Norepinephrine (NE) neurons and extracellular NE exert some protective effects against a variety of insults, including methamphetamine (Meth)-induced cell damage. The intimate mechanism of protection remains difficult to be analyzed in vivo. In fact, this may occur directly on target neurons or as the indirect consequence of NE-induced alterations in the activity of trans-synaptic loops. Therefore, to elude neuronal networks, which may contribute to these effects in vivo, the present study investigates whether NE still protects when directly applied to Meth-treated PC12 cells. Meth was selected based on its detrimental effects along various specific brain areas. The study shows that NE directly protects in vitro against Meth-induced cell damage. The present study indicates that such an effect fully depends on the activation of plasma membrane β2-adrenergic receptors (ARs). Evidence indicates that β2-ARs activation restores autophagy, which is impaired by Meth administration. This occurs via restoration of the autophagy flux and, as assessed by ultrastructural morphometry, by preventing the dissipation of microtubule-associated protein 1 light chain 3 (LC3) from autophagy vacuoles to the cytosol, which is produced instead during Meth toxicity. These findings may have an impact in a variety of degenerative conditions characterized by NE deficiency along with autophagy impairment.

Norepinephrine protects against methamphetamine toxicity through β2-adrenergic receptors promoting LC3 compartmentalization / Lazzeri, G.; Busceti, C. L.; Biagioni, F.; Fabrizi, C.; Morucci, G.; Giorgi, F. S.; Ferrucci, M.; Lenzi, P.; Puglisi-Allegra, S.; Fornai, F.. - In: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. - ISSN 1422-0067. - 22:13(2021), pp. 1-34. [10.3390/ijms22137232]

Norepinephrine protects against methamphetamine toxicity through β2-adrenergic receptors promoting LC3 compartmentalization

Fabrizi C.
Investigation
;
2021

Abstract

Norepinephrine (NE) neurons and extracellular NE exert some protective effects against a variety of insults, including methamphetamine (Meth)-induced cell damage. The intimate mechanism of protection remains difficult to be analyzed in vivo. In fact, this may occur directly on target neurons or as the indirect consequence of NE-induced alterations in the activity of trans-synaptic loops. Therefore, to elude neuronal networks, which may contribute to these effects in vivo, the present study investigates whether NE still protects when directly applied to Meth-treated PC12 cells. Meth was selected based on its detrimental effects along various specific brain areas. The study shows that NE directly protects in vitro against Meth-induced cell damage. The present study indicates that such an effect fully depends on the activation of plasma membrane β2-adrenergic receptors (ARs). Evidence indicates that β2-ARs activation restores autophagy, which is impaired by Meth administration. This occurs via restoration of the autophagy flux and, as assessed by ultrastructural morphometry, by preventing the dissipation of microtubule-associated protein 1 light chain 3 (LC3) from autophagy vacuoles to the cytosol, which is produced instead during Meth toxicity. These findings may have an impact in a variety of degenerative conditions characterized by NE deficiency along with autophagy impairment.
2021
autophagy; autophagy vacuoles; cell compartmentalization; LC3; methamphetamine; norepinephrine; PC12; adrenergic agents; animals; autophagy; cell compartmentation; central nervous system stimulants; desipramine; dose-response relationship; drug; methamphetamine; microscopy; electron; transmission; microtubule-associated proteins; models; neurological; neurons; neuroprotective agents; norepinephrine; PC12 cells; rats; receptors; adrenergic; beta-2; vacuoles
01 Pubblicazione su rivista::01a Articolo in rivista
Norepinephrine protects against methamphetamine toxicity through β2-adrenergic receptors promoting LC3 compartmentalization / Lazzeri, G.; Busceti, C. L.; Biagioni, F.; Fabrizi, C.; Morucci, G.; Giorgi, F. S.; Ferrucci, M.; Lenzi, P.; Puglisi-Allegra, S.; Fornai, F.. - In: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. - ISSN 1422-0067. - 22:13(2021), pp. 1-34. [10.3390/ijms22137232]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1572278
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