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Cuprizone-Induced Neurotoxicity in Human Neural Cell Lines Is Mediated by a Reversible Mitochondrial Dysfunction: Relevance for Demyelination Models

Overview
Journal Brain Sci
Publisher MDPI
Date 2021 Mar 6
PMID 33671675
Citations 5
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Abstract

Suitable in vivo and in vitro models are instrumental for the development of new drugs aimed at improving symptoms or progression of multiple sclerosis (MS). The cuprizone (CPZ)-induced murine model has gained momentum in recent decades, aiming to address the demyelination component of the disease. This work aims at assessing the differential cytotoxicity of CPZ in cells of different types and from different species: human oligodendroglial (HOG), human neuroblastoma (SH-SY5Y), human glioblastoma (T-98), and mouse microglial (N-9) cell lines. Moreover, the effect of CPZ was investigated in primary rat brain cells. Cell viability was assayed by oxygen rate consumption and by the 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide-based (MTT) method. Our results demonstrated that CPZ did not cause death in any of the assayed cell models but affected mitochondrial function and aerobic cell respiration, thus compromising cell metabolism in neural cells and neuron-glia co-cultures. In this sense, we found differential vulnerability between glial cells and neurons as is the case of the CPZ-induced mouse model of MS. In addition, our findings demonstrated that reduced viability was spontaneous reverted in a time-dependent manner by treatment discontinuation. This reversible cell-based model may help to further investigate the role of mitochondria in the disease, and study the molecular intricacies underlying the pathophysiology of the MS and other demyelinating diseases.

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References
1.
Hynes J, Floyd S, Soini A, OConnor R, Papkovsky D . Fluorescence-based cell viability screening assays using water-soluble oxygen probes. J Biomol Screen. 2003; 8(3):264-72. DOI: 10.1177/1087057103008003004. View

2.
Titus H, Chen Y, Podojil J, Robinson A, Balabanov R, Popko B . Pre-clinical and Clinical Implications of "Inside-Out" vs. "Outside-In" Paradigms in Multiple Sclerosis Etiopathogenesis. Front Cell Neurosci. 2020; 14:599717. PMC: 7654287. DOI: 10.3389/fncel.2020.599717. View

3.
Procaccini C, De Rosa V, Pucino V, Formisano L, Matarese G . Animal models of Multiple Sclerosis. Eur J Pharmacol. 2015; 759:182-91. PMC: 7094661. DOI: 10.1016/j.ejphar.2015.03.042. View

4.
Martinez-Pinilla E, Rubio-Sardon N, Pelaez R, Garcia-Alvarez E, Del Valle E, Tolivia J . Neuroprotective Effect of Apolipoprotein D in Cuprizone-Induced Cell Line Models: A Potential Therapeutic Approach for Multiple Sclerosis and Demyelinating Diseases. Int J Mol Sci. 2021; 22(3). PMC: 7866080. DOI: 10.3390/ijms22031260. View

5.
Liu L, Belkadi A, Darnall L, Hu T, Drescher C, Cotleur A . CXCR2-positive neutrophils are essential for cuprizone-induced demyelination: relevance to multiple sclerosis. Nat Neurosci. 2010; 13(3):319-26. PMC: 2827651. DOI: 10.1038/nn.2491. View