Efficiency of mesoporous silica/carboxymethyl beta-glucan as a fungicide nano-delivery system for improving chlorothalonil bioactivity and reduce biotoxicity

Amir E. Kaziem; Yang, LP; Lin, YG; Song, ZX; Xu, HH; Zhang, ZX;

Abstract


Understanding the lethal effects of pesticides nano formulations on the targeted organisms (pathogens) and the non-targeted organisms (fish, earthworms, etc) is essential in assessing the probable impact of new technologies on agriculture and environment. Here we evaluated the bioactivity and the biotoxicity of new type of fungicide smart-delivery formulation based on conjugating carboxymethylated-β-glucans on the mesoporous silica nanoparticles (MSNs) surface after loading chlorothalonil (CHT) fungicide in the MSNs pores. The obtained formulation has been characterized with FE-SEM, and HR-TEM. The CHT loading efficiency has been measured with TGA. The bioactivity of the obtained formulation (CHT@MSNs-β-glucans) has been tested against four pathogens, fusarium head blight (Fusarium graminearum), sheath rot (Sarocladium oryzae), rice sheath blight (Rhizoctonia solani), and soyabean anthracnose (Colletotrichum truncatum) compared with CHT WP 75% commercial formulation (CHT-WP) and technical CHT. The environmental biotoxicity of CHT@MSNs-β-glucans compared with CHT-WP has been tested toward earthworm (Eisenia fetida) and zebra fish (Danio rerio). The results showed that CHT@MSNs-β-glucans has an excellent bioactivity against the subjected pathogens with better inhabiting effects than CHT-WP. CHT@MSNs-β-glucans toxicity to Eisenia fetida was found 2.25 times lower than CHT-WP toxicity. The LC50 of CHT@MSNs-β-glucans to zebra fish after the first 24h was 2.93 times higher than CHT-WP. After 96h of treatment, the LC50 of CHT@MSNs-β-glucans was 2.66 times higher than CHT-WP. This work highlighted the necessity to increase the mandatory bioassays of nano formulations with the major non-target organisms in the environmental risk assessment of new pesticide formulations.


Other data

Title Efficiency of mesoporous silica/carboxymethyl beta-glucan as a fungicide nano-delivery system for improving chlorothalonil bioactivity and reduce biotoxicity
Authors Amir E. Kaziem ; Yang, LP; Lin, YG; Song, ZX; Xu, HH; Zhang, ZX
Keywords Nano formulation; Zebra fish; Earthworm; MSNs; Bioassay; Chlorothalonil; CONTROLLED-RELEASE FORMULATIONS; INSECTICIDAL ACTIVITY; NANOPARTICLES; TOXICITY; SILICA; YEAST; INVERTEBRATES; RICE
Issue Date 2022
Publisher PERGAMON-ELSEVIER SCIENCE LTD
Journal CHEMOSPHERE 
ISSN 0045-6535
DOI 10.1016/j.chemosphere.2021.131902
PubMed ID 34438209
Scopus ID 2-s2.0-85113339681
Web of science ID WOS:000704979500007

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