NCX2 Targeting as a Neuroprotective Strategy Against Oxaliplatin-Induced Peripheral Neurotoxicity

Background/Objectives: Oxaliplatin (OHP) is a key component of colorectal cancer chemotherapy, but OHP-induced peripheral neurotoxicity (OIPN) is a major dose-limiting adverse effect. OHP-related sodium-channel dysfunction could increase intracellular Na+ and sustain depolarization, conditions that may theoretically favor reverse-mode NCX activity, in which the exchanger promotes Ca2+ entry rather than Ca2+ extrusion. This study evaluated whether NCX2 targeting could reduce OHP-induced sensory neuron injury. Methods: Primary mouse dorsal root ganglion neurons were exposed to OHP, with or without SEA0400 (NCX modulator) pretreatment or siRNA-mediated NCX2 knockdown. Neuronal viability, neurite elongation, live-cell morphology, NCX2 fluorescence, and lipid droplet accumulation were quantified. Results: OHP reduced neuronal survival and neurite elongation and induced stress-related morphological changes and lipid droplet accumulation. NCX2-associated fluorescence varied by neuronal subtype, dose, and time. SEA0400 and partial NCX2 knockdown attenuated selected injury endpoints, mainly under low-dose conditions. Conclusions: These findings suggest that NCX2 may be involved in selected OHP-induced sensory neuron injury endpoints and support further investigation of NCX2 as a potential preventive target. However, reverse-mode NCX activity, Na+/Ca2+ fluxes, NCX2 directionality, and translational relevance require direct validation.

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Publication Details

Journal
Cancers
Published
2026-09-17
DOI
https://doi.org/10.3390/cancers18183024
Primary Topic
Cancer Treatment and Pharmacology
Type
article
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article

NCX2 Targeting as a Neuroprotective Strategy Against Oxaliplatin-Induced Peripheral Neurotoxicity

Alessio Malacrida, E Ballarini, Paola Alberti, Mario Mauri et al.
Cancers
Cancer Treatment and Pharmacology
article

NCX2 Targeting as a Neuroprotective Strategy Against Oxaliplatin-Induced Peripheral Neurotoxicity

Alessio Malacrida, E Ballarini, Paola Alberti, Mario Mauri, Sara Di Girolamo, Chiara Invernizzi, Margherita Francesca Kraus, Virginia Rodriguez-Menendez, Stephen N. Housley
article en

Abstract

Background/Objectives: Oxaliplatin (OHP) is a key component of colorectal cancer chemotherapy, but OHP-induced peripheral neurotoxicity (OIPN) is a major dose-limiting adverse effect. OHP-related sodium-channel dysfunction could increase intracellular Na+ and sustain depolarization, conditions that may theoretically favor reverse-mode NCX activity, in which the exchanger promotes Ca2+ entry rather than Ca2+ extrusion. This study evaluated whether NCX2 targeting could reduce OHP-induced sensory neuron injury. Methods: Primary mouse dorsal root ganglion neurons were exposed to OHP, with or without SEA0400 (NCX modulator) pretreatment or siRNA-mediated NCX2 knockdown. Neuronal viability, neurite elongation, live-cell morphology, NCX2 fluorescence, and lipid droplet accumulation were quantified. Results: OHP reduced neuronal survival and neurite elongation and induced stress-related morphological changes and lipid droplet accumulation. NCX2-associated fluorescence varied by neuronal subtype, dose, and time. SEA0400 and partial NCX2 knockdown attenuated selected injury endpoints, mainly under low-dose conditions. Conclusions: These findings suggest that NCX2 may be involved in selected OHP-induced sensory neuron injury endpoints and support further investigation of NCX2 as a potential preventive target. However, reverse-mode NCX activity, Na+/Ca2+ fluxes, NCX2 directionality, and translational relevance require direct validation.

CancersVol. 18(18)
Georgia Institute of Technology (US), Azienda Ospedaliera San Gerardo (IT), Istituto Zooprofilattico Sperimentale del Piemonte Liguria e Valle d'Aosta (IT), University of Milano-Bicocca (IT)
Life below water
Openalex Percentile: Top 14%
Cancer Treatment and Pharmacology
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