[Amyloid deposition and elastic fibers in macular amyloidosis].
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Biomedical subjects
Publications and source records attributed to M Yanagihara.
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Fifty to 500 mg/kg doses of the cephem antibiotics were intravenously injected to male rats twice a day for 3 days. After the last injection, the rats were fasted for 17 hours and then orally administered 2 g/kg or 20% ethanol. The blood levels of ethanol and acetaldehyde (AcH) were determined by gas chromatography. Cefotiam, cefsulodin, and cefazolin did not affect the blood levels of ethanol and AcH as compared with those of the control. Cefmetazole, cefamandole, and cefoperazone did not change the blood ethanol level, but these antibiotics increased the blood AcH level dose-dependently. Cefamandole was especially able to sustain a high blood AcH level for over 8 hours. All of the antibodies which increased blood AcH levels contain the 1-methyl-1H tetrazole-5-thiol (TZ) group in their chemical structure. Intravenous injection of TZ caused a significant increase of the blood AcH level without influence on the blood ethanol level. 1-(2-Dimethyl-aminoethyl 1H-tetrazole-5-thiol (MTZ), the functional group which is contained in cefotiam, did not affect the blood levels of ethanol and AcH. These results suggested that the disulfiram-like reaction of cefmetazole, cefamandole, and cefoperazone results from an increase of the blood AcH level, and the 3-substituent group in in aminocephalosporanic acid, i.e., TZ, is an important factor for the reaction.
We reported in our previous paper that TN-762, a potent inhibitor of prostaglandin biosynthesis, has marked inhibitory activity on acute experimental inflammation. In this paper, the anti-inflammatory, analgesic, and antipyretic activities of TN-762 were assessed in animal models, and compared with those of indomethacin, ketoprofen and ibuprofen. TN-762 inhibited the sustained paw edema induced by mustard in rats during administration for 3 days, but after final administration, the inhibitory activity was decreased rapidly and was less then that of ketoprofen and indomethacin. TN-762 also inhibited the proliferation of granuloma induced by means of cotton pellet and granuloma pouch methods, and the adjuvant arthritis in rats. The inhibitory activity of the compound on inflammatory proliferation was more potent than that of ibuprofen, but slightly less than that of ketoprofen and less than about 1/10 times that of indomethacin. Indomethacin markedly inhibited the body weight gain at a high dose, while TN-762 did not affect it. Therefore, TN-762 was proven to have an inhibitory effect on subacute and chronic inflammation at low doses without toxic effects, but the compound appeared to have a less of an inhibitory effect on secondary or late stages of inflammation than on primary stage inflammation. TN-762 inhibited the acute paw edema induced by nystatin, and the inhibitory activity was the same as that of ketoprofen and indomethacin. The pathogenesis of nystatin edema has been considered to be due to lysosomal labilization. This result suggests that TN-762 has a potent membrane stabilizing action which is considered to be one of the necessary mechanisms in anti-inflammatory action. On the other hand, TN-762 showed the same potent analgesic effect as ketoprofen and indomethacin as observed by the acetic acid writhing and modified Haffner's methods in mice and by the Randall-Selitto's method in rats. However the antipyretic effect of TN-762 was significantly less than that of ketoprofen and indomethacin.
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The anti-allergic effect of Mequitazine (LM-209) which was found to have an anti-histaminic activity was investigated in guinea-pigs. The inhibitory activities of LM-209 on the Schultz-Dale reaction and ileum contraction by some mediators released from the sensitized guinea-pig lung were the same as those of clemastine fumarate (CL) but with 5 times the potency. LM-209 and CL, but these activities were less potent than in the case of disodium cromoglycate. The various anaphylactic reactions mediated by IgG in guinea-pigs were inhibited by LM-209, CL and chlorpheniramine maleate (CPM). The homologous PCA mediated IgE in rats was also inhibited by LM-209, CL and CPM, but the duration of the action with LM-209 was markedly longer. In experimentally-induced asthma, the decrease of respiratory rate and volume was significantly inhibited by LM-209, but was not affected by CL. Thus, LM-209 seems to inhibit the allergic reaction mainly by an antagonistic action on allergic mediators.
The action of an anti-histaminic agent, Mequitazine (LM-209) on the central nervous system was investigated. We found that LM-209 did not affect the spontaneous and co-operative movement in mice, did not induce muscle relaxation, analgesic effects or anti-convulsant effect in micr or hypothermic effects in rats. The anti-oxotremorine effect of LM-209 in mice was about 10 times more potent than clemastine fumarate (CL) and the same as promethazine. The activity and duration of the action were also superior to diethazine and orphenadrine used as an anti-Parkinson drug. LM-209 prolonged by 50% the hypnotic time induced by hexobarbital at 50 mg/kg (p.o.) in mice, while CL prolonged 50 and 100% it at 25 and 50 mg/kg (p.o.) respectively. In the EEG of rabbits, LM-209 produced a resting pattern, inhibited the arousal responses and recruiting responses and the effect was the same as CL and less potent than promethazine. From these results, the activity of LM-209 on the central nervous system (except for the anti-oxotremorine effect) seems to be the same as or somewhat less potent than CL. Therefore LM-209 should be an effective and anti-histaminic agent for clinical application.
Antagonistic activities of Mequitazine (LM-209) on chemical mediators and in particular histamine were investigated in guinea-pigs, mice and rats. The antagonistic activity of LM-209 for histamine in the isolated ileum and trachea of guinea-pigs was less potent than that for clemastine fumarate (CL) and chlorpheniramine maleate (CPM) while that for acetylcholine was more potent than CL and CPM. Moreover, the antagonistic activities of these three compounds on serotonin and bradykinin were almost equipotent in the excised ileum. Using a modified Konzett-Rössler method, the bronchodilating effect of LM-209 (p.o.) for histamine was same as CL, but that for acetylcholine was more potent than CL and CPM. The protective activity of LM-209 (p.o.) on acute death induced by histamine and metacholine in mice was the same as CL, but the duration of the anti-histaminic action was markedly longer than CL. LM-209 given orally inhibited markedly the increased vascular permeability by histamine in rats and the diarrhea by 5-HTP in mice, but did not affect on the histamine-induced ulcer in guinea-pigs. From these results, LM-209 appears to have potent and long acting antagonistic activity on various chemical mediators.
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Oral administration of 2-mercapto-2-methylpropanoyl-L-cysteine (SA 96), a newly synthesized sulfhydryl compound, showed protective and curative effects on adjuvant-induced arthritis in rats similarly to those seen with D-penicillamine (D-PA). However, the effects of these compounds were not dose-dependent, and the maximum effects of SA96 were observed at 10 mg/kg/day. On the contrary, SA96 and D-PA had little effect on the various acute and subacute inflammatory responses induced in rat and mice. Formation of hemolytic plaque forming cells in the spleen of mice immunized with 5 X 10(8) sheep red blood cells was potentiated by the oral administration of both compounds. These stimulatory effects of SA96 and D-PA on the humoral immune responses were also not dose-dependent, and the maximum effects of SA96 were observed with 10 mg/kg/day, as in the case of adjuvant-induced arthritis in rats. In in vitro experiments, the inactivation of rheumatoid factor and the inhibition of collagenase and bone alkaline phosphatase activities were observed with both compounds, but these effects of SA96 were more potent than those of D-PA. As there is a similarity in the pharmacological profiles of SA96 and D-PA, SA96 may prove to be clinically effective for rheumatoid arthritis.
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A case of measles in a 26-year-old Japanese man is reported. A skin specimen taken on the third eruptive day from a maculopapular eruption on his chest was immunohistopathologically and electron microscopically examined using a rabbit polyclonal antibody against the nucleocapsid protein of the measles virus. The measles virus antigen was found in the inner cells of the acrosyringium and hair follicles. The measles virus nucleocapsid was electron microscopically identified in the nuclei of the inner cells of the acrosyringium. The findings suggest that the sweat from skin lesions might contain the measles virus.