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Stepanichev MYu

Publications and source records attributed to Stepanichev MYu.

6 recordsLinked to original sources

Postresuscitation changes in brain free radical-mediated processes and nitric oxide synthase activity in rats: effects of individual behavior in "emotional resonance" test.

Effects of 7-min cardiac arrest and individual behavior on free radical-mediated processes and nitric oxide synthase (NOS) activity was evaluated in brains of male Wistar rats one hour and one week after resuscitation. "Emotional resonance" test was used for the behavioral selection of rats. The test includes factors of significance for rats: the choice between large and lighted or small and dark space as well as signals of pain of another rat. Free radical generation (using chemiluminescence method), superoxide scavenging/generating activity, substances reacting with 2-thiobarbituric acid and NOS activity (by measuring mononitrosyl iron complex of NO with diethyl dithiocarbamate and endogenous brain Fe2+ by electron spin resonance spectroscopy) were determined in cerebral cortex, cerebellum and hippocampus. Cardiac arrest induced oxidative stress accompanied by the loss of NOS activity, as well as compensatory changes of free radical-mediated processes in cerebral cortex. Oxidative stress was also evident in cerebellum and, to a lesser extent, in hippocampus. Most of neurochemical differences between behavioral groups were induced by cardiac arrest. These differences were global, related to a specific brain region or became apparent in cerebral lateralization of biochemical indices.

Adaptation, Psychological↗

Cardiac arrest induces decrease of nitric oxide synthase activity and increase of free radical generation in rat brain regions.

Rats were subjected to 15 min cardiac arrest and sacrificed 1 h or 15-20 days after resuscitation. Homogenates of brain regions were assayed for nitric oxide synthase (NOS) activity (by measuring the mononitrosyl iron complex of NO with diethyl dithiocarbamate and endogenous brain Fe2+ using electron spin resonance spectroscopy) and generation of free radicals (FRG; by measuring H2O2-induced, luminol-dependent chemiluminescence). Cardiac arrest induced marked decrease of NOS activity and the increase of FRG, most prominent in cerebellum and less marked in cerebral cortex. Two groups of rats were revealed 15-20 days after cardiac arrest: with NOS activity significantly lower than control and not different from control. Positive linear inter-regional cross-correlations of both NOS activity and FRG (except of the group 1 h after resuscitation) as well as negative correlations between NOS and FRG were demonstrated.

Animals↗

Oxidative stress in the brain following intraventricular administration of ethylcholine aziridinium (AF64A).

AF64A is a toxic analog of choline that disrupts high affinity choline transport and produces a persistent presynaptic cholinergic hypofunction. The observed neuroprotectant effects of Vitamin E in the AF64A model suggested that oxidative stress contributed to the cholinotoxicity of AF64A. The studies presented here examined whether intraventricular injection of AF64A produces oxidative stress in the brain of male Wistar rats. Indices of oxidative stress including thiobarbituric acid reactive species (TBARS), free radical generation using hydrogen peroxide-induced, luminol-dependent chemiluminescence (CL) and superoxide scavenging/generating activity were measured in cerebral cortex, hippocampus and the rest of the brain, without cerebellum, 1, 3 or 5 days after bilateral intraventricular injection of 3 nmol of AF64A or artificial CSF (sham surgery). The sham operation itself induced oxidative stress throughout the brain (increased TBARS, CL and superoxide generation). In addition to the oxidative stress of the sham surgery AF64A increased basal TBARS on day 1 and Fe/ascorbate-induced TBARS on days 3 and 5 throughout the brain. AF64A produced compensatory 'antioxidative' changes as well with increased superoxide scavenging activity observed on day 3 and decreased basal TBARS on day 5. AF64A also induced specific changes in the hippocampus including a decrease of CL and an increase of superoxide scavenging activity on day 5. The increased superoxide scavenging activity persisted up to 126 days. The results of the present study provide the first direct evidence that AF64A induces oxidative stress following intraventricular injection.

Animals↗

NO synthase and free radical generation in brain regions of old rats: correlations with individual behaviour.

We have investigated the activity of NO synthase (NOS) and generation of free radicals (FRG) in selected brain regions of old male Wistar rats. Using the emotional resonance test, two groups of rats were selected for the experiment: passive, preferring dark space and active, preferring light space. Highest NOS activity and FRG were seen in cerebellum. As a rule, NOS activity was lower and FRG higher in the respective brain regions of active rats than in passive rats. Positive linear inter-regional cross-correlations of NOS activity as well as of FRG were found. When all rats were assessed as one group, negative correlations between NOS and FRG in cerebral cortex were revealed.

Aging↗

Biochemical correlates of individual behavior.

This article is a review of data (results of the authors' investigations and data from the literature) concerning neurochemical correlates of individual behavior in rats. The "emotional resonance" test was used for behavioral selection of rats. Individual behavior in this test is related to the differences in free radical-mediated processes, membrane lipid content, nitric oxide synthase activity, and cAMP pattern in cerebral macrostructures. Behavior-related differences may be revealed in intact animals; however, most of them are reactive (induced by significant external factors). These differences depend on age; they may be global, specific for selected brain regions, and/or related to interhemisphere lateralization of biochemical parameters.

Aging↗