Transient receptor potential ankyrin 1 (TRPA1) receptors are non‐selective cation channels responsive to a variety of exogenous irritants and endogenous stimuli including products of oxidative stress. It is mainly expressed by primary sensory neurons however, expression of TRPA1 by astrocytes and oligodendrocytes has recently been detected in the mouse brain. Genetic deletion of TRPA1 was shown to attenuate cuprizone‐induced oligodendrocyte apoptosis and myelin loss in mice. In the present study we investigated the astrocyte‐specific mGFAP‐driven conditional TRPA1 gene deficient mice in the cuprizone model. Astrocyte‐specific knockout animals were generated by crossbreeding GFAP‐Cre+/− and floxed TRPA1 (TRPA1Fl/Fl) mice. Cuprizone was administered during 6 weeks and demyelination was followed by magnetic resonance imaging (MRI). At the end of the treatment, myelin loss and glial activation were also investigated by histological methods. The results of the MRI showed significantly increased signal intensity in cuprizone‐treated GFAP‐Cre−/− TRPA1Fl/Fl mice compared to GFAP‐Cre+/− TRPA1Fl/− and GFAP‐Cre+/− TRPA1Fl/Fl animals on week 3 and week 4. However, by week 6 of the treatment the difference was not detectable by either the MRI or the histological methods. According to the currently available data, we presume that TRPA1 receptors localized on astrocytes can be activated by reactive oxygen species in response to cuprizone challenge and the consequent release of pro‐inflammatory mediators contributes to the progression of oligodendrocyte apoptosis. However, the global TRPA1 KO mice presented a more attenuated demyelination compared to the conditional KO mice, it could be hypothesized that TRPA1 receptors expressed by other cell types (neurons, oligodendrocytes) in the brain may also participate in the demyelination process.Support or Funding InformationThis research was funded by grants “The role of neuro‐inflammation in neurodegeneration: from molecules to clinics” (EFOP‐3.6.2‐16‐2017‐00008); Hungarian Brain Research Program 2. 2017‐1.2.1‐NKP‐2017‐00002. and the University of Pécs is acknowledged for a support by the 17886‐4/23018/FEKUTSTRAT excellence grant. G.K. was supported by Richter Gedeon Centenárium Foundation.
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