Publication Cover
Journal of Environmental Science and Health, Part B
Pesticides, Food Contaminants, and Agricultural Wastes
Volume 54, 2019 - Issue 3
250
Views
6
CrossRef citations to date
0
Altmetric
Articles

Antifungal activity of P3HB microparticles containing tebuconazole

, , &

References

  • Li, D.; Liu, M.; Yang, Y.; Shi, H.; Zhou, J.; He, D. Strong Lethality and Teratogenicity of Strobilurins on Xenopus Tropicalis Embryos: Basing on Ten Agricultural Fungicides. Environ. Pollut. 2016, 208, 868–874.
  • Child, R.D.; Evans, D.E.; Allen, J.; Arnold, G.M. Growth Responses in Oilseed Rape (Brassica Napus L.) to Combined Applications of the Triazole Chemicals Triapenthenol and Tebuconazole and Interactions with Gibberellins. Plant Growth Regul. 1993, 13, 203–212.
  • Montfort, F.; Klepper, B.L.; Smiley, R.W. Effects of Two Triazole Seed Treatments, Triticonazole and Triadimenol, on Growth and Development of Wheat. Pestic. Sci. 1996, 46, 315–322.
  • Yang, D.; Wang, N.; Yan, X.; Shi, J.; Zhang, M.; Wang, Z.; Yuan, H. Microencapsulation of Seed-Coating Tebuconazole and Its Effects on Physiology and Biochemistry of Maize Seedlings. Colloids Surf. B Biointerfaces. 2014, 114, 241–246.
  • Grossmann, K. Plant Growth Retardants as Tools in Physiological Research. Physiol. Plant. 1990, 78, 640–648.
  • Fletcher, R.A.; Gilley, A.; Sankhla N.; Davis, T.D. Triazoles as Plant Growth Regulators and Stress Protectants. Horticult. Rev. 2000, 24, 55–138.
  • Berenzen, N.; Lentzen-Godding, A.; Probst, M.; Schulz, H.; Schulz, R.; Liess, M. A Comparison of Predicted and Measured Levels of Runoff-Related Pesticide Concentrations in Small Lowland Streams on a Landscape Level. Chemosphere. 2005, 58, 683–691.
  • Reilly, T.J.; Smalling, K.L.; Orlando, J.L.; Kuivila, K.M. Occurrence of Boscalid and Other Selected Fungicides in Surface Water and Groundwater in Three Targeted Use Areas in the United States. Chemosphere. 2012, 89, 228–234.
  • Ghormade, V.; Deshpande, M.V.; Paknikar, K.M. Perspectives for Nano-Biotechnology Enabled Protection and Nutrition of Plants. Biotechnol. Adv. 2011, 29, 792–803.
  • Alves, V.D.; Torres, C.V.; Freitas, F. Bacterial Polymers as Materials for the Development of Micro/Nanoparticles. Int. J. Polym. Mat. Polym. Biomater. 2016, 65, 211–224.
  • Singh, B.; Sharma, D.K.; Gupta, A. The Controlled and Sustained Release of a Fungicide From Starch and Alginate Beads. J. Environ. Sci. Health. B. 2009, 44, 113–122.
  • Lobo, F.; Aguirre, C.; Silva, M.; Grillo, R.; de Melo, N.; Oliveira, L.; Morais, L.; Campos, V.; Rosa, A.; Fraceto, L. Poly(Hydroxybutyrate-Cohydroxyvalerate) Microspheres Loaded with Atrazine Herbicide: Screening of Conditions or Preparation, Physico-Chemical Characterization, and In Vitro Release Studies. Polym. Bull. 2011, 67, 479–495.
  • Gimeno, M. An Overview of the Latest Development of Microencapsulation for Agricultural Products. J. Env. Sci. Health B. 1996, 31, 407–420.
  • Zhila, N.; Murueva, A.; Shershneva, A.; Shishatskaya, E.; Volova, T. Herbicidal Activity of Slow-Release Herbicide Formulations in Wheat Stands Infested by Weeds. J. Env. Sci. Health B. 2017, 52, 729–735.
  • Wang, Y.; Qian, C.; Yan, X.; Liu, H. Preparation and Characterization of Controlled Release Poly(Melamine-Formaldehyde) Microcapsules Filled with 2,4-D Isooctyl Ester. Int. J. Polym. Mat. Polym. Biomater. 2017, 66, 963–969.
  • Pascoli, M.; Lopes-Oliveira, P.J.; Fraceto, L.F.; Barozzi, S.A.; Oliveira, H.C. State of the Art of Polymeric Nanoparticles as Carrier Systems with Agricultural Applications: A Minireview. Energ. Ecol. Environ. 2018, 3, 137–148.
  • Volova, T.G.; Shishatskaya, E.I.; Sinskey, A.J. Degradable Polymers. Production, Properties and Applications. Nova Science Publishers: New York, 2013.
  • Grillo, R.; Pereira, A. d E.S.; de Melo, N.F.S.; Porto, R.M.; Feitosa, L.O.; Tonello, P.S.; Filho, N.L.D.; Rosa, A.H.; Lima, R.; Fraceto, L.F. Controlled Release System for Ametryn Using Polymer Microspheres: Preparation, Characterization and Release Kinetics in Water. J. Hazardous Mater. 2011, 186, 1645–1651.
  • Suave, J.; Dall’Agnol, E.C.; Pezzin, A.P.T.; Meier, M.M.; Silva, D.A.K. Biodegradable Microspheres of Poly(3-Hydroxybutyrate)/Poly(E-Caprolactone) Loaded with Malathion Pesticide: Preparation, Characterization, and In Vitro Controlled Release Testing. J. App. Polym. Sci. 2010, 117, 3419–3427.
  • Volova, T.G.; Prudnikova, S.V.; Zhila, N.O.; Vinogradova, O.N.; Shumilova, A.A.; Nikolaeva, E.D.; Kiselev, E.G.; Shishatskaya, E.I. Efficacy of Tebuconazole Embedded in Biodegradable Poly-3-Hydroxybutyrate to Inhibit the Development of Fusarium moniliforme in Soil Microecosystems. Pest Manag. Sci. 2017, 73, 925–935.
  • Volova, T.G.; Prudnikova, S.V.; Zhila, N.O. Fungicidal Activity of Slow-Release P(3HB)/TEB Formulations in Wheat Plant Communities Infected by Fusarium Moniliforme. Environ. Sci. Pollut. Res. 2018, 25, 552–561.
  • Volova, T.G.; Gitelzon, I.I.; Kalacheva, G.S.; Kuznrtsov, V.N.; Shabanov, V.F. Means of Obtaining a Polymer of β-oxybutyric Acid. Patent of Russian Federation for invention, No 2207375, 2001.
  • Kegley, S.E.; Hill, B.R.; Orme, S.; Choi, A.H. PAN Pesticide Database. In Pesticide Action Network [Internet]. North America, Oakland, CA, 2014.
  • Lewis, K.A.; Tzilivakis, J.; Warner, D.J.; Green, A. An International Database for Pesticide Risk Assessments and Management. Hum. Ecol. Risk. Asses. Int. J. 2016, 22, 1050–1064.
  • Volova, T.G.; Zhila, N.O.; Vinogradova, O.N.; Nikolaeva, E.D.; Kiselev, E.G.; Shumilova, A.A.; Shershneva, A.M.; Shishatskaya, E.I. Constructing Herbicide Metribuzin Sustained-Release Formulations Based on the Natural Polymer Poly-3-Hydroxybutyrate as a Degradable Matrix. J. Env. Sci. Health B. 2016, 51, 113–125.
  • Volova, T.; Zhila, N.; Vinogradova, O.; Shumilova, A.; Prudnikova, S.; Shishatskaya, E. Characterization of Biodegradable Poly-3-Hydroxybutyrate Films and Pellets Loaded with the Fungicide Tebuconazole. Environ. Sci. Pollut. Res. Int. 2016, 23, 5243–5254.
  • Nasir, F.; Iqbal, Z.; Khan, J.A.; Khan, A.; Khuda, F.; Ahmad, L.; Khan, A.; Khan, A.; Dayoo, A. Development and Evaluation of Diclofenac Sodium Thermorevesible Subcutaneous Drug Delivery System. Int. J. Pharmaceut. 2012, 439, 120–126.
  • Hadjiioannou, T.P.; Christian, G.D.; Koupparis, M.A.; Macheras, P.E. Quantitative Calculations in Pharmaceutical Practice and Research. VCH Publishers, Inc.: New York, 1993, 345–348.
  • Gouda, R.; Baishyn, H.; Qing, Z. Application of Mathematical Models in Drug Release Kinetics of Carbidopa and Levodopa ER Tablets. J. Dev. Drugs. 2017, 6, 1–8.
  • Meera Moydeen, A.; Syed Ali Padusha, M.; Aboelfetoh, E.F.; Al-Deyab, S.S.; Mohamed, H. Fabrication of Electrospun Poly(Vinyl Alcohol)/Dextran Nanofibers via Emulsion Process as Drug Delivery System: Kinetics and In Vitro Release Study. Int. J. Biol. Macromol. 2018, 116, 1250–1259.
  • Ritger, P.L.; Peppas, N.A. A Simple Equation for Description of Solute Release I. Fickian and Non-Fickian Release from Non-Swellable Devices in the Form of Slabs, Spheres, Cylinders or Discs. J. Control. Releas. 1987, 5, 23–36.
  • Ding, X.; Richter, D.L.; Matuana, L.M.; Heiden, P.A. Efficient One-Pot Synthesis and Loading of Self-Assembled Amphiphilic Chitosan Nanoparticles for Low-Leaching Wood Preservation. Carbohydr. Polym. 2011, 86, 58–64.
  • Qian, K.; Shi, T.; He, S.; Luo, L.; Liu, X.; Cao, Y. Release Kinetics of Tebuconazole from Porous Hollow Silica Nanospheres Prepared by Miniemulsion Method. Micropor. Mesopor. Mater. 2013, 169, 1–6.
  • Doi, Y.; Kanesawa, Y. Enzymatic Degradation of Microbial Poly(3-Hydroxybutyrate) Films. Macromol. Chem. 1992, 193, 53–57.
  • Gogolewski, S.; Jovanovic, M.; Perren, S.M.; Dillon, J.G.; Hughes, M.K. Tissue Response and In Vivo Degradation of Selected Polyhydroxyacids: Polylactides (PLA), Poly(3-Hydroxybutyrate) (PHB), and Poly(3-Hydroxybutyrate-Co-3-Hydroxyvalerate) (PHB/VA). J. Biomed. Mater. Res. 1993, 27, 1135–1148.
  • Freier, T.; Kunze, C.; Nischan, C.; Kramer, S.; Sternberg, K.; Sa, M.; Hopt, U.T.; Schmitz, K.-P. In Vitro and In Vivo Degradation Studies for Development of a Biodegradable Patch Based on Poly(3-Hydroxybutyrate). Biomaterials. 2002, 23, 2649–2657.
  • Zhang, B.; Zhang, T.; Wang, Q.; Ren, T. Microorganism-Based Monodisperse Microcapsules: Encapsulation of the Fungicide Tebuconazole and Its Controlled Release Properties. RSC Adv. 2015, 5, 25164–25170.
  • Asrar, J.; Ding, Y.; Monica, R.E.; La.; Ness, L.C. Controlled Release of Tebuconazole from a Polymer Matrix Microparticle: Release Kinetics and Length of Efficacy. J. Agric. Food Chem. 2004, 52, 4814–4820.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.