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R N Glebov

Publications and source records attributed to R N Glebov.

At least 19 recordsLinked to original sources

Long-term reduction of benzodiazepine receptor density in the rat cerebellum by acute seizures and kindling and its recovery 6 months later by a pentylenetetrazole challenge.

Seizures induced by an acute pentylenetetrazole (50 mg/kg) injection were accompanied by a long-term (at 1-48 h, but not on day 7) decrease in the density (B(max)) of [3H]-diazepam binding to benzodiazepine receptors in rat cerebellar cortex with no change in affinity (K(d)). Kindling for 24 days by daily administrations of pentylenetetrazole (20 mg/kg) led to the same decrease in benzodiazepine receptor density (at 1-48 h, but not on day 7) as that observed after a single dose of pentylenetetrazole (50 mg/kg). This suggests a common mechanism for both acute and kindling-induced seizures, dependent on the long-term receptor changes. The increased susceptibility to seizures persisted for 6 months after the termination of kindling, with BDZ receptor density in cerebellar cortex reduced almost by half. In age-matched controls, an acute dose of PTZ (30 mg/kg) induced seizures and decrease in both B(max) and K(d) of [3H]-diazepam binding. In kindled rats, at 6 months post-kindling, the same dose of PTZ (30 mg/kg) restored the benzodiazepine receptor density to the level found 6 months before, at the time of termination of kindling. Also, the severity of seizures was enhanced in the kindled rats. The results are discussed in terms of a balance of inhibitory and excitatory processes, in which the reduced BDZ receptor density at 6 months post-kindling may represent a compensatory reaction to outbalance some alterations in excitatory systems that have been reported to be induced by kindling.

Acute Disease↗

[The action of corticosterone on the macroerg pool and membrane permeability in rat hippocampal slices during hypoxia].

Incubation of rat hippocampal slices for 30 min in medium containing 900, 700, or 500 microM of O2 did not significantly change ATP, ADP, or CP levels, but when O2 content dropped to 100-200 microM the levels of ATP and CP decreased by 2 to 5 times. Under the same conditions CPK maximal solubilization was shown. Corticosterone acetate (CSA, 160 microM) did not show a membranotropic effect, nor did it influence the macroerg pool under conditions of high O2 content, but when O2 concentration was 100 microM a twofold increase of ATP and CP levels was observed. This effect correlated with a twofold increase of CPK membrane permeability. The results of this study permit us consider that membrane labilization is not a reflection of CSA neurotoxic effect in hypoxia. A relationship between CSA antihypoxic effect and macroerg pool increase is discussed.

Adenosine Triphosphate↗

[Changes in the level of cyclic nucleotides in the left and right sensorimotor areas of the cerebral cortex in rats after corazol-induced kindling].

Levels of cAMP and cGMP in the left and right areas of the rat sensorimotor cortex (SMC) 7 days after pentylenetetrazole kindling (30 days) were determined by radioimmunological assay. It is shown that levels of cyclic nucleotides remained unchanged in rats SMC 7 days after single injection of seizure dose (70 mg/kg) of pentylenetetrazole. Levels of cAMP and cGMP in SMC increased by 2-3 times after 30-day administration of physiological saline as compared to single injection; cortical asymmetry of cAMP and cGMP is absent. Differences in the levels of cyclic nucleotides in sensitive and low-sensitive animals to pentylenetetrazole were not revealed. When kindling was completed cGMP level increased in right SMC and it decreased in left SMC as compared to control animals; cAMP level was unaltered in left and increased in right SMC. The role of cortical asymmetry of cyclic nucleotides development of seizure state is discussed.

Animals↗

[Differences in the hormonal status of rats highly and poorly resistant to hypoxia].

Rats were tested for hypobaric hypoxia and decapitated two weeks later at 9-12, 13-14 and 15-17 o'clock. The levels of corticosterone, insulin and testosterone were determined in serum by RIA. Great daily fluctuations and higher elevation of corticosterone level in response to additional 1.5-min hypoxia were observed in low hypoxia-resistant (HHR) rats. The correlation of corticosterone/insulin ratio was directly proportional in LHR rats and inversely proportional in HHR rats. No difference in testosterone and insulin levels in LHR and HHR rats was found.

Acute Disease↗

[Effects of corazol on the regulation of GABAa receptor-channel complex].

Effects of corazol (pentylenetetrazole, PTZ) on the GABAA receptor-channel complex mediated 36Cl- influx into synaptoneurosomes isolated from rat cerebral cortex, were studied. PTZ inhibited the 36Cl- influx stimulated by a GABA agonist, muscimol, concentration-dependently with an IC50 of 2.11 +/- 0.25 mM. In addition, the rate of muscimol-dependent desensitization of the GABAA receptor-channel complex was significantly reduced in the presence of PTZ. Apparently, the superimposition of these two mutually opposing effects is the cause of a mixed (competitive/noncompetitive) type of inhibition displayed by PTZ. The rate of desensitization of GABAA receptor-channel complex is suggested to be regulated by intracellular concentration of Cl- through a feed-back mechanism.

Animals↗

[Effects of magnesium and nickel ions on penicillin-induced focal epileptic activity in the cerebral cortex of rats].

In experiments on freely moving male Wistar rats on the model of penicillin-induced focal epileptic activity (EA) (the application onto the sensorimotor cortex of a filter paper soaked with benzylpenicillin sodium salt solution) it was shown that addition of MgSO4 (series 1) and NiCl2 (series 2) into the solution of penicillin significantly weakened EA. The combination of Mg2+ and Ni2+ with penicillin (series 3) produced a more significant suppression of EA as compared with separate application of the above-mentioned ions: the latency period of appearance of interictal discharges (IID) increased, the frequency and amplitude of IID decreased much more, no ictal discharges appeared in any animal, the duration of epileptic foci reduced to a much greater extent. This effect can be explained by the blockade of Ca current by the above-mentioned ions. One can suppose that the amplification of antiepileptic effects of combined action of Mg2+ and Ni2+ was due to an increase in the number of blocked voltage-dependent and NMDA-operated calcium channels.

Animals↗

[Organic calcium antagonists verapamil and ryodipine prevent an increase of free calcium in synaptosomes of the rat brain during corazol kindling].

In experiments on Wistar male rats it was shown that i.p. administration of verapamil or ryodipine (1,4-dihydropyridine) 15 min before each daily injection of pentylenetetrazol (PTZ) in a subconvulsive dose 30 mg/kg during 28 days significantly delayed the development of PTZ-induced kindling and attenuated kindled seizure reactions during 21-23 days as compared with control. One week after kindling an increase in free Ca2+ concentration in control rat brain synaptosomes by 60% was revealed; the treatment by verapamil and ryodipine prevented this increase. Nevertheless, Ca2+ antagonists studied at least under our experimental conditions inspite of a significant decrease in free Ca2+ concentration in synaptosomes would not completely prevent the development of kindling. Thus, an alteration in calcium homeostasis will not be the only mechanism of plasticity and long-term changes of neurons during kindling.

Animals↗

[Antiepileptic effects of nifedipine].

In experiments on freely moving male Wistar rats it was shown that nifedipine in a dose 10 mg/kg (i.p.) suppressed the penicillin-induced focal epileptic activity in cerebral cortex. A similar suppressing effect of nifedipine was shown on acute generalized tonic-clonic pentylenetetrazol (PTZ) seizures (75 mg/kg, i.p.). Nifedipine in the same dose was not effective on chronic PTZ administration (PTZ-kindling, 30 mg/kg i.p. during 28 days): when injected 30 min before each PTZ administration it didn't delay the development of kindling induced seizure susceptibility and had no effect on the severity of seizures. The administration of nifedipine in a dose of 10 or 30 mg/kg to control kindled animals which had not been treated with nifedipine had no influence on the severity of seizures provoked by a testing dose of PTZ (30 mg/kg i.p.): its intensity was similar to that of caused by PTZ injection along.

Animals↗

[Anti-epileptic effect of the new calcium channel blocker IOS-1.1212].

In experiments on freely moving male Wistar rats it was shown that IOS-1.1212 (1,4-dihydropyridine) in a dose 2 and 10 mg/kg (i. p.) suppressed the penicillin-induced focal epileptic activity in cerebral cortex. Similar suppressing effect of IOS-1.1212 was shown on acute generalized tonic-clonic pentylenetetrazol (PTZ) seizures (75 mg/kg i. p.) and on chronic PTZ administration (PTZ-kindling, 30 mg/kg i. p. during 30 days): when injected 30 min before each PTZ administration it delayed the development of kindling-induced seizures susceptibility in randomized animals (series 1) and attenuated the severity of seizures in PTZ-sensitive animals (series 2). However, IOS-1.1212 had no effect on the strychnine-induced focal epileptic activity. In male Icr:Icl mice IOS-1.1212 in a dose 1.5 and 5 mg/kg also influenced the PTZ convulsions (i. v. titration of 1% solution at a rate of 0.01 ml/s) and had no effect on the strychnine convulsions (i. v. titration of 0.01% solution at a rate of 0.01 ml/s) and on maximal electroshock. In addition, IOS-1.1212 significantly increased antiepileptic effect of phenobarbital on maximal electroshock.

Animals↗

[Effect of a Ca-channel blocker, ryodipine, on focal and generalized epileptic activity].

The experiments were performed on 102 freely moving Wistar rats. Epileptic foci were produced by the application of a filter paper soaked in a sodium benzylpenicillin solution (20,000 IU/ml) onto sensorimotor cortex. It was shown that an intraperitoneal administration of ryodipine (1,2 and 5 mg/kg) during a steady epileptic activity (EA) resulted in suppression of EA in most animals. Antiepileptic effect of ryodipine was manifested by a decreased frequency and amplitude of interictal discharges and a less frequent appearance of ictal discharges (ID). Prior administration of ryodipine (2 mg/kg) 30 min before producing the focus of EA resulted in an increased latency and decreased number of ID, and shortening of the duration of the focus of EA. Generalized convulsions were induced by intraperitoneal of pentylenetetrazol (60 mg/kg). Ryodipine (2 mg/kg, 30 min before pentylenetetrazol) increased latency to first convulsive episodes and delayed the development of generalized tonic-clonic seizures.

Animals↗

[The ACTH and cortisol content of the blood in experimental focal epilepsy].

In experiments on 87 freely behaving rats and 7 cats treated with d-tubocurarine and anesthetized with nembutal it was established that the generation of focus of epileptic activity (EA) in cerebral cortex by surface application of sodium benzylpenicillin is accompanied by an increase in the plasma level of ACTH (2-fold in rats and 2.5-fold in cats) with consequent rise in the plasma cortisol level (1.5-fold both in rats and cats). In cats a "delayed" rise in plasma ACTH was observed after the cessation of cortical EA. The described changes in plasma ACTH are a result of the pathological hyperactivity of neurons rather then a stressor component under the EA.

Adrenocorticotropic Hormone↗

[Effect of the Ca ionophore A-23187 on the plasmatic and mitochondrial potentials of the brain synaptosomes in rats: fluorescence measurements].

The applicability of the potential-sensitive dye diS-C3-(5) for the study of A23187 + Ca2+ induced plasma membrane hyperpolarization was tested in rat brain synaptosomes. An appropriate dye synaptosome ratio was chosen for the fluorescence titration dye in Ca-free Krebs-Ringer solution. The fluorescence intensity of the probe was increased upon the addition of Ca2+ (1 microM) to the synaptosomes in the presence of A23187 (1 microM). The effect of Ca2+ + A23187 persisted in a Na+-free medium or when Na+ channels were inhibited by tetrodotoxin as well as in high K+-depolarized synaptosomes (75 microM KCl). In the presence of oligomycin or a protonophore (1 microM) the effect of Ca2+ + A23187 was suppressed. This suggests that the A23187-induced fluorescence increase is due to a depolarization of intrasynaptosomal mitochondria. Therefore, the use of the dye diS-C3-(5) for the study of Ca-induced hyperpolarization does not seem to be feasible unless a quantitative model of changes in fluorescence related to the plasma and mitochondrial membrane potentials is elaborated.

Animals↗

[Inhibition by local anesthetics and barbiturates of the active transport of H+ in the synaptic vesicle membranes of the brain].

The effects of local anesthetics and barbiturates on the ATP-dependent H+ transport in synaptic vesicle membranes from rat brain were studied using a fluorescent probe, acridine orange. Local anesthetics depressed the active H+ transport with the following order of potencies: tetracaine trimecaine lidocaine procaine. Respective IC50 values were 0.07, 0.28, 0.46 and 0.60 mM. The local anesthetics also disrupted the endogenous pH gradient seen in the absence of ATP. Barbiturates inhibited the active H+ transport showing IC50 values in the range of 2-5 mM except for benzobarbital and barbital characterized by IC50 values of 0.5 and 20 mM, respectively. The order of potencies was benzobarbital hexobarbital amobarbital pentobarbital phenobarbital barbital. The endogenous pH gradient was not affected by the barbiturates. The results show that local anesthetics disrupt the H+ transport by acting as permeable weak bases (uncouplers) whereas barbiturates are likely to block and anion channel which maintains electroneutrality of the H+ transport in the membrane of synaptic vesicles.

Acridine Orange↗

[Ca2+- and inositol-1,4,5-triphosphate induced release of Ca2+ in the microsomal fraction of the rat brain].

Using the fluorescent probes, Quin 2 and chlortetracycline, a comparative study of the Ca2+ and inositol-1.4.5-triphosphate (IP3)-induced Ca2+ release from rabbit skeletal muscle sarcoplasmic reticulum (SR) terminal cisterns and rat brain microsomal vesicles was carried out. It was shown that Ca2+ release from rat brain microsomal vesicles is induced both by IP3 and Ca2+, whereas that in SR terminal cisterns is induced only by Ca2+. Data from chlorotetracycline fluorescence analysis revealed that CaCl2 (50 microM) causes the release of 15-20% and 40-50% of the total Ca2+ pool accumulated in rat brain microsomal vesicles and rabbit SR terminal cisterns, respectively. Using Quin 2, it was found that IP3 used at the optimal concentration (1.5 mM) caused the release of 0.4-0.6 nmol of Ca2+ per mg microsomal protein, which makes up to 10-15% of the total Ca2+ pool. IP3 does not induce Ca2+ release in SR. Preliminary release of Ca2+ from brain microsomes induced by IP3 diminishes the liberation of this cation induced by Ca2+. It is suggested that brain microsomes contain a Ca2+ pool which is exhausted under the action of the both effectors, Ca2+ and IP3.

Adenosine Triphosphate↗

[Effects of K+-depolarization on the physical state of membrane lipids in brain synaptosomes of the rat].

The microstructure of lipid bilayer in synaptosomes from rat brain upon K+-depolarization (30 mM) was studied using the inductive resonance energy transfer (IRET) from proteins to the fluorescent probes, pyrene and DMC (4-dimethylaminochalcone). The effectiveness of IRET was not changed by the K+-depolarization. The monomer-to-eximer ration (Fm285/Fe285) of pyrene fluorescence intensities in IRET was 1.5 times lower upon depolarization than in controls. This suggested a decreased microviscosity of the lipid bilayer in immediate environment to proteins of the synaptosomal membrane. The Fm338/Fee338 ratio as well as polarization of DMC fluorescence indicative of the bulk lipid phase were not altered under these conditions. Neither cytochalasin B not colchicine had any effect on fluorescence polarization of DMC both in control and depolarized synaptosomes. It is suggested that the increased lateral mobility of protein-associated lipid molecules found in depolarized synaptosomes may be caused by alterations in the activity of ion channels and ion pumps or by restructuring of the cytoskeletal network.

Animals↗