In vitro cytotoxicity of co-exposure to superparamagnetic iron oxide and solid lipid nanoparticles

Author:

Alabi Okunola A12,Silva Adny H3,Rode Michele P2,Pizzol Carine dal2,de Campos Angela Machado2,Filippin-Monteiro Fabíola B4,Bakare Adekunle A5ORCID,Creczynski-Pasa Tânia B2

Affiliation:

1. Department of Biology, Federal University of Technology, Akure, Ondo State, Nigeria

2. Department of Pharmaceutical Sciences, Federal University of Santa Catarina, Florianópolis, Santa Catarina, Brazil

3. Department of Biochemistry, Federal University of Santa Catarina, Florianópolis, Santa Catarina, Brazil

4. Department of Clinical Analysis, Federal University of Santa Catarina, Florianópolis, Santa Catarina, Brazil

5. Cell Biology and Genetics Unit, Department of Zoology, University of Ibadan, Ibadan, Oyo State, Nigeria

Abstract

Increased production and use of different types of nanoparticles (NPs) in the last decades has led to increased environmental release of these NPs with potential detrimental effects on both the environment and public health. Information is scarce in the literature on the cytotoxic effect of co-exposure to many NPs as this concern is relatively recent. Thus, in this study, we hypothesized scenarios of cell’s co-exposure to two kinds of NPs, solid lipid nanoparticles (SLNs) and superparamagnetic iron oxide nanoparticles (SPIONs), to assess the potential cytotoxicity of exposure to NPs combination. Cytotoxicity of SPIONs, SLNs, and their 1:1 mixture (MIX) in six tumor and six non-tumor cell lines was investigated. The mechanisms underlining the induced cytotoxicity were studied through cell cycle analysis, detection of reactive oxygen species (ROS), and alterations in mitochondrial membrane potential (ΔΨM). Double staining with acridine orange and ethidium bromide was also used to confirm cell morphology alterations. The results showed that SPIONs induced low cytotoxicity compared to SLNs. However, the mixture of SPIONs and SLNs showed synergistic, antagonistic, and additive effects based on distinct tests such as viability assay, ROS generation, ΔΨM, and DNA damage, depending on the cell line. Apoptosis triggered by ROS and disturbances in ΔΨM are the most probable related mechanisms of action. As was postulated, there is possible cytotoxic interaction between the two kinds of NPs.

Funder

Conselho Nacional de Desenvolvimento CientÌfico e TecnolÓgico

Publisher

SAGE Publications

Subject

Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health,Toxicology

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