buyun L., Terech-Majewska E., Osadowski Z.: Antibacterial activity of ethanolic leaf extracts obtained from various Ficus species (Moraceae) against the fish pathogen, Citrobacter freundii Balt Coast Zone – J Ecol Prot Coastline 2016, 20, 117–136.Tkachenko H. Buyun L. Terech-Majewska E. Osadowski Z. Antibacterial activity of ethanolic leaf extracts obtained from various Ficus species (Moraceae) against the fish pathogen, Citrobacter freundii Balt Coast Zone – J Ecol Prot Coastline 2016 20 117 136Search in Google Scholar

Tkachenko H., Buyun L., Terech-Majewska E., Osadowski Z.: In vitro antimicrobial activity of ethanolic extracts obtained from Ficus spp. leaves against the fish pathogen Aeromonas hydrophila Fish Aquat Life 2016, 24, 219–230, doi: 10.1515/aopf-2016-0019.Tkachenko H. Buyun L. Terech-Majewska E. Osadowski Z. In vitro antimicrobial activity of ethanolic extracts obtained from Ficus spp leaves against the fish pathogen Aeromonas hydrophila Fish Aquat Life 2016 24 219 230 10.1515/aopf-2016-0019Open DOISearch in Google Scholar

Tkachenko H., Buyun L., Terech-Majewska E., Osadowski Z., Honcharenko V., Prokopiv A.: Anti-Pseudomonas fluorescens efficacy of ethanolic extracts derived from the leaves of various Ficus species (Moraceae). Słupskie Prace Biologiczne 2016, 13, 295–316.Tkachenko H. Buyun L. Terech-Majewska E. Osadowski Z. Honcharenko V. Prokopiv A. Anti-Pseudomonas fluorescens efficacy of ethanolic extracts derived from the leaves of various Ficus species (Moraceae) Słupskie Prace Biologiczne 2016 13 295 316Search in Google Scholar

Valladão G.M., Gallani S.U., Pilarski F.: Phytotherapy as an alternative for treating fish disease. J Vet Pharmacol Ther 2015, 38, 417–428, doi: 10.1111/jvp.12202.Valladão G.M. Gallani S.U. Pilarski F. Phytotherapy as an alternative for treating fish disease J Vet Pharmacol Ther 2015 38 417 428 10.1111/jvp.1220225620601Open DOISearch in Google Scholar

Wang W., Sun J., Liu C., Xue Z.: Application of immunostimulants in aquaculture: current knowledge and future perspectives. Aquac Res 2017, 48, 1–23, doi: 10.1111/are.13161.Wang W. Sun J. Liu C. Xue Z. Application of immunostimulants in aquaculture: current knowledge and future perspectives Aquac Res 2017 48 1 23 10.1111/are.13161Open DOISearch in Google Scholar

eISSN:
2450-8608
Język:
Angielski
Częstotliwość wydawania:
4 razy w roku
Dziedziny czasopisma:
Life Sciences, Molecular Biology, Microbiology and Virology, other, Medicine, Veterinary Medicine