Among the severe side effects induced by cisplatin chemotherapy, muscle wasting is the most relevant one. This effect is a major cause for a clinical decline of cancer patients, since it is a negative predictor of treatment outcome and associated to increased mortality. However, despite its toxicity even at low doses, cisplatin remains the first-line therapy for several types of solid tumors. Thus, effective pharmacological treatments counteracting or minimizing cisplatin-induced muscle wasting are urgently needed. The dissection of the molecular pathways responsible for cisplatin-induced muscle dysfunction gives the possibility to identify novel promising therapeutic targets. In this context, the use of animal model of cisplatin-induced cachexia is very useful. Here, we report an update of the most relevant researches on the mechanisms underlying cisplatin-induced muscle wasting and on the most promising potential therapeutic options to preserve muscle mass and function.

Conte, E., Bresciani, E., Rizzi, L., Cappellari, O., De Luca, A., Torsello, A., et al. (2020). Cisplatin-induced skeletal muscle dysfunction: Mechanisms and counteracting therapeutic strategies. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 21(4) [10.3390/ijms21041242].

Cisplatin-induced skeletal muscle dysfunction: Mechanisms and counteracting therapeutic strategies

Bresciani E.
Co-primo
;
Rizzi L.;Torsello A.;
2020

Abstract

Among the severe side effects induced by cisplatin chemotherapy, muscle wasting is the most relevant one. This effect is a major cause for a clinical decline of cancer patients, since it is a negative predictor of treatment outcome and associated to increased mortality. However, despite its toxicity even at low doses, cisplatin remains the first-line therapy for several types of solid tumors. Thus, effective pharmacological treatments counteracting or minimizing cisplatin-induced muscle wasting are urgently needed. The dissection of the molecular pathways responsible for cisplatin-induced muscle dysfunction gives the possibility to identify novel promising therapeutic targets. In this context, the use of animal model of cisplatin-induced cachexia is very useful. Here, we report an update of the most relevant researches on the mechanisms underlying cisplatin-induced muscle wasting and on the most promising potential therapeutic options to preserve muscle mass and function.
Articolo in rivista - Review Essay
Cisplatin; Ghrelin; Growth hormone secretagogues (GHS); Muscle atrophy; Skeletal muscle;
English
2020
21
4
1242
none
Conte, E., Bresciani, E., Rizzi, L., Cappellari, O., De Luca, A., Torsello, A., et al. (2020). Cisplatin-induced skeletal muscle dysfunction: Mechanisms and counteracting therapeutic strategies. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 21(4) [10.3390/ijms21041242].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/266742
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