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Biomedical subjects

S Kitagawa

Publications and source records attributed to S Kitagawa.

At least 343 records · Page 19Linked to original sources

Evidence that proteases are involved in superoxide production by human polymorphonuclear leukocytes and monocytes.

The possible participation of proteases in superoxide (O2-) production by human polymorphonuclear leukocytes (PMN) and monocytes was explores using various protease inhibitors and substrates. Protease inhibitors of serine proteases and synthetic inhibitors that modify the active site of serine proteases. Substrates used were synthetic substrates of the chymotrypsin type as well as trypsin type of protease. All these inhibitors and substrates inhibited O2- oroduction by human PMN and monocytes induced by cytochalasin E and concanavalin A, though PMN were more sensitive to these inhibitors and substrates than monocytes. Inhibition appeared rapidly even when the inhibitors were added at the same time as the stimulants, during the "induction time of O2-production" or at the time of maximum O2- production, whereas much greater inhibition was observed when the cells were preincubated with the inhibitors. These observations suggest that enzymatically active serine proteases are essential for these phagocytic cells to initiate and maintain the O2- production in response to the stimuli. The inhibitory effect of the inhibitor and substrate for chymotrypsin type protease was greater than that of those substances for trypsin-type protease. Macromolecular inhibitors also inhibited the O2- production. These findings suggest that the serine proteases involved in the O2- production by human PMN and monocytes are similar to chymotrypsin rather than trypsin, and are possibly located at the cell surface membrane.

Adult↗

[Effects of minor tranquilizers and neuroleptics on open-field behavior in rats (author's transl)].

Minor tranquilizers (diazepam, nitrazepam, oxazepam, bromazepam, medazepam, fludiazepam, meprobamate) at low doses increased ambulation score to 145 approximately 288% of control rats. Nitrazepam, diazepam and bromazepam which are potent, clinically prescribed minor tranquilizers increased the ambulation at lower doses than was seen with the other drugs. Fludiazepam and nitrazepam showed a maximum increase in ambulation at the same dose. Fludiazepam, nitrazepam and diazepam proved to have potent inhibitory effects on defecation. Trifluperidol, haloperidol and ID-4708 (a new butyrophenone derivative) and chlorpromazine when given at low doses reduced ambulation, while at higher doses defecation was inhibited. These four drugs reduced ambulation and elicited a recover in rates of defecation in methamphetamine treated rats. Clozapine, thioridazine and floropipamide inhibited defecation at nearly the same doses which reduced ambulation in rats not given the methamphetamine tratment. These three durugs reduced ambulation, but did not produce a recovery in the defecation rates in methamphetamine-treated rats. These results indicate that neuroleptics such as clozapine which rarely induce extrapyramidal side-effects when clinically prescribed, inhibit defecation at nearly the same doses which reduce ambulation. In methamphetamine-treated rats, haloperidol was 31 times more potent than chlorpromazine in inhibiting activity noted with ambulation. This ratio in open-field test was close to the ratio of potency of these drugs as antipsychotic clinically prescribed agents.

Animals↗

Effects of amitriptyline and isocarboxazid on 5-hydroxytryptophan induced head twitches in mice.

Effects of amitriptyline and isocarboxazid on brain 5-HT and 5-HIAA were examined in relation to their action on 5-HTP induced head twitches. Amitriptyline reduced 5-HTP induced head twitches but isocarboxazid increased them. Both amitriptyline and isocarboxazid caused a significant increase of brain 5-HT concentration in 5-HTP treated mice. Amitriptyline also caused a significant increase of 5-HIAA concentration, while isocarboxazid reduced 5-HIAA concentration in the brains of 5-HTP treated mice. Probenecid, which significantly increased 5-HIAA concentration without affecting brain 5-HT concentration in 5-HTP treated mice, reduced 5-HTP induced heat twitches. These results suggest that 5-HTP induced head twitches might be induced by an increase of 5-HT concentration, and reduced by an increase of 5-HIAA or a decrease of 5-HT concentration in the brains of mice.

5-Hydroxytryptophan↗

[Effects of l-methyl-5-(O-fluorophenyl)-7-chloro-1,3-dihydro-2H-1,4-benzodiazepin-2-One (ID-540) on operant behavior in rats].

Effects of ID-540, a new benzodiazepine derivative, on operant behavior were studied and compared with those of diazepam in rats for the purpose of determining the characteristics on behavioral pharmacology. Four schedules used were as follows: Fixed interval (FI-60sec) of food reinforcement and differential food reinforcement of low rate (DRL20sec) for positively reinforced behavior, Sidman-type avoidance response for negatively reinforced behavior and conflict behavior induced by simultaneously rewarding with food and punishing with electric shock. In the experiments on FI-60sec schedule, the responses at the early stage (0 approximately 30 min after administration of the drug) were increased by both ID-540 and diazepam at lower doses (0.5 approximately 4 mg/kg p.o.), but inhibited at higher doses (8 approximately 32 mg/kg p.o.). The effect of ID-540 lasted longer than that of diazepam. In the experiments on DRL20sec schedule, neither drug accelerated the responses, but decreased the lever-press response and total number of reinforcements at higher doses (4 mg/kg or more) showing the disturbance of discrimination on time. In Sidman-type avoidance responses, ID-540 did not show any inhibitory effect, thus a neuroleptic-like effect of ID-540 was not demonstrated. In experiments on FI-60sec and Sidman-type avoidance schedules, the effect of ID-540 was not changed by a consecutive administration for 10 days. Conflict behavior is considered to resemble the anxiety states in humans, and in related experiments, ID-540 increased the lever-press response which delivered a food-pellet and an electric shock simultaneously at a dose of 0.0625 mg/kg (i.p.). Change in other behavior was not observed at this dose level. Maximum effect of ID-540 was observed at a dose of 0.5 mg/kg (i.p.). Maximum effect of diazepam on conflict behavior was seen at a dose of 4 mg/kg (i.p.). The potency of ID-540 on conflict behavior was estimated to be about 8 times that of diazepam.

Animals↗

Effects of benzodiazepines and pentobarbital on the evoked potentials in the cat brain.

The sites of action of benzodiazepines, diazepam and ID-540 [7-chloro-5-(o-fluorophenyl)-1-methyl-1,3-dihydro-2H-1,4-benzodiazepin-2-one) on the central nervous system were examined and compared with those of pentobarbital using evoked potentials recorded on the limbic system and hypothalamus in the cat brain. Benzodiazepines affected the various neuronal connections of the intra-limbic, limbic-hypothalamic and midbrain-limbic systems; especially the amygdala (AMYG)-, ventromedial hypothalamus (VMH)- and central gray matter (SGC)-hippocampal (HIPP) evoked potentials were attenuated, whereas the AMYG-VMH, VMH-AMYG and the septum (SP)-VMH evoked potentials were facilitated. Pentobarbital selectively attenuated the SGC-, VMH- and AMYG-HIPP evoked potentials, or facilitated the VMH-AMYG and the SP-HIPP evoked potentials. Both benzodiazepines and pentobarbital affected three afferent hippocampal neuronal connections, areas of the reticulo-hypothalamic systems regulating hippocampal activity, while only benzodiazepines affected the neuronal influence of the amygdaloid and septal areas on the hypothalamus.

Amygdala↗

Comparative metabolic study of nimetazepam and its desmethyl derivative (nitrazepam) in dogs.

1. Blood levels of nimetazepam after oral administration to dogs were relatively low at early periods after dosage and reached peak levels (7-7-7-9 mug equiv./ml) after 8 h. The time course of blood levels was similar after oral administration of its desmethyl derivative (nitrazepam) to dogs. Blood levels of the latter, however, were low compared with nimetazepam and reached a peak (5-2-6-3 mug equiv./ml) after 4 h. 2. Recoveries of nimetazepam in urine and faeces were 46 and 52% of the dose for 0-24 h, 27 and 34% for 24-48 h and 4 and 6% for 48-72 h, while those of its desmethyl derivative (nitrazepam) were 63 and 71% for 0-24 h, 12 and 21% for 24-48 h and 2 and 3% for 48-72 h. 3. At least four kinds of reaction were involved in the biotransformation of nimetazepam and its desmethyl derivative (nitrazepam): (i) demethylation at N-1 (ii) hydroxylation at C-3, (iii) subsequent glucuronic acid conjugation of 3-hydroxy derivatives and (iv) reduction of the nitro group at C-7 to an amino group. Reaction (i) proceeded very rapidly in dogs, so that the blood metabolites of nimetazepam were closely similar to those of nitrazepam. For both drugs, the major blood metabolite was nitrazepam. Reaction (ii) was rapidly followed by reaction (iii), and glucuronides were predominantly excreted in urine. Reaction (iv) as well as reaction (iii) are important in the excretion of both drugs. The subsequent acetylation of 7-amino group, however, did not occur in dogs as it did in mice and rats.

Animals↗

[Depressive effects of benzodiazepines on penicillin-induced epileptic discharges].

Effects of clonazepam, nitrazepam and diazepam on penicillin induced primary, spread and reactive epileptoform discharges were investigated in gallamine immobilized cats. Different strengths of seizure foci were induced by penicillin G 1000, 3000 and 6000 U injected into the cortex, amygdala and intralaminal thalamus, and the spread of epileptic discharges in the subcortex or surrounding area and to the contralateral area was followed. Benzodiazepines 5 mg/kg i.v. shortened the duration of primary epileptoform discharges and prolonged the interictal interval in the cortical, amygdaloid and intralaminal thalamic epileptogenesis induced by a high concentration of penicillin G. When a low concentration of penicillin G was injected into the cortex, amygdala and intralaminal thalamus, benzodiazepines abolished the spread of primary epileptoform discharges and the reactive discharges, but did not suppress completely the primary epileptogenic discharges and the contralateral reflective activity. Suppression of the discharges necessitated administration of a high dose. The greatest degree of suppression was seen with clonazepam. It is concluded that the anticonvulsive effect of benzodiazepines may be due to the blackades of neuronal pathways which spread the seizure discharges from the site of origin (focus) to the effector organ, and the elevation of convulsive thresholds.

Animals↗