4.8 Article

Pre-exposure to Fe2O3 or TiO2 Nanoparticles Inhibits Subsequent Biological Uptake of 55Fe-Labeled Fe2O3 Nanoparticles

期刊

ENVIRONMENTAL SCIENCE & TECHNOLOGY
卷 57, 期 12, 页码 4831-4840

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AMER CHEMICAL SOC
DOI: 10.1021/acs.est.2c08747

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molecular mechanisms; nanoparticles; protozoan; pre-exposure; uptake

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This study investigated the effects of pre-exposure of Tetrahymena thermophila to Fe2O3 or TiO2 NPs on the subsequent uptake of 55Fe2O3 NPs. The results showed that pre-exposure to NPs inhibited the protozoan's uptake of 55Fe2O3 NPs by altering endocytosis-related organelles, inducing oxidative stress, and lowering the intracellular energy supply.
Aquatic organisms are frequently exposed to various nano-particles (NPs) in the natural environment. Thus, studies of NP bioaccumulation should include organisms that have been previously exposed to NPs. Our study investigated the effects of pre-exposure of Tetrahymena thermophila (T. thermophila) to Fe2O3 or TiO2 NPs on the protozoan's subsequent uptake of 55Fe-labeled Fe2O3 (55Fe2O3) NPs. Molecular mechanisms underlying the pre-exposure effects were explored in tran-scriptomic and metabolomic experiments. Pre-exposure to either NPs inhibited the subsequent uptake of 55Fe2O3 NPs. The results of the transcriptomic experiment indicated that NP pre-exposure influenced the expression of genes related to phagosomes and lysosomes and physiological processes such as glutathione and lipid metabolism, which are closely associated with the endocytosis of 55Fe2O3 NPs. The differentially expressed metabolites obtained from the metabolomic experiments showed an enrichment of energy metabolism and antioxidation pathways in T. thermophila pre-exposed to NPs. Together, these results demonstrate that the pre-exposure of T. thermophila to Fe2O3 or TiO2 NPs inhibited the protozoan's subsequent uptake of 55Fe2O3 NPs, possibly by mechanisms involving the alteration of endocytosis-related organelles, the induction of oxidative stress, and a lowering of the intracellular energy supply. Thus, NP pre-exposure represents a scenario which can inform increasingly realistic estimates of NP bioaccumulation.

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