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Título
Regression Modeling of the Antioxidant-to-Nephroprotective Relation Shows the Pivotal Role of Oxidative Stress in Cisplatin Nephrotoxicity.
Autor(es)
Palabras clave
cisplatin
nephrotoxicity
prevention
antioxidants
preclinical
linear fit
Clasificación UNESCO
3209 Farmacología
2411 Fisiología Humana
Fecha de publicación
2021-08-26
Editor
MDPI
Citación
Casanova, A. G., Harvat, M., Vicente-Vicente, L., Pellicer-Valero, Ó. J., Morales, A. I., López-Hernández, F. J., y Martín-Guerrero, J. D. (2021). Regression modeling of the antioxidant-to-nephroprotective relation shows the pivotal role of oxidative stress in cisplatin nephrotoxicity. Antioxidants, 10(9), 1355. https://doi.org/10.3390/antiox10091355
Resumen
[EN]The clinical utility of the chemotherapeutic drug cisplatin is significantly limited by its nephrotoxicity, which is characterized by electrolytic disorders, glomerular filtration rate decline, and azotemia. These alterations are consequences of a primary tubulopathy causing injury to proximal and distal epithelial cells, and thus tubular dysfunction. Oxidative stress plays a role in cisplatin nephrotoxicity and cytotoxicity, but its relative contribution to overall toxicity remains unknown. We studied the relation between the degree of oxidative reduction (provided by antioxidant treatment) and the extent of nephrotoxicity amelioration (i.e., nephroprotection) by means of a regression analysis of studies in animal models. Our results indicate that a linear relation exists between these two parameters, and that this relation very nearly crosses the value of maximal nephroprotection at maximal antioxidant effect, suggesting that oxidative stress seems to be a pivotal and mandatory mechanism of cisplatin nephrotoxicity, and, hence, an interesting, rationale-based target for clinical use. Our model also serves to identify antioxidants with enhanced effectiveness by comparing their actual nephroprotective power with that predicted by their antioxidant effect. Among those, this study identified nanoceria, erythropoietin, and maltol as highly effective candidates affording more nephroprotection than expected from their antioxidant effect for prospective clinical development.
URI
ISSN
2076-3921
DOI
10.3390/antiox10091355
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