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Original Articles

Tannic acid-coated zeolite Y nanoparticles as novel drug nanocarrier with controlled release behavior and anti-protozoan activity against Trichomonas gallinae

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Pages 587-593 | Received 04 Apr 2018, Accepted 06 May 2018, Published online: 08 Oct 2018

References

  • Mamaeva, V.; Sahlgren, C.; Lindén, M. Mesoporous Silica Nanoparticles in Medicine-Recent Advances. Adv. Drug Deliv. Rev. 2013, 65, 689–702.
  • Datt, A.; Fields, D.; Larsen, S. C. An Experimental and Computational Study of the Loading and Release of Aspirin from Zeolite HY. J. Phys. Chem. C. 2012, 116, 21382–21390.
  • Horcajada, P.; Márquez-Alvarez, C.; Rámila, A.; Pérez-Pariente, J.; Vallet-Regí, M. Controlled Release of Ibuprofen from Dealuminated Faujasites. Solid State Sci. 2006, 8, 1459–1465.
  • Zhang, H.; Kim, Y.; Dutta, P. K. Controlled Release of Paraquat from Surface-Modified Zeolite Y. Microporous Mesoporous Mater. 2006, 88, 312–318.
  • Arruebo, M.; Fernández-Pacheco, R.; Irusta, S.; Arbiol, J.; Ibarra, M. R.; Santamaría, J. Sustained Release of Doxorubicin from Zeolite-Magnetite Nanocomposites Prepared by Mechanical Activation. Nanotechnology 2006, 17, 4057–4064.
  • Dyer, A.; Morgan, S.; Wells, P.; Williams, C. The Use of Zeolites as Slow Release Anthelmintic Carriers. J. Helminthol. 2000, 74, 137–141.
  • Vilaça, N.; Amorim, R.; Machado, A. F.; Parpot, P.; Pereira, M. F. R.; Sardo, M.; Rocha, J.; Fonseca, A. M.; Neves, I. C.; Baltazar, F. Potentiation of 5-Fluorouracil Encapsulated in Zeolites as Drug Delivery Systems for in Vitro Models of Colorectal Carcinoma. Colloids Surf. B Biointerfaces 2013, 112, 237–244.
  • Amorim, R.; Vilaça, N.; Martinho, O.; Reis, R. M.; Sardo, M.; Rocha, J.; Fonseca, A. M.; Baltazar, F.; Neves, I. C. Zeolite Structures Loading with an Anticancer Compound as Drug Delivery Systems. J. Phys. Chem. C. 2012, 116, 25642–25650.
  • Atkinson, C. T.; Thomas, N. J.; Hunter, D. B. Parasitic Diseases of Wild Birds. Wiley-Blackwell: Hoboken, NJ, 2008.
  • Dingsdag, S. A.; Hunter, N. Metronidazole: An Update on Metabolism, Structure–Cytotoxicity and Resistance Mechanisms. J. Antimicrob. Chemother. 2017, 73, 351.
  • Holmberg, B. A.; Wang, H.; Yan, Y. High Silica Zeolite Y Nanocrystals by Dealumination and Direct Synthesis. Microporous Mesoporous Mater. 2004, 74, 189–198.
  • Aliabadi, M.; Yunessnia Lehi, A.; Shagholani, H.; Gerayeli, A. Planar Polymer-Graphene Oxide Nanohybrid as a 5-Fluorouacil Carrier in pH-Responsive Controlled Release. J. Drug Deliv. Sci. Technol. 2018, 43, 103–106.
  • Shagholani, H.; Ghoreishi, S. M. Investigation of Tannic Acid Cross-Linked onto Magnetite Nanoparticles for Applying in Drug Delivery Systems. J. Drug Deliv. Sci. Technol. 2017, 39, 88–94.
  • Atlas, R. M. Handbook of Microbiological Media; CRC Press/Taylor & Francis: London, UK, 2010.
  • Amin, A.; Neubauer, C.; Liebhart, D.; Grabensteiner, E.; Hess, M. Axenization and Optimization of in Vitro Growth of Clonal Cultures of Tetratrichomonas Gallinarum and Trichomonas Gallinae. Exp. Parasitol. 2010, 124, 202–208.
  • Tabari, M.; Youssefi, M.; Moghadamnia, A. Antitrichomonal Activity of Peganum Harmala Alkaloid Extract against Trichomoniasis in Pigeon ( Columba Livia Domestica ). Br. Poult. Sci. 2017, 58, 236–236.
  • Salleh, N.; Jais, U. S.; Sarijo, S. H. IEEE Symposium on Business. Eng. Ind. Appl. 2012, 124, 129.
  • Jegal, J.; Lee, K.-H. Nanofiltration Membranes Based on Poly(Vinyl Alcohol) and Ionic Polymers. J. Appl. Polym. Sci. 1999, 72, 1755–1762.
  • Fang, Z.; Chen, J.; Qiu, X.; Qiu, X.; Cheng, W.; Zhu, L. Effective Removal of Antibiotic Metronidazole from Water by Nanoscale Zero-Valent Iron Particles. Desalination 2011, 268, 60–67.
  • Zimre-Grabensteiner, E.; Arshad, N.; Amin, A.; Hess, M. Genetically Different Clonal Isolates of Trichomonas Gallinae, Obtained from the Same Bird, Can Vary in Their Drug Susceptibility, an in Vitro Evidence. Parasitol. Int. 2011, 60, 213–215.
  • Dunne, R. L.; Dunn, L. A.; Upcroft, P.; O'Donoghue, P. J.; Upcroft, J. A. Drug Resistance in the Sexually Transmitted Protozoan Trichomonas Vaginalis. Cell Res. 2003, 13, 239
  • Meri, T.; Jokiranta, T. S.; Suhonen, L.; Meri, S. Resistance of Trichomonas Vaginalis to Metronidazole: report of the First Three Cases from Finland and Optimization of in Vitro Susceptibility Testing under Various Oxygen concentrations. J. Clin. Microbiol. 2000, 38, 763–767.
  • Cudmore, S. L.; Delgaty, K. L.; Hayward-McClelland, S. F.; Petrin, D. P.; Garber, G. E. Treatment of Infections Caused by Metronidazole-Resistant Trichomonas Vaginalis. Clin. Microbiol. Rev. 2004, 17, 783–793.
  • Upcroft, P.; Upcroft, J. A. Drug Targets and Mechanisms of Resistance in the Anaerobic Protozoa. Clin. Microbiol. Rev. 2001, 14, 150–164.

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