Surface-Charge-Dependent Cell Localization and Cytotoxicity of Cerium Oxide Nanoparticles

Зависимые от поверхностного заряда клеточная локализация и цитотоксичность наночастиц оксида церия
Atul Asati, Santimukul Santra, Charalambos Kaittanis, J. Manuel Perez
2010-08-06

cellular internalizationcerium oxide nanoparticlescytotoxicitysubcellular localizationsurface charge
Cerium oxide nanoparticles (nanoceria) have shown great potential as antioxidant and radioprotective agents for applications in cancer therapy. Recently, various polymer-coated nanoceria preparations have been developed to improve their aqueous solubility and allow for surface functionalization of these nanoparticles. However, the interaction of polymer-coated nanoceria with cells, their uptake mechanism, and subcellular localization are poorly understood. Herein, we engineered polymer-coated cerium oxide nanoparticles with different surface charges (positive, negative, and neutral) and studied their internalization and toxicity in normal and cancer cell lines. The results showed that nanoceria with a positive or neutral charge enters most of the cell lines studied, while nanoceria with a negative charge internalizes mostly in the cancer cell lines. Moreover, upon entry into the cells, nanoceria is localized to different cell compartments (e.g., cytoplasm and lysosomes) depending on the nanoparticle's surface charge. The internalization and subcellular localization of nanoceria plays a key role in the nanoparticles' cytotoxicity profile, exhibiting significant toxicity when they localize in the lysosomes of the cancer cells. In contrast, minimal toxicity is observed when they localize into the cytoplasm or do not enter the cells. Taken together, these results indicate that the differential surface-charge-dependent localization of nanoceria in normal and cancer cells plays a critical role in the nanoparticles' toxicity profile.
1
Nanoceria showed significant cytotoxicity when localized in cancer-cell lysosomes, but minimal toxicity when cytoplasmic or excluded from cells.
2
Nanoceria surface charge determined its intracellular localization, including distribution between the cytoplasm and lysosomes.
3
Polymer-coated cerium oxide nanoparticles were engineered with positive, negative, and neutral surface charges to investigate charge-dependent cellular interactions.
4
Positively and neutrally charged nanoceria entered most examined cell lines, whereas negatively charged nanoceria internalized predominantly in cancer cells.
5
Surface-charge-dependent differences in nanoceria localization between normal and cancer cells critically shaped their cytotoxicity profiles.

Polymer-coated cerium oxide nanoparticles with different surface charges in normal and cancer cells

Surface-charge-dependent cellular internalization, subcellular localization, and cytotoxicity of cerium oxide nanoparticles

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2010-08-06
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Atul Asati
Santimukul Santra
Charalambos Kaittanis
J. Manuel Perez
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