Utility of Galleria mellonella larvae for evaluating nanoparticle toxicology

Chemosphere. 2021 Mar:266:129235. doi: 10.1016/j.chemosphere.2020.129235. Epub 2020 Dec 7.

Abstract

The use of nanoparticles in consumer products is currently on the rise, so it is important to have reliable methods to predict any associated toxicity effects. Traditional in vitro assays fail to mimic true physiological responses of living organisms against nanoparticles whereas murine in vivo models are costly and ethically controversial. For these reasons, this study aimed to evaluate the efficacy of Galleria mellonella as an alternative, non-rodent in vivo model for examining nanoparticle toxicity. Silver, selenium, and functionalized gold nanoparticles were synthesized, and their toxicity was assessed in G. mellonella larvae. The degree of acute toxicity effects caused by each type of NP was efficiently detected by an array of indicators within the larvae: LD50 calculation, hemocyte proliferation, NP distribution, behavioral changes, and histological alterations. G. mellonella larvae are proposed as a nanotoxicological model that can be used as a bridge between in vitro and in vivo murine assays in order to obtain better predictions of NP toxicity.

Keywords: Galleria mellonella; Hemocytes; Nanoparticles; Nanotoxicity; Non-rodent in vivo model; Toxicity screening.

MeSH terms

  • Animals
  • Gold
  • Larva
  • Lethal Dose 50
  • Metal Nanoparticles* / toxicity
  • Mice
  • Moths*

Substances

  • Gold