Bioaccumulation of deltamethrin, tebuconazole and chlormequat chloride inT. molitor larvae and risks associated with their human consumption

Биоаккумуляция дельтаметрина, тебуконазола и хлормекват-хлорида в личинках T. molitor и риски, связанные с их употреблением в пищу человеком
Elena Dreassi, Arianna Mancini, Gianfranco Corbini, Maurizio Botta, Franca Tarchi, Valeria Francardi
2020-09-18

LC-MS/MSTenebrio molitor larvaedeltamethrinpesticide bioaccumulationtebuconazole
Edible insects are generally reared on agricultural product-based diets. These feeding substrates may contain pesticides or toxins that are derived from field practices for plant growth and defence and that may represent a health risk to insect consumers. The present study investigatedTenebrio molitor capability to uptake from contaminated substrates three chemical compounds that are employed in agricultural practices: the insecticide deltamethrin (DELTA), the fungicide tebuconazole (TEB) and the plant growth regulator chlormequat chloride (CCC), all with different properties of lipophilicity and potentially harmful for human and animal health. Newly optimised and validated LC-MS/MS methods have been used for the quantification of pesticide residues in larvae samples. Analysis showed that DELTA and TEB are retained by larvae, even after 24 h of fasting, due to their lipophilicity. Larvae fasting period allowed the elimination of 47% of DELTA residues and 78% of TEB ones. Diversely, CCC, the most hydrophilic chemical compound, was completely eliminated after the fasting. The toxicity of pesticides to larvae has been also investigated. The highest mortality ofT. molitor larvae (close to 50%) was recorded for the insecticide DELTA, at the dose of 20 mg/kg and for CCC (15%) at the concentration of 4 mg/kg. The safety of insects as food and feed represents an important section in the field of the control of food of animal origin and animal health. Nevertheless, to date, this aspect is not yet completely determined due to the lack of scientific data in this area. By assessing the accumulation rate of some chemicals in reared insects and by evaluating the toxic effects that chemicals may have on larvae, this study could contribute to filling this gap.
1
A 24-hour fasting period eliminated 47% of deltamethrin residues and 78% of tebuconazole residues from larvae.
2
Chlormequat chloride, the most hydrophilic compound tested, was completely eliminated from larvae after fasting.
3
Deltamethrin caused the highest larval mortality, close to 50% at 20 mg/kg, while chlormequat chloride caused 15% mortality at 4 mg/kg.
4
Tenebrio molitor larvae bioaccumulate the lipophilic pesticides deltamethrin and tebuconazole from contaminated substrates, retaining residues after 24 hours of fasting.
5
Validated LC-MS/MS methods enabled quantification of pesticide residues and support assessment of food and feed safety risks from contaminated edible insects.

Tenebrio molitor larvae reared on substrates contaminated with deltamethrin, tebuconazole, and chlormequat chloride

The uptake, bioaccumulation, elimination after fasting, and larval toxicity of deltamethrin, tebuconazole, and chlormequat chloride, including associated food-safety risks

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2020-09-18
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Elena Dreassi
Arianna Mancini
Gianfranco Corbini
Maurizio Botta
Franca Tarchi
Valeria Francardi
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