New ion-exchanged zeolite derivatives: antifungal and antimycotoxin properties against Aspergillus flavus and aflatoxin B1
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Oscar Rubem Klegues Montedo | E. Angioletto | O. Montedo | Geovana D. Savi | Willian Acordi Cardoso | Bianca G. Furtado | Tiago Bortolotto | Luciana O V Da Agostin | Janaína Nones | Elton Torres Zanoni | Elidio Angioletto | E. Zanoni | J. Nones | G. Savi | B. G. Furtado | T. Bortolotto | W. A. Cardoso | Luciana O V Da Agostin
[1] Wen-sheng Hou,et al. The structures and antibacterial properties of nano-SiO2 supported silver/zinc-silver materials. , 2008, Dental materials : official publication of the Academy of Dental Materials.
[2] G. Mohamed,et al. Coordination modes of bidentate lornoxicam drug with some transition metal ions. Synthesis, characterization and in vitro antimicrobial and antibreastic cancer activity studies. , 2014, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[3] C. Athanassiou,et al. Applications of natural zeolites on agriculture and food production. , 2017, Journal of the science of food and agriculture.
[4] C. Melo,et al. Synthesis of 4A zeolites from kaolin for obtaining 5A zeolites through ionic exchange for adsorption of arsenic , 2012 .
[5] P. Dantigny,et al. Effect of storage conditions (relative humidity, duration, and temperature) on the germination time of Aspergillus carbonarius and Penicillium chrysogenum. , 2012, International journal of food microbiology.
[6] Nikolaos Panousis,et al. The role of natural and synthetic zeolites as feed additives on the prevention and/or the treatment of certain farm animal diseases: A review , 2005, Microporous and Mesoporous Materials.
[7] M. Kalinowska,et al. Spectroscopic (FT-IR, FT-Raman, 1H, 13C NMR, UV/VIS), thermogravimetric and antimicrobial studies of Ca(II), Mn(II), Cu(II), Zn(II) and Cd(II) complexes of ferulic acid. , 2014, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[8] P. Praus,et al. Antibacterial and antifungal activities of silver, copper and zinc montmorillonites , 2011 .
[9] C. Li,et al. Silver(I)–glutathione biocoordination polymer hydrogel: effective antibacterial activity and improved cytocompatibility , 2011 .
[10] G. Čík,et al. Study of fungicidal and antibacterial effect of the Cu(II)-complexes of thiophene oligomers synthesized in ZSM-5 zeolite channels. , 2001, Chemosphere.
[11] V. Dondur,et al. FTIR spectroscopy of framework aluminosilicate structures: carnegieite and pure sodium nepheline , 2003 .
[12] H. Riella,et al. Thermal treatment of bentonite reduces aflatoxin b1 adsorption and affects stem cell death. , 2015, Materials science & engineering. C, Materials for biological applications.
[13] Donald W. Breck,et al. Zeolite Molecular Sieves: Structure, Chemistry, and Use , 1974 .
[14] P. Dantigny,et al. Application of Doehlert design to determine the combined effects of temperature, water activity and pH on conidial germination of Penicillium chrysogenum , 2001, Journal of applied microbiology.
[15] N. Rendtorff,et al. Evaluation of Non Crystalline Phase in AZS Refractories by XRD Methods , 2011 .
[16] N. Baç,et al. Antimicrobial behavior of ion-exchanged zeolite X containing fragrance , 2016 .
[17] V. Scussel,et al. Efficacy of zinc compounds in controlling Fusarium head blight and deoxynivalenol formation in wheat (Triticum aestivum L.). , 2015, International journal of food microbiology.
[18] V. Scussel,et al. In vitro activity of the Brazil nut (Bertholletia excelsa H.B.K.) oil in aflatoxigenic strains of Aspergillus parasiticus , 2014, European Food Research and Technology.
[19] A. Bortoluzzi,et al. Antifungal properties of Zinc-compounds against toxigenic fungi and mycotoxin , 2013 .
[20] K. Byrappa,et al. Characterization of zeolites by infrared spectroscopy , 2007 .
[21] A. Ramazani,et al. Artemia salina as a model organism in toxicity assessment of nanoparticles , 2015, DARU Journal of Pharmaceutical Sciences.
[22] K. Brix,et al. Effects of Copper, Cadmium, and Zinc on the Hatching Success of Brine Shrimp (Artemia franciscana) , 2006, Archives of environmental contamination and toxicology.
[23] E. Basaldella,et al. A-type zeolite containing Ag+/Zn2+ as inorganic antifungal for waterborne coating formulations , 2014 .
[24] A. M. Pacheco,et al. Selenium and Aflatoxins in Brazil Nuts , 2011 .
[25] Jun Kim,et al. CO2 adsorption over ion-exchanged zeolite beta with alkali and alkaline earth metal ions , 2010 .
[26] N. Yaghobi,et al. Influence of monovalent cations ion-exchange on zeolite ZSM-5 in separation of para-xylene from xylene mixture , 2012 .
[27] A. Bortoluzzi,et al. Effect of zinc compounds on Fusarium verticillioides growth, hyphae alterations, conidia, and fumonisin production. , 2013, Journal of the science of food and agriculture.
[28] Xingyu Jiang,et al. Facile preparation of Ag2S/Ag semiconductor/metal heteronanostructures with remarkable antibacterial properties. , 2012, Chemphyschem : a European journal of chemical physics and physical chemistry.
[29] Philippe Dantigny,et al. Basis of predictive mycology. , 2005, International journal of food microbiology.