Oxygen matters: Unraveling the role of oxygen in the neuronal response to cisplatin.

IF 3.9 3区 医学 Q1 CLINICAL NEUROLOGY Journal of the Peripheral Nervous System Pub Date : 2024-09-27 DOI:10.1111/jns.12659
Jose Crugeiras, Aina Calls, Estefanía Contreras, Montse Alemany, Xavier Navarro, Victor J Yuste, Oriol Casanovas, Esther Udina, Jordi Bruna
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Abstract

Background and aims: Cell culture is a fundamental experimental tool for understanding cell physiology. However, translating these findings to in vivo settings has proven challenging. Replicating donor tissue conditions, including oxygen levels, is crucial for achieving meaningful results. Nevertheless, oxygen culture conditions are often overlooked, particularly in the context of chemotherapy-induced neurotoxicity.

Methods: In this study, we investigated the role of oxygen levels in primary neuronal cultures by comparing neuronal performance under cisplatin exposure (1 μg/mL) in supraphysiological normoxia (representing atmospheric conditions in a standard incubator; 18.5% O2) and physioxia (representing physiologic oxygen conditions in nervous tissue; 5% O2). Experiments were also conducted to assess survival, neurite development, senescence marker expression, and proinflammatory cytokine secretion.

Results: Under control conditions, both oxygen concentration conditions exhibited similar behaviors. However, after cisplatin administration, sensory neurons cultured under supraphysiological normoxic conditions show higher mortality, exhibit an evolutionarily proinflammatory cytokine profile over time, and activate apoptotic-regulated neuron death markers. In contrast, under physiological conditions, neurons treated with cisplatin exhibited senescence marker expression and an attenuated inflammatory secretome.

Interpretation: These results underscore the critical role of oxygen in neuronal culture, particularly in studying compounds where neuronal damage is mechanistically linked to oxidative stress. Even at identical doses of evaluated neurotoxic drugs, distinct cellular phenotypic fates can emerge, impacting translatability to the in vivo setting.

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氧气很重要揭示氧气在神经元对顺铂反应中的作用。
背景和目的:细胞培养是了解细胞生理学的基本实验工具。然而,将这些研究结果转化为体内环境已被证明具有挑战性。复制供体组织的条件,包括氧气水平,对于获得有意义的结果至关重要。然而,氧气培养条件往往被忽视,尤其是在化疗诱导的神经毒性方面:在本研究中,我们通过比较顺铂暴露(1 μg/mL)下神经元在超生理常氧(代表标准培养箱中的大气条件;18.5% O2)和生理缺氧(代表神经组织中的生理氧气条件;5% O2)条件下的表现,研究了氧气水平在原代神经元培养中的作用。实验还对存活率、神经元发育、衰老标记表达和促炎细胞因子分泌进行了评估:结果:在对照条件下,两种氧气浓度条件表现相似。然而,顺铂给药后,在超生理常氧条件下培养的感觉神经元显示出更高的死亡率,随着时间的推移显示出进化的促炎细胞因子特征,并激活凋亡调控的神经元死亡标记。与此相反,在生理条件下,用顺铂处理的神经元表现出衰老标志物的表达和炎症分泌组的减少:这些结果强调了氧在神经元培养中的关键作用,尤其是在研究神经元损伤与氧化应激有机理联系的化合物时。即使在评估的神经毒性药物剂量相同的情况下,也会出现不同的细胞表型命运,从而影响到体内环境的可转化性。
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来源期刊
CiteScore
6.10
自引率
7.90%
发文量
45
审稿时长
>12 weeks
期刊介绍: The Journal of the Peripheral Nervous System is the official journal of the Peripheral Nerve Society. Founded in 1996, it is the scientific journal of choice for clinicians, clinical scientists and basic neuroscientists interested in all aspects of biology and clinical research of peripheral nervous system disorders. The Journal of the Peripheral Nervous System is a peer-reviewed journal that publishes high quality articles on cell and molecular biology, genomics, neuropathic pain, clinical research, trials, and unique case reports on inherited and acquired peripheral neuropathies. Original articles are organized according to the topic in one of four specific areas: Mechanisms of Disease, Genetics, Clinical Research, and Clinical Trials. The journal also publishes regular review papers on hot topics and Special Issues on basic, clinical, or assembled research in the field of peripheral nervous system disorders. Authors interested in contributing a review-type article or a Special Issue should contact the Editorial Office to discuss the scope of the proposed article with the Editor-in-Chief.
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