Utilize este identificador para referenciar este registo: https://hdl.handle.net/1822/78349

TítuloNeuron-microglia contact-dependent mechanisms attenuate methamphetamine-induced microglia reactivity and enhance neuronal plasticity
Autor(es)Bravo, Joana
Ribeiro, Inês Moreira
Terceiro, Ana Filipa
Andrade, Elva B.
Portugal, Camila Cabral
Lopes, Igor M.
Azevedo, Maria M.
Sousa, Mafalda
Lopes, Cátia D. F.
Lobo, Andrea C.
Canedo, Teresa
Relvas, João Bettencourt
Summavielle, Teresa
Palavras-chaveMethamphetamine
Neuron-to-microglia
Neuroprotection
Contact-dependent
CD200
PSD95
Data21-Jan-2022
EditoraMultidisciplinary Digital Publishing Institute (MDPI)
RevistaCells
CitaçãoBravo, J.; Ribeiro, I.; Terceiro, A.F.; Andrade, E.B.; Portugal, C.C.; Lopes, I.M.; Azevedo, M.M.; Sousa, M.; Lopes, C.D.F.; Lobo, A.C.; Canedo, T.; Relvas, J.B.; Summavielle, T. Neuron–Microglia Contact-Dependent Mechanisms Attenuate Methamphetamine-Induced Microglia Reactivity and Enhance Neuronal Plasticity. Cells 2022, 11, 355. https://doi.org/10.3390/cells11030355
Resumo(s)Exposure to methamphetamine (Meth) has been classically associated with damage to neuronal terminals. However, it is now becoming clear that addiction may also result from the interplay between glial cells and neurons. Recently, we demonstrated that binge Meth administration promotes microgliosis and microglia pro-inflammation via astrocytic glutamate release in a TNF/IP<sub>3</sub>R2-Ca<sup>2+</sup>-dependent manner. Here, we investigated the contribution of neuronal cells to this process. As the crosstalk between microglia and neurons may occur by contact-dependent and/or contact-independent mechanisms, we developed co-cultures of primary neurons and microglia in microfluidic devices to investigate how their interaction affects Meth-induced microglia activation. Our results show that neurons exposed to Meth do not activate microglia in a cell-autonomous way but require astrocyte mediation. Importantly, we found that neurons can partially prevent Meth-induced microglia activation via astrocytes, which seems to be achieved by increasing arginase 1 expression and strengthening the CD200/CD200r pathway. We also observed an increase in synaptic individual area, as determined by co-localization of pre- and post-synaptic markers. The present study provides evidence that contact-dependent mechanisms between neurons and microglia can attenuate pro-inflammatory events such as Meth-induced microglia activation.
TipoArtigo
URIhttps://hdl.handle.net/1822/78349
DOI10.3390/cells11030355
e-ISSN2073-4409
Versão da editorahttps://www.mdpi.com/2073-4409/11/3/355
Arbitragem científicayes
AcessoAcesso aberto
Aparece nas coleções:BUM - MDPI

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Este trabalho está licenciado sob uma Licença Creative Commons Creative Commons

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