NMDA receptors increase OH radicals in vivo by using nitric oxide synthase and protein kinase C.

scientific article

NMDA receptors increase OH radicals in vivo by using nitric oxide synthase and protein kinase C. is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1097/00001756-199310000-00018
P698PubMed publication ID7506590

P2093author name stringJ P Bennett
W D Parker
B Hammer
P2860cites workA derivative of staurosporine (CGP 41 251) shows selectivity for protein kinase C inhibition and in vitro anti-proliferative as well as in vivo anti-tumor activityQ44497906
P433issue1
P304page(s)72-74
P577publication date1993-10-01
P1433published inNeuroReportQ15710007
P1476titleNMDA receptors increase OH radicals in vivo by using nitric oxide synthase and protein kinase C
P478volume5

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cites work (P2860)
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Q48364448D-beta-hydroxybutyrate prevents glutamate-mediated lipoperoxidation and neuronal damage elicited during glycolysis inhibition in vivo
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Q33578850Enhanced vascular PI3K/Akt-NOX signaling underlies the peripheral NMDAR-mediated pressor response in conscious rats
Q28378847Excitotoxicity in the lung: N-methyl-D-aspartate-induced, nitric oxide-dependent, pulmonary edema is attenuated by vasoactive intestinal peptide and by inhibitors of poly(ADP-ribose) polymerase
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Q47142845ZnT3 Gene Deletion Reduces Colchicine-Induced Dentate Granule Cell Degeneration

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