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R Ishida

Publications and source records attributed to R Ishida.

At least 91 records · Page 5Linked to original sources

Inhibition of topoisomerase II by antitumor agents bis(2,6-dioxopiperazine) derivatives.

Several recently developed derivatives of bis(2,6-dioxopiperazine) have been shown to be new antitumor agents and are currently under clinical trials. We found that the mother compound of the bis(2,6-dioxopiperazine)s, ICRF-154, and its derivatives, ICRF-159, ICRF-193, and MST-16, are all inhibitors of mammalian type II DNA topoisomerase. By decatenation assay using kinetoplast DNA from Crithidia fasciculata, inhibition of purified calf thymus topoisomerase II by these compounds was investigated. Potency of inhibition was in the following order: ICRF-193 greater than ICRF-154 = ICRF-159 greater than MST-16. The doses giving 50% inhibition were 2, 13, 30 and 300 microM, respectively, for these compounds. ICRF-193, the most potent inhibitor, however, did not inhibit topoisomerase I at concentrations up to 300 microM. Addition of excess enzyme, but not of the substrate DNA, overcame the inhibition by ICRF-193. The drug did not stimulate the formation of cleavable complex between DNA and the enzyme. Furthermore, ICRF-193 even inhibited the formation of enzyme-mediated DNA cleavage induced by etoposide or 4'-[9-acridinylamino)methanesulfon-m-anisidide. These observations, together with the finding that ICRF-193 did not intercalate into DNA, suggest that ICRF-154 and related compounds are specific inhibitors of topoisomerase II with different modes of action: i.e., they interfere with some step(s) before the formation of the intermediate cleavable complex in the catalytic cycle. This is a property quite distinct from previously known cleavable complex-forming type topoisomerase II-targeting antitumor agents such as acridines, anthracyclines, and epipodophyllotoxins, but rather, mechanistically similar to the recently reported group of inhibitors that includes merbarone, aclarubicin, and fostriecin.

Antineoplastic Agents↗

Inhibition of intracellular topoisomerase II by antitumor bis(2,6-dioxopiperazine) derivatives: mode of cell growth inhibition distinct from that of cleavable complex-forming type inhibitors.

In the accompanying paper (K. Tanabe, Y. Ikegami, R. Ishida, and T. Andoh, Cancer Res., 51: 4903-4908, 1991), we showed that ICRF-154 and -193, dioxopiperazine derivatives, inhibited the activity of purified topoisomerase II, without formation of a cleavable DNA-protein complex. In order to see whether ICRF-154 and ICRF-193 affect cellular topoisomerase II in situ or not, we examined the effect of these drugs on etoposide (VP-16)-induced, topoisomerase II-mediated DNA breaks in RPMI 8402 cells by alkaline sedimentation analysis. When RPMI 8402 cells were exposed to VP-16 in the presence of ICRF-154 or ICRF-193 for 1 h, VP-16-induced DNA strand breaks were greatly inhibited by both ICRF compounds. In parallel with this observation, VP-16-induced growth inhibition was also reversed by ICRF-193. Exposure of cells to ICRF-154 resulted in a progressive accumulation of cells with 4C DNA content. Although mitotic index did not significantly increase, mitotic abnormalities were seen in cells exposed to ICRF-193 or ICRF-154: all mitotic cells exhibited early mitotic figures with fewer condensed and entangled chromosomes. The most sensitive phase of the cell cycle to ICRF-154 was the G2-M. ICRF-154 did not affect the spindle formation. However, abnormally oriented spindles were observed in drug-treated cells in parallel with the appearance of multinucleated cells. The results suggest that ICRF-154 and -193 inhibit topoisomerase II activity in RPMI 8402 cells, and this effect resulted in the appearance of cells in G2 and early M phase with fewer condensed and entangled chromosomes and of cells with multilobed nuclei.

Cell Cycle↗

Pharmacological study of TA-0910, a new thyrotropin-releasing hormone (TRH) analog (IV): Effects on experimental memory impairment in mice and rats.

The effects of a new TRH analog, TA-0910, orally administered, on experimental memory impairments for the one-trial passive avoidance response in anoxic mice (light-dark box), active avoidance response in basal forebrain (BF)-lesioned rats (shuttle box), and delayed alternation task in scopolamine-treated rats (T-maze) were studied. In mice, TA-0910 (3-30 mg) administered 60 min before the retention trial dose-dependently prolonged the passive avoidance response latency reduced by CO2-exposure that was given immediately after the acquisition trial, but not when it was given 60 min before the acquisition or just after the anoxic treatment. In rats, TA-0910 (0.3-3 mg/kg) administered 40-60 min before the test trial, dose-dependently prevented the reduction in mean avoidance rate caused by BF-lesioning and elevated the scopolamine (0.1 mg/kg, i.p.)-induced reduction in percent correct choice level in the alternation task. TRH (30-300 mg/kg), on the other hand, produced no improvements in any of the above tests. These results suggest that TA-0910 improves impaired memory by correcting the retrieval process of memory.

Administration, Oral↗

Pharmacological study of TA-0910, a new thyrotropin-releasing hormone (TRH) analog (II): Involvement of the DA system in the locomotor stimulating action of TA-0910.

The mechanism of the locomotor stimulating action of a new thyrotropin-releasing hormone (TRH) analog, TA-0910, was studied in rats. The locomotor stimulating action of TA-0910 (3 mg/kg) was inhibited by haloperidol or alpha-methyl-p-tyrosine (alpha-MT); slightly inhibited by phenoxybenzamine, prazosin, clonidine, or naloxone; not affected by propranolol, metergoline, or a low dose of scopolamine; and was enhanced by a high dose of scopolamine. The locomotor activity was increased by TA-0910 (0.3 mg/kg) in combination with methamphetamine, apomorphine, or L-DOPA under pretreatment with pargyline. A low dose of apomorphine inhibited the increase in locomotor activity induced by TA-0910 (3 mg/kg). The increase in locomotion was most notable and dose-dependent with the injection of 20 ng or more in the nucleus accumbens. The intravenous administration of TA-0910 produced dose-dependent and significant hyperlocomotion at 1 mg/kg or more. In the rats lesioned unilaterally in the nigrostriatal dopamine (DA) pathway by 6-hydroxydopamine, TA-0910 induced ipsilateral circling behavior at 3 mg/kg or more. This circling behavior was inhibited by haloperidol or alpha-MT. These results suggest that the locomotor stimulating action of TA-0910 is mediated primarily via the dopaminergic neuron, especially the nucleus accumbens of the mesolimbic DA system. Other possible mechanisms are also discussed.

Animals↗

Pharmacological study of TA-0910, a new thyrotropin-releasing hormone (TRH) analog (III): Inhibition of pentobarbital anesthesia.

Sites and mechanisms of the antagonistic action of TA-0910, a new thyrotropin-releasing hormone (TRH) analog, on pentobarbital anesthesia were studied in rats. Intravenous administration of TA-0910 dose-dependently shortened the duration of pentobarbital anesthesia at 30 micrograms/kg or more. The anti-anesthetic action of TA-0910 after intracerebral injection was in the following order of effectiveness: the posterior lateral hypothalamic area greater than midbrain reticular formation greater than raphe nuclei = locus ceruleus greater than anterior lateral hypothalamic area = ventral globus pallidus = hippocampus. TA-0910 injected into the nucleus accumbens, medial septal nucleus, parietal cortex or striatum had no effect, even at high doses. The anti-anesthetic action of TA-0910 (0.1 mg/kg, i.v.) was inhibited by a low dose of scopolamine or mecamylamine and by a high dose of haloperidol, phenoxybenzamine or metergoline. However, physostigmine and oxotremorine showed no anti-anesthetic action alone or in combination with TA-0910 (0.01 mg/kg, i.v.). Pentobarbital anesthesia was not inhibited by carbachol injected into various sites of the brain. These results suggest that the inhibitory effect of TA-0910 on pentobarbital anesthesia is mainly produced by activation of the posterior lateral hypothalamic area and the midbrain reticular formation, and that the involvements of not only acetylcholine but also other neurotransmitters such as dopamine, serotonin, and noradrenaline should be examined for their anti-anesthetic action.

Animals↗

Pharmacological studies on TA-6366, a new ACE inhibitor: II. Effect of long-term administration from the pre-hypertensive stage on blood pressure, relative heart weight and ACE activity of various tissues in spontaneously hypertensive rats (SHRs).

The long-term oral administration of TA-6366 (5 mg/kg/day) from 4-weeks old impeded the genetic hypertension development with only a slight decrease in heart rate in spontaneously hypertensive rats (SHRs). However, the lower dose (1 mg/kg/day) of TA-6366 did not affect the development, but it lowered blood pressure after the development was almost accomplished. Concomitantly, relative heart weights in both the groups were markedly decreased to almost the same degree. The reduction of ACE activity in the aorta, brain and lung of both groups was found at 24 hr after the final administration, particularly at the 5 mg/kg/day dose; and that of the aorta was kept at almost the same low level even on the 9th day after withdrawal. After withdrawal of TA-6366 (5 mg/kg/day), the significant decrease in blood pressure was sustained at least for 10 weeks. The beneficial effect of TA-6366 on the hypertension development in SHRs seems to be related to its strong and long-lasting ACE inhibition, especially in the vasculature.

Administration, Oral↗

Toxicokinetic study of norfloxacin-induced arthropathy in juvenile animals.

A toxicokinetic study of norfloxacin-induced arthropathy in juvenile animals was undertaken using nalidixic acid as a standard drug. Norfloxacin and nalidixic acid were subcutaneously administered to rats and rabbits, orally administered to dogs, and norfloxacin was orally dosed to monkeys once a day for 7 consecutive days. Of the dose levels tested, the minimum arthropathic doses of norfloxacin were 100, 25, and 50 mg/kg/day in rats, rabbits, and dogs, respectively. At these doses, the peak serum concentrations (Cmax) on Day 6 were 16.1, 9.73, and 5.11 micrograms/ml, and the areas under the serum concentration/time curve (AUC0----infinity) were 31.9, 22.9, and 26.2 micrograms.hr/ml, in respective animals. Monkeys showed no arthropathy with norfloxacin at doses of less than 500 mg/kg/day, at which the Cmax and AUC0----infinity were 15.6 micrograms/ml and 103 micrograms.hr/ml, respectively. The minimum arthropathic doses of nalidixic acid were 50, 100, and 25 mg/kg/day in rats, rabbits, and dogs, respectively. The Cmax and AUC0----infinity of nalidixic acid were higher than those of norfloxacin in all animals. Joint tissues took up more norfloxacin than nalidixic acid, but when arthropathy was present the articular cartilage concentrations of the two drugs were in the same range. The penetration of norfloxacin into the articular cartilage was the same regardless of the joint's anatomical locations, but differed among species, being highest in rats and lowest in monkeys. The Cmax and AUC0----infinity of norfloxacin in animals at their arthropathic doses were far higher than those measured clinically in children, whereas those of nalidixic acid in animals did not differ much from its clinical parameters.

Administration, Oral↗

Synthesis and central nervous system actions of thyrotropin-releasing hormone analogues containing a dihydroorotic acid moiety.

A series of thyrotropin-releasing hormone (TRH) analogues in which the pyroglutamic acid residue was replaced by (S)-4,5-dihydroorotic acid (Dio-OH) and the related derivatives were prepared. Their central nervous system actions based on spontaneous locomotor activity, antagonistic effect on reserpine-induced hypothermia, and antagonistic effect on pentobarbital anesthesia were evaluated and the structure-activity relationships are discussed. Of these, (1-methyl-(S)-4,5-dihydroorotyl)-L-histidyl-L-prolinamide (14b) showed the most potent activities, which were 30-90 times greater than those of TRH. Moreover, the thyrotropin-releasing activity of 14b was about 50 times weaker than that of TRH, and compound 14b (TA-0910) was selected as a potent candidate.

Anesthesia↗

Differences in induction of sister chromatid exchanges in MNNG-resistant HeLa S3 Mer- cell lines.

All N-methyl-N'-nitro-N-nitrosoguanidine (MNNG)-resistant (MR) cell lines of HeLa S3 Mer- cells tested were found to be defective in O6-methylguanine-DNA methyltransferase and more sensitive than HeLa Mer+ cells to 1-(4-amino-2-methyl-5-pyrimidinyl)methyl-3-(2-chloroethyl)-1-nitroso-ure a, like the parental HeLa S3 Mer- cells. MR10-1 and MR1-3 cells were also highly resistant to induction of sister chromatid exchanges (SCEs) by MNNG, while MR6, MR8 and MR11 cells were slightly resistant to SCE induction, MR10-1 and MR1-3 cells showed higher spontaneous mutation rates than the parental cells. These results indicated that there are at least two types of MR cells. All MR cells were more sensitive than HeLa S3 Mer- cells to 6-hydroxyamino purine.

Cell Survival↗

Pharmacological studies on (4S)-1-methyl-3-[(2S)-2-[N-((1S)-1-ethoxycarbonyl-3-phenylpropyl)amino] propionyl]-2-oxo-imidazolidine-4-carboxylic acid hydrochloride (TA-6366), a new ACE inhibitor: I. ACE inhibitory and anti-hypertensive activities.

TA-6366 and its active metabolite 6366A inhibited swine renal angiotensin converting enzyme (ACE) activity with IC50s of 9900 and 2.6 nM, respectively. TA-6366 (0.05-0.5 mg/kg, p.o.) inhibited the angiotensin I (AT-I)-induced pressor response in rats. 6366A augmented bradykinin (BK)-induced contraction of guinea pig ileum more potently than captopril. However, when the augmentation on BK-induced hypotension in rats was used as an indicator, TA-6366 was less active than captopril. TA-6366 increased plasma renin activity and plasma AT-I concentration. Oral administration of TA-6366 lowered the blood pressure in two-kidney one-clip renal hypertensive rats at 0.5 to 2 mg/kg and in spontaneously hypertensive rats (SHRs) at 2 to 10 mg/kg. The antihypertensive effect of TA-6366 was approximately 5 times more potent than that of captopril and almost as potent as that of enalapril. In SHRs, the antihypertensive action of TA-6366 was intensified in potency when administered repeatedly. The duration of action was longer than those of captopril and enalapril. However, TA-6366 had no substantial effect on the blood pressure in DOCA/saline hypertensive rats. These results indicate that TA-6366 is a potent and long lasting antihypertensive agent and that its antihypertensive action is attributable to the inhibition of ACE.

Angiotensin-Converting Enzyme Inhibitors↗

Pharmacological study of TA-0910, a new thyrotropin-releasing hormone (TRH) analog, (I): Effects on the central nervous system by oral administration.

Effects of orally administered TA-0910, a new thyrotropin-releasing hormone (TRH) analog, on the central nervous system (CNS) were investigated and compared with those of TRH. TA-0910 shortened the duration of pentobarbital-induced sleep and antagonized reserpine-induced hypothermia at 0.3 mg/kg or more in mice. TA-0910 enhanced the spontaneous motor activity at the higher dose of 30 mg/kg in mice. The drug also activated acute spontaneous EEGs in rabbits at 1 mg/kg. TRH produced these effects at about 100 times higher doses than TA-0910. In antagonizing pentobarbital-induced sleep, the dose ratios of i.v. versus p.o. of TA-0910 and TRH were about 1/10 and 1/100, respectively. The duration of the antagonistic action of TA-0910 on pentobarbital-induced sleep in mice was about 8 times longer than that of TRH when administered orally as well as intravenously. These potent and long-acting TA-0910 effects on the CNS are discussed in connection with its biotransformation.

Administration, Oral↗

[Frequency of the developmental disturbances of tooth structure].

In permanent and deciduous dentitions, the frequency of congenitally missing teeth, supernumerary teeth, conical teeth, fused teeth, germinate teeth, abnormal tubercles (basal ridge of incisor or canine, central cusps of molars, Carabelli's cusp, protostylid, and para-molar tubercles), and enamel hypoplasia (white spots, pigmentation, and enamel defects) were surveyed. Furthermore, mesio-distal and bucco-lingual dimensions of the crowns were measured and the relationship between developmental disturbances of dental hard tissue and tooth size was examined. For the deciduous dentition, the frequency of children with congenitally missing teeth, conical teeth and fused teeth was 7.2%, 1.1% and 5.3%, respectively. Enamel hypoplasia appears with the following frequency; white spots (16.0%), pigmentation (6.4%), and enamel defects (5.2%). Mesio-distal widths of the upper canine and lower lateral incisors of the children with congenitally missing teeth was significantly smaller than the standard values. For the permanent dentition, congenitally missing teeth, conical teeth and fused teeth were detected in 5.7%, 3.0%, and 0.5% of the children, respectively. The frequency of children with basal ridge, central cusps, Carabelli's cusp, protostylid, and para-molar tubercles was respectively, 1.1%, 2.6%, 7.1%, 0.3% and 1.3%. Children with central cusps or Carabelli's cusp tended to have larger crowns, while children with congenitally missing teeth or conical teeth tended to have smaller teeth. As for enamel hypoplasia, white spots were detected in 24.9% of the children, and pigmentation was in 8.1%, and enamel defects were in 9.2%. These results indicate that abnormality of tooth number and tooth morphology correlate with the tooth size and this tendency is more striking in permanent dentition than in deciduous dentition.

Child↗

Biochemical and genetic analysis of toxic effect of HOE 15030 in mammalian cells.

HOE 15030 inhibited the growth of BHK cells at concentrations that did not inhibit their nuclear DNA and RNA syntheses. When BHK cells were cultured in the presence of 30 micrograms/ml of HOE 15030, cells were arrested in the G1 phase after one or two cell divisions. After removal of the drug, cells progressed through the G1 to the S phase. HOE 15030 inhibited the activities of both topoisomerases I and II in vitro. To determine the target molecule of HOE 15030 in cells, we isolated a HOE 15030-resistant (HOEr) mutant of BHK cells. The HOEr cells exhibited cross-resistance to ethidium bromide, acriflavine, and rhodamine 123, and slight cross-resistance to 4'-dimethylepipodophyllotoxin-4-(4,6-O-ethylidine-beta-D-glu copyranoside) (VP-16) and adriamycin, but not to chloramphenicol, oligomycin, novobiocin, colchicine, or vinblastine. The uptake and retention of rhodamine 123 by HOEr cells were lower than those by BHK cells. Mitochondrial DNA synthesis of HOEr cells was more resistant to HOE 15030 and ethidium bromide than that of wild-type cells. These results indicate that the resistance of HOEr cells to drugs is due to reduced uptake or accumulation of the drugs by mitochondria and suggest that the mitochondria are the main target of HOE 15030 in cells.

Amidines↗

Sister-chromatid exchanges (SCEs), cell survival and mutation in HeLa s3 cells with different sensitivity to alkylating agents; evidence that SCE induction and cell survival or mutation induction are dissociable.

We previously isolated N-methyl-N'-nitro-N-nitrosoguanidine (MNNG)-resistant cells, MR from HeLa S3 Mer- cells. In the present study, we have isolated 1-(4-amino-2-methyl-5-pyrimidinyl)methyl-3-(2-chloroethyl)-3-nitrosourea (ACNU)-resistant cells, ACr. The MR cells had only a little O6-methylguanine-DNA methyltransferase (MT) activity, while the ACr cells had increased MT activity and also became resistant to the cytotoxic effect of MNNG. We compared the induction of sister-chromatid exchanges (SCEs), cell survival and mutation in these HeLa S3 cells with different sensitivity to MNNG. The ACr cells were much more resistant than the parental HeLa S3 Mer- cells to cytotoxicity, mutagenicity and SCE induction by MNNG, showing a positive correlation between SCE induction and cell killing or mutation. In contrast, this positive relationship was not observed between HeLa S3 Mer- and MR cells. These results suggest that O6-methylguanine (O6-MeG) is involved in the induction of the biological effects of MNNG such as cytotoxicity, mutagenicity and SCEs, and also indicate that SCE induction does not always correlate with cell killing and mutation.

Alkylating Agents↗

Studies on angiotensin converting enzyme inhibitors. 4. Synthesis and angiotensin converting enzyme inhibitory activities of 3-acyl-1-alkyl-2-oxoimidazolidine-4-carboxylic acid derivatives.

(4S)-1-Alkyl-3-[[N-(carboxyalkyl)amino]acyl]-2-oxoimidazolidine-4- carboxylic acid derivatives (3) were prepared by two methods. Their angiotensin converting enzyme (ACE) inhibitory activities and antihypertensive effects were evaluated, and the structure-activity relationships were discussed. The dicarboxylic acids 3a-n possessing S,S,S configuration showed potent in vitro ACE inhibitory activities with IC50 values of 1.1 X 10(-8)-1.5 X 10(-9) M. The most potent compound in this series, monoester 3p, had an ID50 value of 0.24 mg/kg, po for inhibition of angiotensin I induced pressor response in normotensive rats and produced a dose-dependent decrease in systolic blood pressure of spontaneously hypertensive rats (SHRs) at doses of 1-10 mg/kg, po.

Angiotensin-Converting Enzyme Inhibitors↗

Synthesis and central nervous system actions of thyrotropin-releasing hormone analogs containing a 1-substituted 2-oxoimidazolidine moiety.

A series of thyrotropin-releasing hormone (TRH) analogs in which the pyroglutamic acid residue was replaced by (S)-2-oxoimidazolidine-4-carboxylic acid (Oic-OH) and the related derivatives was prepared, and the central nervous system (CNS) actions were examined. Of these, 1-benzyl-Oic-His-Pro-NH2 (2c) showed the most potent activities, which were 1.5-8 times greater than those of TRH. Moreover, the thyrotropin (TSH)-releasing activity of 2c was about 1/16 times weaker than that of TRH.

Animals↗