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Updated: Jan 14, 2026

Isolation and Selection of Entomopathogenic Fungi from Soil Samples and Evaluation of Fungal Virulence against Insect Pests
Published on: September 28, 2021
Dual-coated emamectin benzoate nano-formulation with enhanced systemic translocation and insecticidal activity based
Yanmin Huang1, Jiansheng Li1, Zhipin Liu1
1Guangxi Key Laboratory of Natural Polymer Chemistry and Physics, Nanning Normal University, Nanning, 530001, PR China.
Abstract:
To enhance pesticide utilization efficiency and environmental safety, this study developed a dual-coated emamectin benzoate sustained-release nano-formulation (EB@Lignin-C14/UF) using lignin tetradecanoate (Lignin-C14) and urea-formaldehyde resin (UF) as carriers. Through esterification modification to improve lignin hydrophobicity as the inner layer and UF cross-linked network as the outer barrier, the uniform spherical nanoparticles with average size of 95.5 nm were prepared via high-speed stirring-ultrasonic dispersion. Thermogravimetric analysis demonstrated enhanced thermal stability. The dual-coated system showed 24-h release of 37.34 ± 1.24 % in 40 % methanol-water, representing 13.5 % and 26.9 % reductions compared to single-carrier (43.17 ± 1.58 %) and microemulsion (51.06 ± 2.39 %), respectively. Through dual physical barrier and chemical protection mechanisms, the formulation reduced photodegradation rate by 25.5 % (0.38 %/h vs 0.51 %/h for microemulsion). Biosafety assessments indicated 15-30 % reduction in rice germination inhibition and significantly lower ecotoxicity to zebrafish compared to conventional microemulsion. Pot experiments demonstrated prolonged insecticidal duration to Spodoptera litura with 58.7 ± 3.33 % efficacy at 25 days post-application, showing 24 % and 1.6-fold improvements over single-coated (34.67 ± 0.22 %) and EB microemulsion (22.67 ± 0.44 %). This natural-synthetic polymer dual-coated synergy provides an innovative solution to challenges including pesticide burst release, photodegradation, and eco-toxicity, offering both theoretical foundation and technical reference for designing green pesticide formulations.
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