TY - JOUR
T1 - Oxygen matters
T2 - Unraveling the role of oxygen in the neuronal response to cisplatin
AU - Crugeiras, Jose
AU - Calls, Aina
AU - Contreras, Estefanía
AU - Alemany, Montse
AU - Navarro, Xavier
AU - Yuste, Victor J.
AU - Casanovas, Oriol
AU - Udina, Esther
AU - Bruna, Jordi
N1 - Publisher Copyright:
© 2024 The Author(s). Journal of the Peripheral Nervous System published by Wiley Periodicals LLC on behalf of Peripheral Nerve Society.
PY - 2024/12
Y1 - 2024/12
N2 - 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.
AB - 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.
KW - cell culture
KW - chemotherapy-induced neuropathy
KW - cisplatin
KW - neurotoxicity
KW - oxygen
KW - Cells, Cultured
KW - Neurons/drug effects
KW - Cell Survival/drug effects
KW - Oxygen/metabolism
KW - Antineoplastic Agents/pharmacology
KW - Cisplatin/pharmacology
KW - Animals
KW - Cytokines/metabolism
UR - http://www.scopus.com/inward/record.url?scp=85205296352&partnerID=8YFLogxK
UR - https://www.mendeley.com/catalogue/9b3e9124-5ad7-34e2-acf3-cc0f86b5f333/
UR - https://portalrecerca.uab.cat/en/publications/94a684b9-64c1-4458-97ed-2c475bcd4dcb
U2 - 10.1111/jns.12659
DO - 10.1111/jns.12659
M3 - Article
C2 - 39329299
AN - SCOPUS:85205296352
SN - 1085-9489
VL - 29
SP - 528
EP - 536
JO - Journal of the Peripheral Nervous System
JF - Journal of the Peripheral Nervous System
IS - 4
ER -