Effects of fructose 1,6-bisphosphate (F-1,6-P2) towards N-methyl-d-aspartate NMDA excitotoxicity were evaluated in rat organotypic hippocampal brain slice cultures (OHSC) challenged for 3 h with 30 μM NMDA, followed by incubations (24, 48, and 72 h) without (controls) and with F-1,6-P2 (0.5, 1 or 1.5 mM). At each time, cell necrosis was determined by measuring LDH in the medium. Energy metabolism was evaluated by measuring ATP, GTP, ADP, AMP, and ATP catabolites (nucleosides and oxypurines) in deproteinized OHSC extracts. Gene expressions of phosphofructokinase, aldolase, and glyceraldehyde-3-phosphate dehydrogenase were also measured. F-1,6-P2 dose-dependently decreased NMDA excitotoxicity, abolishing cell necrosis at the highest concentration tested (1.5 mM). Additionally, F-1,6-P2 attenuated cell energy imbalance caused by NMDA, ameliorating the mitochondrial phosphorylating capacity (increase in ATP/ADP ratio) Metabolism normalization occurred when using 1.5 mM F-1,6-P2. Remarkable increase in expressions of phosphofructokinase, aldolase and glyceraldehyde-3-phosphate dehydrogenase (up to 25 times over the values of controls) was also observed. Since this phenomenon was recorded even in OHSC treated with F-1,6-P2 with no prior challenge with NMDA, it is highly conceivable that F-1,6-P2 can enter into intact cerebral cells producing significant benefits on energy metabolism. These effects are possibly mediated by changes occurring at the gene level, thus opening new perspectives for F-1,6-P2 application as a useful adjuvant to rescue mitochondrial metabolism of cerebral cells under stressing conditions.

Yakoub, K. M., Lazzarino, G., Amorini, A. M., Caruso, G., Scazzone, C., Ciaccio, M., Tavazzi, B., Lazzarino, G., Belli, A., Di Pietro, V., Fructose-1,6-Bisphosphate Protects Hippocampal Rat Slices from NMDA Excitotoxicity, <<INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES>>, 2020; 2020 (20): 2239-2245. [doi:10.3390/ijms20092239] [http://hdl.handle.net/10807/155097]

Fructose-1,6-Bisphosphate Protects Hippocampal Rat Slices from NMDA Excitotoxicity

Lazzarino, Giacomo;Tavazzi, Barbara;
2019

Abstract

Effects of fructose 1,6-bisphosphate (F-1,6-P2) towards N-methyl-d-aspartate NMDA excitotoxicity were evaluated in rat organotypic hippocampal brain slice cultures (OHSC) challenged for 3 h with 30 μM NMDA, followed by incubations (24, 48, and 72 h) without (controls) and with F-1,6-P2 (0.5, 1 or 1.5 mM). At each time, cell necrosis was determined by measuring LDH in the medium. Energy metabolism was evaluated by measuring ATP, GTP, ADP, AMP, and ATP catabolites (nucleosides and oxypurines) in deproteinized OHSC extracts. Gene expressions of phosphofructokinase, aldolase, and glyceraldehyde-3-phosphate dehydrogenase were also measured. F-1,6-P2 dose-dependently decreased NMDA excitotoxicity, abolishing cell necrosis at the highest concentration tested (1.5 mM). Additionally, F-1,6-P2 attenuated cell energy imbalance caused by NMDA, ameliorating the mitochondrial phosphorylating capacity (increase in ATP/ADP ratio) Metabolism normalization occurred when using 1.5 mM F-1,6-P2. Remarkable increase in expressions of phosphofructokinase, aldolase and glyceraldehyde-3-phosphate dehydrogenase (up to 25 times over the values of controls) was also observed. Since this phenomenon was recorded even in OHSC treated with F-1,6-P2 with no prior challenge with NMDA, it is highly conceivable that F-1,6-P2 can enter into intact cerebral cells producing significant benefits on energy metabolism. These effects are possibly mediated by changes occurring at the gene level, thus opening new perspectives for F-1,6-P2 application as a useful adjuvant to rescue mitochondrial metabolism of cerebral cells under stressing conditions.
2019
AREA05 - SCIENZE BIOLOGICHE
Pubblicazione su rivista con Impact Factor
Inglese
Articolo in rivista
Inglese
fructose-1; 6-bisphosphate; N-methyl-d-aspartate; excitotoxicity; energymetabolism; mitochondrial dysfunction; organotypic hippocampal brainslice cultures
Settore BIO/10 - BIOCHIMICA
MDPI
2020
20
2020
Epub
2239
2245
7
Esperti anonimi
Articolo su rivista scientifica / specializzata
a stampa
info:eu-repo/semantics/article
Yakoub, K. M., Lazzarino, G., Amorini, A. M., Caruso, G., Scazzone, C., Ciaccio, M., Tavazzi, B., Lazzarino, G., Belli, A., Di Pietro, V., Fructose-1,6-Bisphosphate Protects Hippocampal Rat Slices from NMDA Excitotoxicity, <<INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES>>, 2020; 2020 (20): 2239-2245. [doi:10.3390/ijms20092239] [http://hdl.handle.net/10807/155097]
open
262
Yakoub, Kamal M.; Lazzarino, Giacomo; Amorini, Angela M.; Caruso, Giuseppe; Scazzone, Concetta; Ciaccio, Marcello; Tavazzi, Barbara; Lazzarino, Giusep...espandi
10
art_per_29
03. Contributo in rivista::Articolo in rivista, Nota a sentenza
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