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. 2023 Oct;39(5):2311-2329.
doi: 10.1007/s10565-022-09720-6. Epub 2022 Jul 25.

Biochemical effects of copper nanomaterials in human hepatocellular carcinoma (HepG2) cells

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Biochemical effects of copper nanomaterials in human hepatocellular carcinoma (HepG2) cells

Kirk T Kitchin et al. Cell Biol Toxicol. 2023 Oct.

Abstract

In dose-response and structure-activity studies, human hepatic HepG2 cells were exposed for 3 days to nano Cu, nano CuO or CuCl2 (ions) at doses between 0.1 and 30 ug/ml (approximately the no observable adverse effect level to a high degree of cytotoxicity). Various biochemical parameters were then evaluated to study cytotoxicity, cell growth, hepatic function, and oxidative stress. With nano Cu and nano CuO, few indications of cytotoxicity were observed between 0.1 and 3 ug/ml. In respect to dose, lactate dehydrogenase and aspartate transaminase were the most sensitive cytotoxicity parameters. The next most responsive parameters were alanine aminotransferase, glutathione reductase, glucose 6-phosphate dehydrogenase, and protein concentration. The medium responsive parameters were superoxide dismutase, gamma glutamyltranspeptidase, total bilirubin, and microalbumin. The parameters glutathione peroxidase, glutathione reductase, and protein were all altered by nano Cu and nano CuO but not by CuCl2 exposures. Our chief observations were (1) significant decreases in glucose 6-phosphate dehydrogenase and glutathione reductase was observed at doses below the doses that show high cytotoxicity, (2) even high cytotoxicity did not induce large changes in some study parameters (e.g., alkaline phosphatase, catalase, microalbumin, total bilirubin, thioredoxin reductase, and triglycerides), (3) even though many significant biochemical effects happen only at doses showing varying degrees of cytotoxicity, it was not clear that cytotoxicity alone caused all of the observed significant biochemical effects, and (4) the decreased glucose 6-phosphate dehydrogenase and glutathione reductase support the view that oxidative stress is a main toxicity pathway of CuCl2 and Cu-containing nanomaterials.

Keywords: Cu; CuCl2; CuO; HepG2; Liver; Nanomaterial.

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References

    1. Arnal N, de Alaniz MJ, Marra CA. Effect of copper overload on the survival of HepG2 and A-549 human-derived cells. Hum Exp Toxicol. 2013;32(3):299–315. - PubMed - DOI
    1. Blasco J, Puppo J. Effect of heavy metals (Cu, Cd and Pb) on aspartate and alanine aminotransferase in Ruditapes philippinarum (Mollusca: Bivalvia). Comp Biochem Physiol C Pharmacol Toxicol Endocrinol. 1999;122(2):253–63. - PubMed - DOI
    1. Boulard M, Blume KG, Beutler E. The effect of copper on red cell enzyme activities. J Clin Invest. 1972;51(2):459–61. - PubMed - PMC - DOI
    1. Chusuei CC, Wu CH, Mallavarapu S, Hou FY, Hsu CM, Winiarz JG, et al. Cytotoxicity in the age of nano: the role of fourth period transition metal oxide nanoparticle physicochemical properties. Chem Biol Interact. 2013;206(2):319–26. - PubMed - DOI
    1. Cuillel M, Chevallet M, Charbonnier P, Fauquant C, Pignot-Paintrand I, Arnaud J, et al. Interference of CuO nanoparticles with metal homeostasis in hepatocytes under sub-toxic conditions. Nanoscale. 2014;6(3):1707–15. - PubMed - DOI

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