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Biomedical subjects

S Nakaike

Publications and source records attributed to S Nakaike.

At least 37 records · Page 2Linked to original sources

Aragusterol C: a novel halogenated marine steroid from an Okinawan sponge, Xestospongia sp., possessing potent antitumor activity.

A novel chlorinated steroid, aragusterol C, was isolated from an Okinawan marine sponge of the genus Xestospongia. The compound strongly inhibited the proliferation of KB cells in vitro, and also showed potent in vivo antitumor activity against L1210 cells in mice. The complete structure of aragusterol C was determined by spectroscopic analysis and X-ray crystallographic analysis.

Animals↗

The effect of NC-190, a novel antitumor compound, on the cell-cycle progression of HeLa S3 cells.

A novel antitumor compound, N-beta-dimethylaminoethyl 9-carboxy-5-hydroxy-10-methoxybenzo[a]phenazine-6-carboxamide sodium salt (NC-190), has potent antitumor activity against in vivo and in vitro tumor models. In this study, we evaluated the cell-cycle effect of NC-190 on cultured HeLa S3 cells using DNA/bromodeoxyuridine(BrdU) bivariate flow-cytometric analysis. Continuous treatment with NC-190 for 72 h inhibited the growth of cultured HeLa S3 cells in a concentration-dependent manner. Its 50% growth-inhibitory concentration (IC50) was 0.039 micrograms/ml (0.085 microM). The cell-cycle effects of NC-190 were dependent on the drug concentration and the treatment period. Continuous treatment with a low concentration (0.1 micrograms/ml) of NC-190 inhibited cell-cycle progression from the G2 to the M phase, resulting in G2 accumulation. With increasing concentration, NC-190 delayed cell-cycle traverse in the S and G2 phases. At a higher (10 micrograms/ml) concentration of NC-190, cell-cycle traverse was prevented in the G1, S, and G2 phases. Under such conditions, NC-190 increased the numbers of S0-phase cells (the cells with DNA content corresponding to that of S-phase cells, but without BrdU incorporation). Treatment for 2 h with NC-190 at 10 micrograms/ml induced the accumulation of cells in the G2 phase, and cell debris was observed at 48 and 72 h after drug treatment. During this time, the proportion of cells in the S0 phase increased up to 19.2%. The colcemid-induced mitotic cell accumulation was delayed by NC-190 at a concentration of 0.1 micrograms/ml at 4 h after the addition of the drugs. The addition of higher concentrations (1 and 10 micrograms/ml) of NC-190 inhibited the increase in the mitotic fraction completely. These results indicate that the mechanism involved in the G2 arrest and the increment of S0-phase cells caused by NC-190 is associated with this compound-induced cell death.

Antineoplastic Agents↗

Cell-killing activity and kinetic analysis of a novel antitumor compound NC-190, a benzo[a]phenazine derivative.

A novel antitumor compound, N-beta-dimethylaminoethyl 9-carboxy-5-hydroxy-10-methoxybenzo[a]-phenazine-6-carboxamide sodium salt (NC-190), was evaluated for antitumor activity in vitro against cultured tumor cell lines, and the kinetics of cell killing was elucidated. NC-190 strongly inhibited the growth of all of 3 murine tumor cell lines, 7 human tumor cell lines and 2 normal cell lines. With continuous exposure, the 50% inhibition concentrations were in the range of 0.005-0.06 micrograms/ml, except for KATO-III (2.15 micrograms/ml). By colony-forming assay, concentrations of NC-190 giving 90% cell kill (IC90) at various exposure times were obtained with HeLa S3 cells. The plot of IC90-exposure time on a log-log scale was linear for NC-190 with a slope of -1, which is typical for cell cycle phase-nonspecific agents. A 2 h treatment with NC-190 induced a rapid reduction in cell viability at doses of more than 3 micrograms/ml. At the dose where colony formation was completely inhibited, cell viability was persistently reduced to below 20% during the cell culture period. NC-190 caused a dose- and time-dependent reduction in DNA synthesis. The inhibitions of RNA and protein synthesis were less than that of DNA synthesis. Spectroscopic studies of NC-190 mixed with calf thymus DNA demonstrated that NC-190 was capable of interacting with DNA. However, DNA thermal denaturation studies suggested that intercalation of NC-190 was weak in comparison with those of classical intercalating drugs.

Animals↗

A benzophenazine derivative, N-beta-dimethylaminoethyl 9-carboxy-5-hydroxy-10-methoxy-benzo[a]phenazine-6-carboxamide, as a new antitumor agent against multidrug-resistant and sensitive tumors.

NC-190, a benzophenazine derivative (N-beta-dimethylaminoethyl 9-carboxy-5-hydroxy-10-methoxy-benzo[a]phenazine-6-carboxamide), was effective against multidrug-resistant human and mouse tumor cells in vitro and in vivo. When vincristine (VCR)-resistant P388 leukemia-bearing mice were treated with an optimal dose of NC-190, four of six mice were cured, whereas treatment of mice with VCR resulted in only a marginal increase in life span. The compound also showed chemotherapeutic effect against Adriamycin-resistant P388 leukemia-bearing mice and was effective against various multidrug-resistant human and murine tumor cells in vitro. Its cytotoxicity to multidrug-resistant K562 cells was not enhanced by the addition of verapamil. The accumulation of NC-190 in multidrug-resistant K562 cells was slightly lower than that observed in sensitive K562 cells; the compound did not efficiently inhibit the binding of VCR to the plasma membrane of resistant cells, indicating that NC-190 has little affinity for P-glycoprotein. NC-190 inhibited the activity of DNA topoisomerase II. These observations suggest that NC-190 (1) is not transported out of resistant cells by P-glycoprotein and (2) inhibits DNA topoisomerase II activity in the cells, resulting in its likely effectiveness against various multidrug-resistant tumor cells.

Animals↗

In vivo activity on murine tumors of a novel antitumor compound, N-beta-dimethylaminoethyl 9-carboxy-5-hydroxy-10-methoxybenzo[a]phenazine-6-carboxamide sodium salt (NC-190).

A novel antitumor compound, N-beta-dimethyl-aminoethyl 9-carboxy-5-hydroxy-10-methoxybenzo[a]-phenazine-6-carboxamide sodium salt (NC-190) was evaluated for its antitumor activity in experimental murine tumor systems. In the initial studies with P388 leukemia (i.p.-i.p.), NC-190 led to an increase of greater than 200% in life span (ILS), and 75% of the mice were alive on day 30, when the optimal dose (50 mg/kg, days 1-5) was given. Additionally, the compound had significant activities against i.p. inoculated mouse L1210 leukemia, B16 melanoma, M5076 reticulum cell sarcoma, sarcoma 180, mouse hepatoma MH134, and rat Yoshida sarcoma and Yoshida ascites hepatoma AH130. The optimal dose resulted in a greater than 280% ILS with a 30-day survival of 50% in mice with L1210 leukemia (100 mg/kg, days 1-5), a 156% ILS in mice with B16 melanoma (50 mg/kg, days 1-5), a 98% ILS with a 90-day survival of 25% in mice with M5076 reticulum cell sarcoma (25 mg/kg, days 1, 5, 9, and 13), a greater than 300% ILS with a 60-day survival of 50% in mice with sarcoma 180 (50 mg/kg, days 3-10), a 148% ILS with a 60-day survival of 25% in mice with MH134 (25 mg/kg, days 1-5), a 129% ILS with a 60-day survival of 12.5% in rats with Yoshida sarcoma (12.5 mg/kg, day 3-10), and a greater than 161% ILS with a 60-day survival of 50% in rats with AH130 (6.3 mg/kg, days 3-10). In the experiments with s.c. inoculated tumors, NC-190 not only inhibited tumor growth, but also increased the life span of mice with Lewis lung carcinoma or B16 melanoma. The 60-day survivors accounted for 60% and 30% in mice with Lewis lung carcinoma and B16 melanoma, respectively. The compound significantly inhibited the spontaneous lung metastasis of Lewis lung carcinoma by more than 90% when eight daily i.v. injections were given. NC-190 was active by the i.p., s.c., and i.v. routes. Five consecutive daily i.p. doses (days 1-5) were more effective than a single dose (day 1), two doses (days 1 and 5), or three doses (days 1, 5, and 9). NC-190 warrants further study as a potential antineoplastic agent against human neoplasms, as it has a broad spectrum of antitumor activity and inhibits metastasis.

Animals↗

[Long-term administration study on TE-031 (A-56268) in the treatment of diffuse panbronchiolitis].

TE-031 (A-56268), a new macrolide antibiotics, was administered on a long-term basis (6 months) to 12 patients with diffuse panbronchiolitis (DPB). The causative microorganism was identified as H. influenzae in 5 cases, P. aeruginosa in 4 cases and B. catarrhalis in one case. The clinical picture of those patients was monitored, and some basic studies were also carried out. Clinically, all of the patients showed improvement in the symptoms and the various laboratory test values. Bacteriologically, as well, both H. influenzae and B. catarrhalis were eradicated. In addition, P. aeruginosa was eradicated from 2 of the 4 cases, reduced in one case and unchanged in one case. However, even in that one case in which P. aeruginosa was unchanged, the disease symptoms were alleviated. There were no instance of microbial replacement. In spite of the long-term administration of TE-031, There were no side effects. As the basic study, the DPB patients were examined for the presence of antibodies directed at viruses having affinity for the respiratory organs. It was found that a high percentage of the patients showed a high titer of antibodies for influenza virus type III and type II. It was thus surmised that it is likely that viral infection is involved in the progress of this disease. From the standpoint of the progress of DPB, the NK activity was investigated as part of the natural host defense mechanisms. It was found that, compared with healthy controls, the level of NK activity was higher in DPB patients and that it was even higher in patients on long-term TE-031 administration.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Combined use of alpha-difluoromethylornithine and an inhibitor of S-adenosylmethionine decarboxylase in mice bearing P388 leukemia or Lewis lung carcinoma.

The antitumor and antimetastatic effects of alpha-difluoromethylornithine (DFMO), an inhibitor of ornithine decarboxylase, combined with an inhibitor of S-adenosylmethionine decarboxylase, either methylglyoxal bis(guanylhydrazone) (MGBG) or ethylglyoxal bis(guanylhydrazone) (EGBG), were studied in mice bearing P388 leukemia or Lewis lung carcinoma. Although EGBG is a more specific inhibitor of polyamine biosynthesis than the widely used MGBG, the antitumor effect of the DFMO-EGBG combination on P388 leukemia-bearing mice was less than that of the DFMO-MGBG combination. The prolongation of survival time by the DFMO(1000 mg/kg)-MGBG(25 mg/kg) combination was 2.65-fold, while that of the DFMO(1000 mg/kg)-EGBG(50 mg/kg) combination was 1.34-fold. When mice were fed a polyamine-deficient diet, stronger antitumor effects were exerted; the prolongation of survival time by the DFMO-MGBG and the DFMO-EGBG combinations was 2.89-fold and 2.03-fold, respectively. The antitumor effect of combined use of the two polyamine antimetabolites with mice on normal and polyamine-deficient diets correlated with a decrease of polyamine charge contents in the tumor cells. The above in vivo results were confirmed clearly in the KB cell culture system. The antimetastatic activity of DFMO on Lewis lung carcinoma-bearing mice was strengthened by the addition of MGBG or EGBG. The antimetastatic activity of the DFMO-MGBG or DFMO-EGBG combination did not parallel the polyamine charge contents in the primary tumor and blood.

Adenosylmethionine Decarboxylase↗

Prolonged survival time of sarcoma 180-bearing mice treated with lipid microspheres-entrapped antitumor marine coral prostanoids.

Antitumor marine coral prostanoids (clavulone II and chlorovulone I) were entrapped into lipid microspheres of 0.2 micron diameter to make lipo-drugs. Daily treatment with lipo-chlorovulone I (1.6 mg/kg/day, i.p.) and lipo-clavulone II (12.5 mg/kg/day, i.p.) on days 1 through 5 markedly prolonged the survival time (135% ILS and 73% ILS, respectively) of mice inoculated with sarcoma 180 as compared with that of a corresponding dose of respective free chlorovulone I and clavulone II. These results suggest that lipid microspheres may be used as drug delivery carriers for antitumor coral prostanoids in vivo.

Animals↗

Immunopharmacological studies of new 3-benzoyl-4-mercaptobutyric acid derivatives. II. Immunosuppressive effects.

A number of D-penicillamine (PA) derivatives (3-benzoyl-4-mercaptobutyric acids) with an acetylthio group on the gamma-position of the carboxylic acid were synthesized. Their immunological effects were examined and compared with PA and other immunosuppressors. PA derivatives suppressed adjuvant-induced arthritis in SD and Lewis rats, suppressed delayed-type hypersensitivity and IgE antibody response in mice, and prolonged the survival time of NZBXNZW F1 hybrid (BWF1) mice, as did immunosuppressors. In vitro, PA derivatives suppressed lymphocyte transformation and the proliferation of KB cells. 4-Acetylthio-3-[-4-(4-chlorophenyl)benzoyl]butyric acid was the most effective of the PA derivatives. Thus, these PA derivatives with an acetylthio group on the gamma-position of the carboxylic acid showed immunosuppressive effects and, furthermore, substitution of the halogen atom on the phenyl group increased immunosuppressive activities.

Animals↗

Studies of D-penicillamine on strain variability and lymph node cellularity in adjuvant arthritis.

Experiments were performed in order to ascertain the action of D-penicillamine (PA) on adjuvant arthritis (AA) in rats and to develop a quantitative evaluation method for PA-like drugs, using Lewis, SD, and Wistar rats. Rats were inoculated in the tail with 0.6 mg of Mycobacterium butyricum suspended in 0.1 ml of liquid paraffin. PA apparently induced enhancement of arthritis only in Lewis rats with a good reproducibility. The enhancing effect of PA was seen when it was administered during the period from day -7 to day -1, from day 0 to day 6, or from day 14 to day 20. In control group of Lewis and Wistar rats, adjuvant caused a rapid increase in the cell number of lymph nodes just after the inoculation, and also a marked increase in spleen cells coinciding with the development of arthritis. In PA-treated Lewis rats, the cell numbers of lymph nodes and spleen significantly surpassed those of control rats. However, PA induced no difference from control in Wistar rats, which were not sensitive to PA treatment during the course of arthritis. These results indicate that AA in Lewis rats is a good model for evaluating the activities of PA-like drugs and that PA may affect lymphocytes in lymph nodes and spleen and induce severer arthritis in Lewis rats.

Animals↗

[Anti-inflammatory activity of a non-steroidal anti-inflammatory agent, oxaprozin, in experimental models].

Anti-inflammatory activity and mode of action of oxaprozin, a new non-steroidal anti-inflammatory agent, were investigated in experimental animal models and in vitro tests. Anti-inflammatory potency of oxaprozin was almost equal to that of aspirin in acetic acid vascular permeability, carrageenin hind paw edema, cotton pellet granuloma and adjuvant arthritis tests in rats. On the other hand, in mice, oxaprozin was more potent than aspirin, ibuprofen and phenylbutazone, and it was as potent as sulindac and fenbufen in acetic acid vascular permeability and carrageenin hind paw edema tests. In adrenalectomized rats, the anti-edema activity of oxaprozin in the carrageenin hind paw edema test was the same as that in intact rats. Oxaprozin inhibited erythema formation induced by ultra-violet rays in guinea pigs. The inhibitory potency of oxaprozin against prostaglandin E2 biosynthesis in vitro was equal to that of ibuprofen. Oxaprozin showed a concentration-dependent inhibition of heat-induced denaturation of bovine serum albumin and lysis of rabbit erythrocytes in vitro. However, oxaprozin did not inhibit rat hind paw edemas induced by dextran, formalin and serotonin. It was suggested from these results that the mode of action of oxaprozin is similar to those of other acidic non-steroidal anti-inflammatory drugs. Ulcerogenicity of oxaprozin was weaker than those of phenylbutazone and aspirin in rats. Species differences in the metabolic rate of oxaprozin were shown. The blood concentration of oxaprozin in rats is extremely low because the metabolic rate of oxaprozin is rapid in rats. Therefore, in rats, oxaprozin exhibited a weak anti-inflammatory effect. However, in mice, oxaprozin had a low metabolic rate, and the effect of oxaprozin was as potent as sulindac and fenbufen. The elimination half-life of oxaprozin is extended, 49 to 69 hr, in humans. It was suggested from these findings that oxaprozin is a potent and long acting anti-inflammatory drug in clinical use.

Animals↗

Immunopharmacologic studies of D-penicillamine-L-cysteine disulfide.

Effects of D-penicillamine-L-cysteine disulfide (P-C) on some immunological parameters were examined in normal and immunity-impaired mice and rats. P-C enhanced the DNA synthesis in concanavalin A-stimulated mouse spleen cell cultures in vitro. In vivo, administration of P-C produced either enhancement or depression of plaque forming cell (PFC) response and delayed type hypersensitivity (DTH) to sheep red blood cells (SRBC) in low responder mice to SRBC, depending on the dose of P-C. P-C restored the impaired PFC response in hydrocortisone-pretreated mice. The enhancing effect of P-C was not shown in high responder mice to SRBC, but an inhibiting effect was observed. P-C inhibited the suppressor cell induction on PFC response in mice immunized with a supraoptimum dose of antigen. In adjuvant arthritic rats, P-C induced severe arthritis by eliminating the suppressor cells regulating this disease process. The relevance of these findings and mode of action of D-penicillamine in rheumatoid arthritis is discussed.

Animals↗

[Pharmacological study on hydrocortisone 17-butyrate 21-propionate (author's transl)].

The topical and systemic anti-inflammatory activities of hydrocortisone 17-butyrate 21-propionate (HBP) were studied. The systemic anti-inflammatory activities of HBP and reference steroids were examined for their effects on dinitrochlorobenzene dermatitis, carrageenin edema, cotton pellet granuloma and adjuvant arthritis in rats and by the delayed allergic edema test in mice. The topical anti-inflammatory activities of these steroids were examined for their effects on croton oil dermatitis, croton oil ear edema, carrageenin edema and cotton pellet granuloma in rats. Furthermore, effects of these steroids on liver glycogen deposition in mice, thymolysis, and decrease of serum corticosterone level in rats were examined. Systemically administered HBP was less potent than betamethasone 17-valerate (BV), but was almost equal to hydrocortisone 17-butyrate (HB) in anti-inflammatory activity, and its effects on liver glycogen deposition, thymolysis, and the decrease of serum corticosterone level. However, the topical anti-inflammatory activity of HBP was more potent than that of BV and HB, although in the same experiment, thymolytic activity of HBP was less potent than that of BV, but was almost equal to HB. The inhibitory effect of HBP on hypotonic induced hemolysis was weaker than that of BV, but was stronger than that of HB in vitro. The affinity of HBP was higher than that of BV and HB to polymorphonuclear leucocytes used as the inflammatory cells in vitro. On the other hand no marked difference was observed in the affinity to erythrocytes used as the non-inflammatory cells in vitro. These results suggest that HBP is a useful drug which has superior topical anti-inflammatory activity, but has a weak systemic effect.

Animals↗

[Studies on antigenicity, phototoxicity and other specific toxicities of hydrocortisone 17-butyrate 21-propionate (HBP) (author's transl)].

The present experiments were undertaken to determine the antigenicity and other toxicities of HBP; such as phototoxicity, photosensitivity, ulcerogenicity, adrogenic-myotropic, estrogenic and progestational activities, and mutagenicity. No antibody formation and delayed type skin reaction of HBP were seen in rabbits. Active systemic anaphylaxis was not observed in guinea pigs challenged by HBP. In the phototoxicity and photosensitivity test, 0.1% HBP ointment, 0.1% HBP cream and 10% HBP acetone solution did not show any skin reaction with or without irradiation of ultraviolet light. Repeated subcutaneous administration of HBP irritated the gastric and intestinal mucosa dose dependently in rats as hydrocortisone 17-butyrate and betamethasone 17-valerate (BV). HBP had neither androgenic-myotropic nor estrogenic activity, but antiestrogenic activity was observed. The progestational activity of HBP in immature rabbit pretreated with estrone was less potent than BV. In the mutagenicity test os HBP investigated by the reverse mutation according to the method by Ames, no significant increase in the number of revertants was observed in the presence or absence of S9 mixture.

Administration, Topical↗

[Studies of D-penicillamine (5): effects on rat adjuvant arthritis (author's transl)].

D-Penicillamine (D-PA), 80-100 mg/kg/day enhanced the early phase of adjuvant arthritis (AA) in rats when it was administered orally for about 4 weeks after the adjuvant injection day, whereas dexamethasone (1 mg/kg/day, p.o.) and chloroquine diphosphate (25 mg/kg/day, p.o.) inhibited AA in the same dosing regimen. On the other hand, subcutaneous injection of sodium aurothiomalate (12.5 mg/kg/day) enhanced AA initially, but inhibited it later. The enhancing effect of D-PA on the early phase of AA was observed also at doses of 50 mg/kg/day and 200 mg/kg/day, but, in the case of 200 mg/kg/day, inhibited the later phase of AA. When the administration of D-PA was started before the adjuvant injection, it showed a tendency to suppress AA on proportion to the dosing period. The effect of D-PA, however, was not observed in the model when the drug administration was started after the establishment of arthritis. The co-administration pyridoxine HCl did not influence the effect of D-PA on AA. A good correlation was not obtained between the inflammatory score and the PPD induced skin reaction, serum metals level and histopathological changes of lymph node in the AA rats treated with D-PA. Thus the effect of D-PA on AA was related to dose, timing and duration of the administration. It was suggested that the enhancing and inhibitory effects of D-PA on AA were not based on vitamin B6, depletion, but rather were caused by inhibition of T1 and T2 lymphocytes which may be regulating this arthritis process.

Administration, Oral↗