In this work we exploit the widely used, well known CTA, which allows following healthy cells transformation into a malignant phenotype, to understand the early metabolic deregulation and events in cadmium-induced carcinogenesis.

Oldani, M., Milani, C., Gaboardi, F., Manzoni, M., Villa, A., Stefanini, F., et al. (2021). Cadmium elicits alterations in mitochondrial morphology and functionality in C3H10T1/2Cl8 mouse fibroblast cell. BIOMEDICAL SCIENCE AND ENGINEERING, 4(s1) [10.4081/bse.2021.185].

Cadmium elicits alterations in mitochondrial morphology and functionality in C3H10T1/2Cl8 mouse fibroblast cell

Oldani, Monica;Villa, Anna M.;Stefanini, Federico M.;Melchioretto, Pasquale;Forcella, Matilde;Urani, Chiara;Fusi, Paola
2021

Abstract

In this work we exploit the widely used, well known CTA, which allows following healthy cells transformation into a malignant phenotype, to understand the early metabolic deregulation and events in cadmium-induced carcinogenesis.
Articolo in rivista - Articolo scientifico
Cadmium carcinogenesis; cell metabolism; DNA damage; mitochondria; reactive oxygen species;
English
2021
4
s1
open
Oldani, M., Milani, C., Gaboardi, F., Manzoni, M., Villa, A., Stefanini, F., et al. (2021). Cadmium elicits alterations in mitochondrial morphology and functionality in C3H10T1/2Cl8 mouse fibroblast cell. BIOMEDICAL SCIENCE AND ENGINEERING, 4(s1) [10.4081/bse.2021.185].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/353909
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