Search PubMed⌕ Search

Biomedical subjects

N Shibata

Publications and source records attributed to N Shibata.

At least 343 records · Page 19Linked to original sources

[Clinical effect of cefroxadine on surgical infections].

Cefroxadine (CXD), an orally active cephalosporin antibiotic, has a broad spectrum and a bactericidal action. The efficacy of CXD in the surgical field was investigated and the following results were obtained. CXD was administered to 31 cases in all; 13 cases with mastitis, 9 with wound infection, 4 with infected atheroma, 3 with periproctal abscess and 2 with phlegmon, respectively. The daily dose was ranged from 750 mg to 1,500 mg. Clinical effects were good in 27 cases and fair in 4 cases, and the effective rate was 87.1%. As to side effects, a slight diarrhea was observed in 1 case, but the symptom was disappeared after 2 days without a special treatment.

Administration, Oral↗

Hemobilia after percutaneous transhepatic biliary drainage.

Hemobilia after the inception of percutaneous transhepatic biliary drainage (PTBD) has been reported as an uncommon, but sometimes fatal, complication. We examined the incidence, pathogenesis, and management of hemobilia in 94 patients who received PTBD. There were seven cases (7.4%) with transient and six (6.4%) with severe hemobilia; one patient (1.1%) of the latter group died. There was no correlation between hemobilia and hemostatic or hepatic insufficiency. Angiography during PTBD was performed in 47 patients, and abnormalities restricted to arterial changes were noted in nine (19.1%). All but one patient with hemobilia showed angiographic abnormalities. Our findings indicate that hemobilia occurs more often than has been suspected and that it is usually due to intrahepatic vessel injury rather than to hemorrhagic diathesis or hepatic insufficiency. The primary management of hemobilia consists of maintaining continuous patency of the drainage catheter.

Adult↗

Immunochemical studies of the mannans of Saccharomyces cerevisiae X2180-1A-5 and Saccharomyces cerevisiae 4484-24D-1 mutant strains, with special reference to their phosphate content.

The mannans from Saccharomyces cerevisiae mutant strains X2180-1A-5 and 4484-24D-1, both of which were shown to contain small amounts of phosphate (less than 0.2%), were fractionated on a column of diethylaminoethyl-Sephadex into five subfractions designated as fractions I to V. These subfractions contain different amounts of phosphate, ranging from 0.03 to 0.09 (strain X2180-1A-5) and from 0.01 to 0.17% (strain 4484-24D-1). Fractions I to IV from strain X2180-1A-5 showed nearly identical precipitin activities against the homologous anti-whole cell serum, whereas fraction V, containing the largest amount of phosphate and protein among this mannan subfraction series, showed unexpectedly weaker precipitin activity than those of the other fractions. A synthetic mannan consisting or consecutive alpha-1 leads to 6-linked D-mannopyranosyl residues was found to be cross-reactive with all the mannan subfractions of strain X2180-1A-5 against anti-X2180-1A-5 serum. On the other hand, antibody-precipitating activities of the mannan subfractions of the latter strain were proportional to their phosphate content, although the increments of precipitated antibody nitrogen among the subfractions were quite small. However, fraction V of this mannan subfraction series, containing the largest amounts of phosphate and protein, showed lower precipitin activity than did the other four fractions. These findings indicate that mannans containing no phosphate or relatively small amounts of phosphate, such as those investigated in the present study, are less heterogeneous in the densities of the branching moieties than are highly phosphorylated mannans. These findings suggest that the transfer step of mannosyl-1-phosphate into the precursor(s) of the wild-type strain mannans during the biosynthetic process corresponds to the key reaction responsible for the anionic heterogeneity due to the density heterogeneity of the antigenic determinants.

Antigens, Fungal↗

An approach to the genesis of idiopathic cardiomyopathy.

The turnover of cholesterol of red blood cells in healthy hamsters was faster than that in cardiomyopathic hamsters. The uptake of 2-deoxy-D-glucose by heart cells was more rapid in the diseased hamsters compared with that of the healthy ones. Freeze-etch study of heart cells disclosed a difference of membrane structure between the two groups. Results of lactate content in hearts with nonexercised and exercised hamsters of both the diseased and healthy groups revealed the retention of lactate in the diseased hearts, even in a nonexercised state. Electron microscopic findings confirmed that an increased hypoxic condition caused by exercise aggravates the diseaes in the cardiomyopathic hamsters. These two conditions, membrane abnormality and hypoxia, probably play a role fundamental to the genesis of the disease, because hypoxia in the cellular level may well be caused by membrane abnormality.

Animals↗

Leucocytic movement and contractile protein.

In a study on leucocytic movement, it was found that leucocytes showed periodical dynamic patterns with each motile function, and a possible organization in their motile system. It was also clarified that the motile form and function of leucocytes were co-ordinately controlled by the intracellular level of ATP and that the characteristic contraction wave observed in moving leucocytes was substantial as a morphological manifestation of the contractile element in moving leucocytes. Based on these findings, an attempt was made to extract contractile protein from leucocytes. It was shown that the protein consisted mainly of myosin and actin, which is similar to protein of muscle. Thus, it was concluded that development of the pseudopod, which is indispensable for cell movement, seemed to result from liquid substance in the granuloplasm being squeezed out through contraction of contractile protein located in the surface layer of the granuloplasm. In non-muscular cells, the same type of ordered structure as seen in muscle has not been found yet, but it seems likely that the protein is capable of converting chemical energy into movement.

Actins↗