Search PubMed⌕ Search

Biomedical subjects

M Nishida

Publications and source records attributed to M Nishida.

At least 559 records · Page 31Linked to original sources

Turner's syndrome with a duplication-deficiency X chromosome derived from a maternal pericentric inversion X chromosome.

A 31-year-old woman of short stature with severe oligomenorrhea was found to carry a duplication-deficiency X chromosome, 46,X,rec(X)dup q,inv(X)(p22q11), inherited from her mother who carried a pericentric inversion X chromosome, 46,X,inv(X)(p22q11). By a combination of autoradiography and BUdR incorporation, the duplication-deficiency X chromosome was always found to be the inactive and late replicating one. In the cultured fibroblasts with the recombinant X chromosome, some of the cells were seen to have bipartite X chromatin bodies. In the mother with inv(X), the normal and the inverted X chromosome were inactivated at random.

Adult↗

Ceftizoxime (FK 749), a new parenteral cephalosporin: in vitro and in vivo antibacterial activities.

FK 749 is a new parenteral cephalosporin derivative which is more active against various gram-negative bacilli, including the opportunistic pathogens such as Enterobacter, Citrobacter species, and Serratia marcescens, than cephalosporins and cephamycins such as cefotiam, cefamandole, cefuroxime, cefotaxime, and cefmetazole. FK 749 was especially active against gram-negative organisms resistant to these related antibiotics. FK 749 was more potent in bactericidal activity than the other antibiotics, and the activity was clearly enhanced in the presence of 90% defibrinated rabbit blood. The therapeutic effect of subcutaneously injected FK 749 in mice infected with various gram-negative bacilli was far superior to that of cefotiam, cefamandole, cefuroxime, and cefmetazole and was almost the same as that of cefmetazole in mice infected with Staphylococcus aureus and that of ticarcillin in mice infected with Pseudomonas aeruginosa. FK 749 has, in general, nearly the same in vitro and in vivo antibacterial activities as cefotaxime. The former had more potent bactericidal activity in the presence of the blood than the latter and showed more excellent therapeutic effect than cefotaxime against infections caused by large inoculum sizes.

Animals↗

Antibacterial activity of ceftizoxime (FK 749), a new cephalosporin, against cephalosporin-resistant bacteria, and its stability to beta-lactamase.

Antibacterial activity of FK 749 against ampicillin-resistant clinical isolates of Escherichia coli was compared with those of other newly developed cephalosporins. FK 749 was the most active against strains possessing R-plasmids specifying ampicillin resistance and those whose resistance was chromosomally determined. The susceptibility of ampicillin-susceptible E. coli to FK 749 was not decreased by transduction of ampicillin resistance-specifying plasmids. However, most of the transconjugants acquired a high level of resistance to cefoperazone and cefamandole and a moderate level of resistance to cefoperazone and cefamandole and a moderate level to cefotiam. FK 749 was highly stable to both penicillinase- and cephalosporinase-type beta-lactamases, including R-plasmid-mediated beta-lactamase. Its level of resistance to beta-lactamases was comparable to those of cefoxitin, cefmetazole, and cefotaxime, slightly superior to that of cefuroxime, and much superior to those of cefotiam, cefamandole, and cefoperazone.

Ampicillin↗

Inhibitory effect of Pseudomonas aeruginosa on the phagacytic and killing activities of rabbit polymorphonuclear leukocytes: purification and characterization of an inhibitor of polymorphonuclear leukocyte function.

A clinically isolated strain of polymorphonuclear leukocyte (PMN)-resistant Pseudomonas was found to produce an extracellular substance (PMN inhibitor) that inhibits the phagocytic and killing activities of PMN. The PMN inhibitor was purified from culture filtrates by precipitation with (NH4)2SO4 and chromatography on phosphocellulose, diethylaminoethyl-cellulose, and Sephadex G-100. The preparation was homogenous as judged by disc gel electrophoresis. The purified PMN inhibitor appeared to be a protein with a molecular weight of approximately 65,000 that was inactivated by heating and by exposure to a proteolytic enzyme.

Animals↗

Inhibitory effect of Pseudomonas aeruginosa on the phagocytic and killing activity of rabbit polymorphonuclear leukocytes: mechanisms of action of a polymorphonuclear leukocyte inhibitor.

The polymorphonuclear leukocyte (PMN) inhibitor isolated from a strain of Pseudomonas aeruginosa which is resistant to the phagocytic and killing activities of rabbit PMN inhibited migration of PMN and engulfment of latex particles by PMN. In studies of the bactericidal metabolism of PMN, the PMN inhibitor did not inhibit the intracellular activity and extracellular release of lysosomal enzymes. However, the PMN inhibitor caused a decrease of Nitro Blue Tetrazolium reduction. The PMN inhibitor had a cytotoxic effect on PMN and inhibited [14C]tyrosine uptake in intact PMN inhibitor had no inhibitory effect on protein synthesis in cell extracts.

Animals↗

Some properties of hog thyroidal membrane-bound adenosine tri-phosphatase: proteolytic activation of Mg-dependent activity.

The ATPase preparations from the hog thyroid was preincubated with various amounts of trypsin. The activity of Mg-ATPase was consistently elevated. On the contrary, the Na, K-ATPase activity decreased with increasing amounts of trypsin. The effects were similar to those which were observed in the enzyme preparations treated with basis polyamino acids as previously reported. This phenomenon seemed to be specific in the preparations from the thyroid. The Mg-dependent activity was increased after pretreatment with trypsin or poly-L-lysine (PLL) when CTP, ITP and UTP were used as substrate. Thus the substrate specificity of Mg-ATPase was low. The enzyme-kinetics using ATP as substrate showed that the increase in activity was due to an increase in Vmax and not to a change in Km. The activity of Mg-ATPase was increased even after 30 min of preincubation with trypsin, while the Na, K-ATPase activity was almost diminished. These results suggest that the activity of Mg-ATPase in the preparation from the thyroid is specifically changed by the modification of the molecular environment of the enzyme with trypsin or basic polyamino acids.

Adenosine Triphosphatases↗

Comparison of antibacterial activity of a new cephalosporin, ceftizoxime (FK 749) with other cephalosporin antibiotics.

FK 749 is a distinctive new parenteral cephalosporin antibiotic with a broad antibacterial spectrum which is more potently active against a wide variety of Gram-negative bacilli, including the opportunistic pathogens such as Citrobacter and Enterobacter species and Serratia marcescens, than SCE 963, T 1551 and cefmetazole. The activity of FK 749 against Escherichia coli, Klebsiella pneumoniae, pyogenes was by far superior to that of the three other antibiotics. These test organisms were not resistant to FK 749. The antibacterial activity of FK 749 against Pseudomonas aeruginosa was almost the same as that of ticarcillin but was inferior to that of gentamicin and T 1551. The bactericidal activity of FK 749 against E. coli, K. pneumoniae and Proteus mirabilis was more potent than that of the three other antibiotics. FK 749, like cefmetazole, was extremely stable to beta-lactamases. In studies in mice, the therapeutic effect of subcutaneous injection of FK 749 against various infections due to Gram-negative bacilli was by far superior to that of SCE 963, T 1551 and cefmetazole, was almost the same as that of SCE 963 and cefmetazole against Staphylococcus aureus infection and that of ticarcillin against P. aeruginosa infection.

Ampicillin↗

Bactericidal activity of cephalosporins in an in vitro model simulating serum levels.

The bactericidal activity of cefazolin, cephaloridine, and cephalothin in a simulated intramuscular study (500 mg) and a simulated intravenous drip infusion study (2 g/2 h) is reported. In both model systems, the bactericidal activity of cefazolin surpassed that of cephalothin, and there were certain differences between cefazolin and cephaloridine in the simulated intramuscular study when human serum was used as a medium. In a routine reference static system, the drug levels were constant at the simulated peak level of each cephalosporin by both routes. In this system the three cephalosporins were equal in activity. In a third experiment, the effect of drug concentrations and exposure time on bactericidal activity of the cephalosporins was studied. The bactericidal activity of cephaloridine was the strongest of the three drugs when exposure time was 2 h and drug concentration was less than four times the minimal inhibitory concentration. At concentrations above four times the minimum inhibitory concentration, all three cephalosporins were equal in activity when the exposure time was 2 h.

Bacteria↗

Differential susceptibility of indole-positive and -negative strains of Klebsiella pneumoniae to cefazolin, choramphenicol and tetracycline.

Biochemical properties and antibiotic susceptibilities of 168 clinical isolates of Klebsiella pneumoniae were tested. On the basis of the indole reaction, 30 isolates (18%) were indole-positive and 138 isolates (82%) were indole-negative. A significant difference in antibiotic susceptibility was found in each of the two groups of isolates. Of the indole-negative isolates, 82.6% were susceptible to cefazolin at 6.25 microgram/ml or lower, while the indole-positive isolates varied in susceptibility to cefazolin. All of the indole-positive isolates were susceptible to chloramphenicol and tetracycline, but the indole-negative isolates varied in their susceptibility to these antibiotics. Whereas there was no relationship between indole production and susceptibility to cephalothin among the K. pneumoniae isolates studied, it appeared that there was a correlation between the indole reaction and susceptibility to cefazolin, chloramphenicol and tetracycline.

Cefazolin↗