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铂在中枢神经系统中的沉积:对奥沙利铂诱导的年轻和老年小鼠周围神经病变的新见解。

Platinum Deposition in the Central Nervous System: A Novel Insight into Oxaliplatin-induced Peripheral Neuropathy in Young and Old Mice.

作者信息

Reis Angélica S, Paltian Jaini J, Domingues William B, Novo Diogo L R, Bolea-Fernandez Eduardo, Van Acker Thibaut, Campos Vinicius F, Luchese Cristiane, Vanhaecke Frank, Mesko Marcia F, Wilhelm Ethel A

机构信息

Programa de Pós-Graduação em Bioquímica e Bioprospecção (PPGBBio), Centro de Ciências Químicas, Farmacêuticas e de Alimentos, Universidade Federal de Pelotas (UFPel), Campus Capão Do Leão, Pelotas, RS, CEP 96010-900, Brazil.

Programa de Pós-Graduação em Biotecnologia, Laboratório de Genômica Estrutural, Biotecnologia - Universidade Federal de Pelotas, UFPel -, Pelotas, RS, CEP - 96010-900, Brazil.

出版信息

Mol Neurobiol. 2025 Mar;62(3):3712-3729. doi: 10.1007/s12035-024-04430-y. Epub 2024 Sep 25.

Abstract

Numerous factors can contribute to the incidence or exacerbation of peripheral neuropathy induced by oxaliplatin (OXA). Recently, platinum accumulation in the spinal cord of mice after OXA exposure, despite the efficient defenses of the central nervous system, has been demonstrated by our research group, expanding the knowledge about its toxicity. One hypothesis is platinum accumulation in the spinal cord causes oxidative damage to neurons and impairs mitochondrial function. Thus, the main aim of this study was to investigate the relationship between aging and OXA-induced neuropathic pain and its comorbidities, including anxious behavior and cognitive impairment. By using an OXA-induced peripheral neuropathy model, platinum and bioelement concentrations and their influence on oxidative damage, neuroprotection, and neuroplasticity pathways were evaluated in Swiss mice, and our findings showed that treatment with OXA exacerbated pain and anxious behavior, albeit not age-induced cognitive impairment. Platinum deposition in the spinal cord and, for the first time, in the brain of mice exposed to OXA, regardless of age, was identified. We found that alterations in bioelement concentration, oxidative damage, neuroprotection, and neuroplasticity pathways induced by aging contribute to OXA-induced peripheral neuropathy. Our results strive to supply a basis for therapeutic interventions for OXA-induced peripheral neuropathy considering age specificities.

摘要

许多因素可导致奥沙利铂(OXA)引起的周围神经病变的发生或加重。最近,我们的研究小组证实,尽管中枢神经系统有有效的防御机制,但在接触OXA后,小鼠脊髓中仍有铂蓄积,这拓展了对其毒性的认识。一种假说认为,脊髓中的铂蓄积会对神经元造成氧化损伤并损害线粒体功能。因此,本研究的主要目的是探讨衰老与OXA诱导的神经病理性疼痛及其合并症(包括焦虑行为和认知障碍)之间的关系。通过使用OXA诱导的周围神经病变模型,评估了瑞士小鼠体内铂和生物元素的浓度及其对氧化损伤、神经保护和神经可塑性途径的影响,我们的研究结果表明,OXA治疗会加剧疼痛和焦虑行为,尽管不会导致年龄相关的认知障碍。我们首次在接触OXA的小鼠脊髓和大脑中发现了铂沉积,无论其年龄如何。我们发现,衰老引起的生物元素浓度、氧化损伤、神经保护和神经可塑性途径的改变会导致OXA诱导的周围神经病变。我们的研究结果旨在为考虑年龄特异性的OXA诱导的周围神经病变的治疗干预提供依据。

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