Caenorhabditis elegans as a Prediction Platform for Nanotechnology-Based Strategies: Insights on Analytical Challenges

Author:

Gubert Priscila123,Gubert Greici4,Oliveira Ronei Cardoso de5ORCID,Fernandes Isabel Cristina Oliveira12,Bezerra Iverson Conrado1,Ramos Bruna de6ORCID,Lima Milena Ferreira de12ORCID,Rodrigues Daniela Teixeira7,Cruz Adriana Farias Nunes da1,Pereira Ernesto Chaves4,Ávila Daiana Silva78ORCID,Mosca Dante Homero9

Affiliation:

1. Keizo Asami Institute, iLIKA, Federal University of Pernambuco, Recife 50670-901, Brazil

2. Graduate Program in Biology Applied to Health, PPGBAS, Federal University of Pernambuco, Recife 50670-901, Brazil

3. Graduate Program in Pure and Applied Chemistry, POSQUIPA, Federal University of Western of Bahia, Bahia 47808-021, Brazil

4. Postdoctoral Program in Chemistry, Federal University of São Carlos, São Carlos 13565-905, Brazil

5. Postdoctoral Program in Physics, Federal University of São Carlos, São Carlos 13565-905, Brazil

6. Oceanography Department, Federal University of Pernambuco, Recife 50670-901, Brazil

7. Graduate Program in Biological Sciences, Toxicological Biochemistry, Federal University of Santa Maria, Santa Maria 97105-900, Brazil

8. Graduate Program in Biochemistry, Federal University of Pampa (UNIPAMPA), Uruguaiana 97501-970, Brazil

9. Postdoctoral Program in Physics, Federal University of Paraná, Curitiba 80060-000, Brazil

Abstract

Nanotechnology-based strategies have played a pivotal role in innovative products in different technological fields, including medicine, agriculture, and engineering. The redesign of the nanometric scale has improved drug targeting and delivery, diagnosis, water treatment, and analytical methods. Although efficiency brings benefits, toxicity in organisms and the environment is a concern, particularly in light of global climate change and plastic disposal in the environment. Therefore, to measure such effects, alternative models enable the assessment of impacts on both functional properties and toxicity. Caenorhabditis elegans is a nematode model that poses valuable advantages such as transparency, sensibility in responding to exogenous compounds, fast response to perturbations besides the possibility to replicate human disease through transgenics. Herein, we discuss the applications of C. elegans to nanomaterial safety and efficacy evaluations from one health perspective. We also highlight the directions for developing appropriate techniques to safely adopt magnetic and organic nanoparticles, and carbon nanosystems. A description was given of the specifics of targeting and treatment, especially for health purposes. Finally, we discuss C. elegans potential for studying the impacts caused by nanopesticides and nanoplastics as emerging contaminants, pointing out gaps in environmental studies related to toxicity, analytical methods, and future directions.

Publisher

MDPI AG

Subject

Chemical Health and Safety,Health, Toxicology and Mutagenesis,Toxicology

Reference198 articles.

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