TY - JOUR
T1 - Adenosines scavenged hydroxyl radicals and prevented posttraumatic epilepsy
AU - Yokoi, Isao
AU - Toma, Junji
AU - Liu, Jiankang
AU - Kabuto, Hideaki
AU - Mori, Akitane
PY - 1995/10
Y1 - 1995/10
N2 - Intracortical injection of iron ions has been used as a model of posttraumatic epilepsy. Oxidation of lipids in neural membranes by reactive oxygen species, especially hydroxyl radicals (OH), is involved in the mechanisms responsible for iron-induced seizures. We examined the scavenging effects of adenosine (Ado) and 2-chloroadenosine (Cl-Ado) on OH radicals and superoxide (O2·-) using an electron spin resonance (ESR) spectrometer, and the occurrence of epileptic discharges in electrocorticogram (ECoG) induced by FeCl3 injection into the sensorimotor cortex of rats. Though DMPO-O2·- spin adducts generated by the hypoxanthine-xanthine oxidase system were not quenched by Ado or Cl-Ado, 5 mM of each showed a quenching effect on DMPO-OH spin adducts (5.3 × 1016 spins/ml) generated by the Fenton reagent. In ECoG of rats, spike discharges appeared 15-45 min after FeCl3 injection (500 nmol) into the sensorimotor cortex, and polyspikes and/or ictal patterns were observed 70-90 min after the injection. Cl-Ado (1 mg/kg) or Ado (5 mg/kg) injected intraperitoneally 30 min prior to the FeC13 injection suppressed or delayed the occurrence of epileptic discharges induced by FeC13. Cl-Ado and Ado may suppress the occurrence of epileptic discharges by scavenging OH and by their anticonvulsant effect.
AB - Intracortical injection of iron ions has been used as a model of posttraumatic epilepsy. Oxidation of lipids in neural membranes by reactive oxygen species, especially hydroxyl radicals (OH), is involved in the mechanisms responsible for iron-induced seizures. We examined the scavenging effects of adenosine (Ado) and 2-chloroadenosine (Cl-Ado) on OH radicals and superoxide (O2·-) using an electron spin resonance (ESR) spectrometer, and the occurrence of epileptic discharges in electrocorticogram (ECoG) induced by FeCl3 injection into the sensorimotor cortex of rats. Though DMPO-O2·- spin adducts generated by the hypoxanthine-xanthine oxidase system were not quenched by Ado or Cl-Ado, 5 mM of each showed a quenching effect on DMPO-OH spin adducts (5.3 × 1016 spins/ml) generated by the Fenton reagent. In ECoG of rats, spike discharges appeared 15-45 min after FeCl3 injection (500 nmol) into the sensorimotor cortex, and polyspikes and/or ictal patterns were observed 70-90 min after the injection. Cl-Ado (1 mg/kg) or Ado (5 mg/kg) injected intraperitoneally 30 min prior to the FeC13 injection suppressed or delayed the occurrence of epileptic discharges induced by FeC13. Cl-Ado and Ado may suppress the occurrence of epileptic discharges by scavenging OH and by their anticonvulsant effect.
KW - 2-Chloroadenosine
KW - Adenosine
KW - Experimental epilepsy
KW - Free radicals
KW - Hydroxyl radical scavenger
KW - Iron-induced epilepsy
KW - Posttraumatic epilepsy
UR - https://www.scopus.com/pages/publications/0029143440
U2 - 10.1016/0891-5849(95)00050-8
DO - 10.1016/0891-5849(95)00050-8
M3 - 文章
C2 - 7590396
AN - SCOPUS:0029143440
SN - 0891-5849
VL - 19
SP - 473
EP - 479
JO - Free Radical Biology and Medicine
JF - Free Radical Biology and Medicine
IS - 4
ER -