2016EMBO Molecular MedicineOpen access

Reversible p53 inhibition prevents cisplatin ototoxicity without blocking chemotherapeutic efficacy

Nesrine Benkafadar, Julien Menardo, Jérôme Bourien, Régis Nouvian, Florence François, Didier Decaudin, Domenico Maiorano, Jean‐Luc Puel, Jing Wang

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Abstract

Cisplatin is a widely used chemotherapy drug, despite its significant ototoxic side effects. To date, the mechanism of cisplatin‐induced ototoxicity remains unclear, and hearing preservation during cisplatin‐based chemotherapy in patients is lacking. We found activation of the ATM‐Chk2‐p53 pathway to be a major determinant of cisplatin ototoxicity. However, prevention of cisplatin‐induced ototoxicity is hampered by opposite effects of ATM activation upon sensory hair cells: promoting both outer hair cell death and inner hair cell survival. Encouragingly, however, genetic or pharmacological ablation of p53 substantially attenuated cochlear cell apoptosis, thus preserving hearing. Importantly, systemic administration of a p53 inhibitor in mice bearing patient‐derived triple‐negative breast cancer protected auditory function, without compromising the anti‐tumor efficacy of cisplatin. Altogether, these findings highlight a novel and effective strategy for hearing protection in cisplatin‐based chemotherapy. The normal tissue injuries induced by the chemotherapeutic drug cisplatin remain a major clinical problem. Here, PFT‐α is shown to protect hearing without compromising the chemotherapeutic efficacy of cisplatin, and even sensitizes TP53‐mutant breast tumors to cisplatin. The normal tissue injuries induced by the chemotherapeutic drug cisplatin remain a major clinical problem. Here, PFT‐α is shown to protect hearing without compromising the chemotherapeutic efficacy of cisplatin and even sensitizes TP53‐mutant breast tumors to cisplatin.

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What this paper is about

Cisplatin is a widely used chemotherapy drug, despite its significant ototoxic side effects. To date, the mechanism of cisplatin‐induced ototoxicity remains unclear, and hearing preservation during cisplatin‐based chemotherapy in patients is lacking. We found activation of the ATM‐Chk2‐p53 pathway to be a major determinant of cisplatin ototoxicity. However, prevention of cisplatin‐induced ototoxicity is hampered by opposite effects of ATM activation upon sensory hair cells: promoting both outer hair cell death and inner hair cell survival. Encouragingly, however, genetic or pharmacological ablation of p53 substantially attenuated cochlear cell apoptosis, thus preserving hearing. Importantly, systemic administration of a p53 inhibitor in mice bearing patient‐derived triple‐negative breast cancer protected auditory function, without compromising the anti‐tumor efficacy of cisplatin. Altogether, these findings highlight a novel and effective strategy for hearing protection in cisplatin‐based chemotherapy. The normal tissue injuries induced by the chemotherapeutic drug cisplatin remain a major clinical problem. Here, PFT‐α is shown to protect hearing without compromising the chemotherapeutic efficacy of cisplatin, and even sensitizes TP53‐mutant breast tumors to cisplatin. The normal tissue injuries induced by the chemotherapeutic drug cisplatin remain a major clinical problem. Here, PFT‐α is shown to protect hearing without compromising the chemotherapeutic efficacy of cisplatin and even sensitizes TP53‐mutant breast tumors to cisplatin.

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Available abstract

Cisplatin is a widely used chemotherapy drug, despite its significant ototoxic side effects. To date, the mechanism of cisplatin‐induced ototoxicity remains unclear, and hearing preservation during cisplatin‐based chemotherapy in patients is lacking. We found activation of the ATM‐Chk2‐p53 pathway to be a major determinant of cisplatin ototoxicity. However, prevention of cisplatin‐induced ototoxicity is hampered by opposite effects of ATM activation upon sensory hair cells: promoting both outer hair cell death and inner hair cell survival. Encouragingly, however, genetic or pharmacological ablation of p53 substantially attenuated cochlear cell apoptosis, thus preserving hearing. Importantly, systemic administration of a p53 inhibitor in mice bearing patient‐derived triple‐negative breast cancer protected auditory function, without compromising the anti‐tumor efficacy of cisplatin. Altogether, these findings highlight a novel and effective strategy for hearing protection in cisplatin‐based chemotherapy. The normal tissue injuries induced by the chemotherapeutic drug cisplatin remain a major clinical problem. Here, PFT‐α is shown to protect hearing without compromising the chemotherapeutic efficacy of cisplatin, and even sensitizes TP53‐mutant breast tumors to cisplatin. The normal tissue injuries induced by the chemotherapeutic drug cisplatin remain a major clinical problem. Here, PFT‐α is shown to protect hearing without compromising the chemotherapeutic efficacy of cisplatin and even sensitizes TP53‐mutant breast tumors to cisplatin.

Key concepts: Ototoxicity, Cisplatin, Hair cell, Chemotherapy, Inner ear, Pharmacology, Medicine, Apoptosis

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