Differential toxicities of manganese ferrite nanoparticles from two synthesis methods using developing zebrafish (Danio rerio): towards a biocompatible and safe magnetic nanoparticles
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Manganese ferrite nanoparticles (MnFe2O4
NPs) have several environmental and biomedical applications. However, knowledge about their toxicity, as a
function of the synthesis method, is still scarce. Thus,
the current study aimed to evaluate whether the synthesis method (hydrothermal: HT NPs; coprecipitation: CP NPs) of citrate-coated MnFe2O4 NPs influences their potential toxicity in zebrafish embryos
and larvae through multiple biomarker assessment.
HT NPs were synthesized at high pressure and temperature, whereas CP NPs synthesis included a passivation step. Fe and Mn were detected in zebrafish
chorion exposed to the higher concentration of HT
and CP NPs, but they were not detected on the larvae’s
body surface. The MnFe2O4 NPs did not induce mortality or inhibit hatching. HT NPs (5.0 and 10 mg L−1) and
CP NPs (1.25 to 10 mg L−1) reduced the spontaneous
contraction frequency in zebrafish embryos. HT NPs
(5.0 and 10 mg L−1) induced tachycardia, CP NPs
(2.5, 5.0, and 10 mg L−1) induced bradycardia in
zebrafish embryos. Pericardial edemas were a transient effect, detected only in embryos exposed to
HT NPs for 48 h. After 72 h of exposure, neither NP
type induced significant morphological alterations,
changes in ROS levels, effects on cell viability, or
behavioral alterations. Overall, synthesis-dependent
early developmental effects were observed, with no
evidence of persistent post-hatching toxicity under
the experimental conditions. Thus, the zebrafish is a
suitable model system to compare NPs effects from
different synthesis methods, contributing to the development of safer nanotechnologies.
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JACINTHO, Jaqueline Cardoso et al. Differential toxicities of manganese ferrite nanoparticles from two synthesis methods using developing zebrafish (Danio rerio): towards a biocompatible and safe magnetic nanoparticles. Journal of Nanoparticle Research, Dordrecht, v. 28, e146, 2026. DOI: 10.1007/s11051-026-06673-3. Disponível em: https://link.springer.com/article/10.1007/s11051-026-06673-3. Acesso em: 31 ago.