Cisplatin-induced peripheral neuropathy is associated with neuronal senescence-like response

Author:

Calls Aina12ORCID,Torres-Espin Abel3,Navarro Xavier12,Yuste Victor J4,Udina Esther12,Bruna Jordi125

Affiliation:

1. Department of Cell Biology, Physiology, and Immunology, Institute of Neuroscience, Autonomous University of Barcelona, Bellaterra, Spain

2. Biomedical Research Center Network on Neurodegenerative Diseases (CIBERNED), Bellaterra, Spain

3. Department of Neurological Surgery, Brain and Spinal Injury Center, University of California San Francisco, San Francisco, California, USA

4. Department of Biochemistry, Institute of Neuroscience, Autonomous University of Barcelona, Bellaterra, Spain

5. Unit of Neuro-Oncology, Bellvitge Institute for Biomedical Research, L'Hospitalet de Llobregat, Barcelona, Spain

Abstract

Abstract Background Cisplatin-induced peripheral neuropathy (CIPN) is a frequent serious dose-dependent adverse event that can determine dosage limitations for cancer treatment. CIPN severity correlates with the amount of platinum detected in sensory neurons of the dorsal root ganglia (DRG). However, the exact pathophysiology of CIPN is poorly understood, so the chance of developing neuroprotective treatment is reduced. The aim of this study was to determine the exact mechanisms involved in CIPN development. Methods By single-cell RNA-sequencing (scRNAseq), we have studied the transcriptomic profile of DRG sensory neurons from a well-characterized neurophysiological mouse model of CIPN. Results Gene Ontology analysis of the scRNAseq data indicated that cisplatin treatment induces the upregulation of biological pathways related to DNA damage response (DDR) in the DRG neuronal population. Moreover, DRG neurons also upregulated the Cdkn1a gene, confirmed later by the measurement of its protein product p21. While apoptosis activation pathways were not observed in DRG sensory neurons of cisplatin-treated mice, these neurons did express several senescence hallmarks, including senescence-associated β-galactosidase, phospho-H2AX, and nuclear factor kappa B (Nfkb)–p65 proteins. Conclusions In this study, we determined that after cisplatin-induced DNA damage, p21 appears as the most relevant downstream factor of the DDR in DRG sensory neurons in vivo, which survive in a nonfunctional senescence-like state.

Funder

Instituto de Salud Carlos III

Department of Health of the Government of Catalonia

Publisher

Oxford University Press (OUP)

Subject

Cancer Research,Clinical Neurology,Oncology

Reference50 articles.

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4. Platinum-induced peripheral neurotoxicity: from pathogenesis to treatment;Staff;J Peripher Nerv Syst.,2019

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