In previous studies (Volonte and Merlo, 1996. J. Neurosci. Res. 45, 183-193) basilen blue was shown to be a P2 receptor antagonist which abrogated glutamate-mediated cytotoxicity in cerebellar neurones in primary culture. Our work has now been extended to evaluate the neuroprotective action of the compound in additional neuronal systems, as well as in a different paradigm of cell death. We show that basilen blue prevents L-glutamate-mediated neurotoxicity in rat cerebellar (90-100% inhibition), cortical (60-70%) and hippocampal (50%) neurones. Similarly, glutamate-dependent progressive darkening of cell bodies, loss of phase-brightness and rapid cellular swelling are inhibited. Basilen blue is significantly less toxic and more effective at blocking L-glutamate toxicity in mixed cortical/glial cultures, compared to its structural analogue cibacron blue. Moreover, its neuroprotective effect is correlated with the time of incubation with granule neurones. Other purinoceptor ligands, including 2,2'-pyridylisatogen, but not pyridoxal-phosphate-6-azophenyl-2',4'-disulphonic acid 4-sodium, are also effective in preventing glutamate toxicity. Furthermore, basilen blue prevents serum deprivation- and low potassium-induced apoptotic cell death in cerebellar granule neurones. In summary, our data extend and reinforce the possibility of a potential therapeutic use of P2 receptor modulators as neuroprotective agents for the central nervous system. (C) 1999 Elsevier Science Ltd. All rights reserved.

Volonté, C., Ciotti, M.t., D'Ambrosi, N., Lockhart, B., Spedding, M. (1999). Neuroprotective effects of modulators of P2 receptors in primary culture of CNS neurones. NEUROPHARMACOLOGY, 38(9), 1335-1342 [10.1016/s0028-3908(99)00034-9].

Neuroprotective effects of modulators of P2 receptors in primary culture of CNS neurones

D'Ambrosi, N;
1999-09-01

Abstract

In previous studies (Volonte and Merlo, 1996. J. Neurosci. Res. 45, 183-193) basilen blue was shown to be a P2 receptor antagonist which abrogated glutamate-mediated cytotoxicity in cerebellar neurones in primary culture. Our work has now been extended to evaluate the neuroprotective action of the compound in additional neuronal systems, as well as in a different paradigm of cell death. We show that basilen blue prevents L-glutamate-mediated neurotoxicity in rat cerebellar (90-100% inhibition), cortical (60-70%) and hippocampal (50%) neurones. Similarly, glutamate-dependent progressive darkening of cell bodies, loss of phase-brightness and rapid cellular swelling are inhibited. Basilen blue is significantly less toxic and more effective at blocking L-glutamate toxicity in mixed cortical/glial cultures, compared to its structural analogue cibacron blue. Moreover, its neuroprotective effect is correlated with the time of incubation with granule neurones. Other purinoceptor ligands, including 2,2'-pyridylisatogen, but not pyridoxal-phosphate-6-azophenyl-2',4'-disulphonic acid 4-sodium, are also effective in preventing glutamate toxicity. Furthermore, basilen blue prevents serum deprivation- and low potassium-induced apoptotic cell death in cerebellar granule neurones. In summary, our data extend and reinforce the possibility of a potential therapeutic use of P2 receptor modulators as neuroprotective agents for the central nervous system. (C) 1999 Elsevier Science Ltd. All rights reserved.
set-1999
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore BIO/10 - BIOCHIMICA
English
basilen blue
pyridylisatogen
excitotoxicity
neuroprotection
purinoceptors
Volonté, C., Ciotti, M.t., D'Ambrosi, N., Lockhart, B., Spedding, M. (1999). Neuroprotective effects of modulators of P2 receptors in primary culture of CNS neurones. NEUROPHARMACOLOGY, 38(9), 1335-1342 [10.1016/s0028-3908(99)00034-9].
Volonté, C; Ciotti, Mt; D'Ambrosi, N; Lockhart, B; Spedding, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/324772
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