448
Views
8
CrossRef citations to date
0
Altmetric
Articles

Insecticidal activity of polycaprolactone nanoparticles decorated with chitosan containing two essential oils against Tribolium confusum

ORCID Icon, &
Pages 237-245 | Received 27 Nov 2019, Accepted 11 Sep 2020, Published online: 30 Sep 2020

References

  • Ahsaei SM, Rodríguez-Rojo S, Salgado M, Cocero MJ, Talebi-Jahromi KH, Amoabediny GH. 2020. Insecticidal activity of spray dried microencapsulated essential oils of Rosmarinus officinalis and Zataria multiflora against Tribolium confusum. Crop Prot. 128:104996.
  • Aulton ME. 1995. Pharmaceutics: the science of dosage form design. New York: Churchill Livingstone.
  • Borrás-Linares I, Stojanović Z, Quirantes-Piné R, Arráez-Román D, Švarc-Gajić J, Fernández-Gutiérrez A, Segura-Carretero A. 2014. Rosmarinus officinalis leaves as a natural source of bioactive compounds. Int J Mol Sci. 15(11):20585–20606.
  • Buteler M, Alma AM, Herrera ML, Gorosito NB, Fernández PC. 2019. Novel organic repellent for leaf-cutting ants: tea tree oil and its potential use as a management tool. Int J Pest Manag. 50:1–9.
  • Campolo O, Giunti G, Russo A, Palmeri V, Zappala L. 2018. Essential oils in stored product insect pest control. J Food Quality. 2018:1–18.
  • Cazo NA, Pereira-Filho ER, Silva MFGF, Fernandes JB, Vieira PC, Puhlb AC, Polikarpovb I, Forim MR. 2012. Poly-caprolactone nanoparticles loaded with hydrocortisone: preparation using factorial design and evaluation. Orbital Electron J Chem. 4:54–76.
  • Cheng ZH, Duan HJ, Zhu XR, Fan FF, Li RR, Li SC, Ma XY, Zhang EJ, Liu YK, Wang JY. 2019. Effects of patchouli and wormwood oils on the bioassays and behaviors of Tetranychus cinnabarinus (Boisduval) (Acari:Tetranychidae). Int J Pest Manag. 66(3):271–278.
  • Christofoli M, Costa ECC, Bicalho KU, de Cássia Domingues V, Peixoto MF, Alves CCF, Araújo WL, de Melo Cazal C. 2015. Insecticidal effect of nanoencapsulated essential oils from Zanthoxylum rhoifolium (Rutaceae) in Bemisia tabaci populations. Ind Crop Prod. 70:301–308.
  • Cruz L, Soares LU, Costa TD, Mezzalira G, da Silveira NP, Guterres SS, Pohlmann AR. 2006. Diffusion and mathematical modeling of release profiles from nanocarriers. Int J Pharm. 313(1-2):198–205.
  • De A, Bose R, Kumar A, Mozumdar S. 2014. Targeted delivery of pesticides using biodegradable polymeric nanoparticles. 1st ed. New York: Springer.
  • Ephrem E, Greige-Gerges H, Fessi H, Charcosset C. 2014. Optimisation of rosemary oil encapsulation in polycaprolactone and scale-up of the process. J Microencapsul. 31(8):746–753.
  • Fondevilla S, Rubiales D. 2012. Powdery mildew control in pea. A review. Agron Sustain Dev. 32(2):401–409.
  • Isman MB, Wilson JA, Bradbury R. 2008. Insecticidal activities of commercial rosemary oils (Rosmarinus officinalis) against larvae of Pseudaletia unipuncta and Trichoplusia ni in relation to their chemical compositions. Pharm Biol. 46 (1-2):82–87.
  • Johnson J. 2013. 4 - Pest control in postharvest nuts. In: Harris, LJ, editor. Improving the Safety and Quality of Nuts. Cambridge: Woodhead Publishing; p. 56–87.
  • Joo HH, Lee HY, Guan YS, Kim JC. 2008. Colloidal stability and in vitro permeation study of poly(e-caprolactone) nanoparticles containing hinokitiol. J Ind Eng Chem. 14(5):608–613.
  • Karimian P, Kavoosi G, Saharkhiz MJ. 2012. Antioxidant, nitric oxide scavenging and malondialdehyde scavenging activities of essential oils from different chemotypes of Zataria multiflora. Nat Prod Res. 26(22):2144–2147.
  • Khoobdel M, Ahsaei SM, Farzaneh M. 2017. Insecticidal activity of polycaprolactone nanoparticles loaded with Rosmarinus officinalis essential oil in Tribolium castaneum (Herbst). Entomol Res. 47(3):175–184.
  • Krishna RS, Shivakumar HG, Gowda DV, Banerjee S. 2006. Nanoparticles: A novel colloidal drug delivery system. Indian J Pharm Educ Res. 40:15–21.
  • Lourenco C, Teixeira M, Simões S, Gaspar R. 1996. Steric stabilization of nanoparticles: size and surface properties. Int J Pharm. 138(1):1–12.
  • Martín A, Varona S, Navarrete A, Cocero MJ. 2010. Encapsulation and coprecipitation processes with supercritical fluids: applications with essential oil. TOCENGJ. 4(1):31–41.
  • Mazzarino L, Coche-Guérente L, Labbé P, Lemos-Senna E, Borsali R. 2013. On the mucoadhesive properties of chitosan-coated polycaprolactone nanoparticles loaded with curcumin using quartz crystal microbalance with dissipation monitoring. J Biomed Nanotech. 9:1–8.
  • Mazzarino L, Travelet C, Ortega-Murillo S, Otsuka I, Pignot-Paintrand I, Lemos-Senna E, Borsali R. 2012. Elaboration of chitosan-coated nanoparticles loaded with curcumin for mucoadhesive applications. J Colloid Interface Sci. 370(1):58–66.
  • Milner ST. 1991. Polymer Brushes. Sci. 251(4996):905–914.
  • Mora-Huertas CE, Fessi H, Elaissari A. 2010. Polymer-based nanocapsules for drug delivery. Int J Pharm. 385(1-2):113–142.
  • Papachristos DP, Karamanoli KI, Stamopoulos DC, Menkissoglu-Spiroudi U. 2004. The relationship between the chemical composition of three essential oils and their insecticidal activity against Acanthoscelides obtectus (Say). Pest Manag Sci. 60(5):514–520.
  • Rabea EI, Badawy MEI, Steurbaut W, Stevens CV. 2009. In vitro assessment of N-(benzyl)chitosan derivatives against some plant pathogenic bacteria and fungi. Eur Polym J. 45(1):237–245.
  • Regnault-Roger C, Staff V, Philogène B, Terrón P, Vincent C. 2004. Biopesticidas de origen vegetal. 1st ed. Madrid: Mundi-Prensa.
  • Rodríguez-Rojo S, Varona S, Nunez M, Cocero MJ. 2012. Characterization of rosemary essential oil for biodegradable emulsions. Ind Crop Prod. 37(1):137–140.
  • Saei-Dehkordi SS, Tajik H, Moradi M, Khalighi-Sigaroodi F. 2010. Chemical composition of essential oils in Zataria multiflora Boiss from different parts of Iran and their radical scavenging and antimicrobial activity. Food Chem Toxicol. 48(6):1562–1567.
  • Saeidi K, Pezhman H. 2018. Insecticidal activity of four plant essential oils against two stored product beetles. Entomol Ornithol Herpetol. 07(03):2.
  • Saleem M, Nazli R, Afza N, Sami A, Ali MS. 2004. Biological significance of essential oil of Zataria multiflora boiss. Nat Prod Res. 18(6):493–497.
  • Sanna Passino G, Bazzoni E, Moretti MDL. 2004. Microencapsulated essential oils active against indianmeal moth. Bol San Veg Plagas. 30:125–132.
  • Santos-Magalhães NS, Pontes A, Pereira VMW, Caetano MNP. 2000. Colloidal carriers for benzathine penicillin G: nanoemulsions and nanoparticles. Int J Pharm. 208(1-2):71–80.
  • Shaaya E, Ravid U, Paster N, Juven B, Zisman U, Pissarev V. 1991. Fumigant toxicity of essential oils against four major stored-product insects. J Chem Ecol. 17(3):499–504.
  • Sinha K, Ghosh J, Sil PC. 2017. 2 - New pesticides: a cutting-edge view of contributions from nanotechnology for the development of sustainable agricultural pest control. In: Grumezescu AM, editor. New Pesticides and Soil Sensors. Cambridge: Academic Press; p. 47–79.
  • Suthisut D, Fields PG, Chandrapatya A. 2011. Fumigant toxicity of essential oils from three Thai plants (Zingiberaceae) and their major compounds against Sitophilus zeamais, Tribolium castaneum and two parasitoids. J Stored Prod Res. 47(3):222–230.
  • Werdin González JO, Gutiérrez MM, Ferrero AA, Fernández Band B. 2014. Essential oils nanoformulations for stored-product pest control – Characterization and biological properties. Chemosphere. 100:130–138.
  • Yang FL, Li XG, Zhu F, Lei CL. 2009. Structural characterization of nanoparticles loaded with garlic essential oil and their insecticidal activity against Tribolium castaneum (Herbst) (Coleoptera: Tenebrionidae). J Agric Food Chem. 57(21):10156–10162.
  • Zahra MJ, Hamed H, Mohammad RY, Nosratollah Z, Akbarzadeh A, Morteza M. 2017. Evaluation and study of antimicrobial activity of nanoliposomal meropenem against Pseudomonas aeruginosa isolates. Artif Cells Nanomed Biotechnol. 45(5):975–980.
  • Zargari A. 1990. Medicinal plants. 1st ed. Tehran: Tehran University Publications.
  • Ziaee M, Moharramipour S, Mohsenifar A. 2014. MA-chitosan nanogel loaded with Cuminum cyminum essential oil for efficient management of two stored product beetle pests. J Pest Sci. 87(4):691–699.
  • Zili Z, Sfar S, Fessi H. 2005. Preparation and characterization of poly-epsilon-caprolactone nanoparticles containing griseofulvin. Int J Pharm. 294(1-2):261–267.

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.