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Biomedical subjects

H Iida

Publications and source records attributed to H Iida.

At least 631 records · Page 35Linked to original sources

Thymidine metabolism in cells treated with DNA-suppressing factor (DSF).

Inhibition of thymidine incorporation into DNA in cells treated with DNA-suppressing factor (DSF) has been studied. After 16 hr treatment with DSF, transport of labeled thymidine across the cell membrane was not inhibited, since equilibrium of labeled thymidine with the acid-soluble pool occurred at the same rate and the radioactivity was at the same level as in untreated cells. The values of Vmax and Km in the kinetics of transport of exogenous thymidine were not changed by DSF. Phosphorylation of labeled thymidine to deoxythymidine triphosphate (dTTP) was not inhibited by DSF. After a chase of labeled thymidine, radioactivity of the acid-soluble fraction in DSF-treated cells decreased more rapidly but that of the acid-insoluble fraction remained at a lower level than in untreated cells. It was assumed that DSF might block the entry of dTTP into DNA.

Animals↗

Complement-dependent cytotoxicity of sera obtained from subacute sclerosing panencephalitis patients.

Human lymphoid cells (NC-37) persistently infected with either measles virus (Schwarz and TYCSA strains) or subacute sclerosing panencephalitis (SSPE) virus (Halle and Mantooth strains) were destroyed in the presence of complement by anti-measles sera as well as by sera from SSPE patients. The cytotoxic activity was demonstrated in both IgG and IgM fractions of measles convalescent sera, but only in IgG fraction of SSPE sera. Measles convalescent sera completely lost the cytotoxic activity to all the cell lines, when absorbed with any one of the cell lines, indicating that the viral surface antigens of these cell lines infected with measles or SSPE virus are identical. On the other hand, the cytotoxic activity of SSPE sera could not be readily absorbed with these cells. Thus, the affinity of SSPE sera for the viral surface antigens might be lower than that of measles convalescent sera.

Cell Line↗

Primary IgA glomerulonephritis and Schönlein-Henoch purpura nephritis: Clinicopathological and immunohistological characteristics.

A comparative analysis on clinicopathological and immunohistological characteristics was performed of 205 cases with primary IgA nephritis and 35 with Schönlein-Henoch purpura nephritis (purpura nephritis). Diagnostic criteria for primary IgA nephritis were set out so that IgA was either the most prominent immunoglobulin or, at least, equal to IgG and/or IgM, if present, irrespective of mesangial or peripheral localization. In primary IgA nephritis, one half of the cases were discovered by asymptomatic proteinuria, and one-third presented recurrent upper respiratory tract infection and gross hematuria, one-fourth abdominal pain and a few cases joint pain, while purpura nephritis was associated with a significantly higher incidence of such systemic symptoms as abdominal and joint pains, in addition to purpura. Both diseases shared a tendency toward conspicuous hematuria in contrast to the modest proteinuria, with normal renal function in three-fourths to two-thirds. Moreover, four of 35 with purpura nephritis showed preceding proteinuria and had been regarded as primary IgA nephritis until purpura appeared. The glomerular pathology had a common feature in that there was frequent occurrence of mesangial proliferative and focal and segmental lesions. The immunohistology in the two diseases was indistinguishable with regard to the glomerular immunoglobulins and mediators, whether purpura was present or absent. Thus, we propose a unifying concept that, by analogy with SLE, primary IgA nephritis may be regarded as 'sine lupo,' lying on one side of the nosological spectrum with less systemic symptoms, whereas purpura nephritis may occupy the other side with more systemic aspects. Furthermore, we confirmed the epimembranous granular deposition of IgA in both diseases as the most characteristic morphological expression of circulating immune complexes.

Adolescent↗

The effect of the DNA-suppressing factor (DSF) on host DNA synthesis in synchronized cell cultures.

Purified host DNA-suppressing factor (DSF) produced into culture fluid of HeLa C-9 cells infected with measles virus inhibited cellular DNA synthesis in HeLa cells. When purified DSF was added into cultures of synchronous HeLa cells at the early G1-phase, cellular DNA synthesis was irreversibly inhibited. However, DSF did not affect the stability of native double-stranded DNA nor the chain-elongation of single-stranded DNA in cells of the S-phase.

Cells, Cultured↗

Proteolytic mutants obtained from Clostridium botulinum type E.

Proteolytic mutants were isolated from toxigenic strains of Clostridium botulinum type E after several transfers. When these cultures were plated on blood agar, almost all of the colonies obtained were proteolytic, and there were fewer toxigenic colonies than nontoxigenic colonies. The proteolytic mutants and nonproteolytic original strains were different in their biological properties.

Amidohydrolases↗

Period of freedom from relapse as an indication of cure in minimal change nephrotic syndrome in adults.

17 adult-onset nephrotic patients with minimal-change glomerular lesions experienced 39 relapses in all. The relationship between the remission period t (expressed in months) preceding each relapse and the rate of relapse (relapse rate) F (t) was proven to correspond closely to Weibull's distribution function as follows (chi 2 = 1.72, 0.5 less than p less than 0.75): In In (formula - see text) From the equation, the time when 99% of relapsing patients have relapsed is 39.3 months. This means that adult-relapsing nephrotic patients with minimal-change lesions will experience a relapse within 39.3 months of remission. They should be free from relapse and considered cured with a 99% reliability when remission has continued longer than 39.3 months, i.e. beyond the 'period of freedom from relapse'.

Adolescent↗

Regulation of polar surface structures in Caulobacter crescentus: pleiotropic mutations affect the coordinate morphogenesis of flagella, pili and phage receptors.

A large number of Caulobacter mutants resistant to DNA or RNA phages were isolated. These phage-resistant mutants exhibited phenotypic variations with respect to cell motility and sensitivity to other phages. The majority of the mutants was resistant to both DNA and RNA phages tested. In addition, these mutants were either motile or non-motile. The analysis of spontaneous revertants from these mutants indicated that a single mutation is involved in these phenotypic variations. Other mutants were resistant to RNA phages and only to a certain DNA phage tested, and were also motile or non-motile. Several temperature-sensitive phage-resistant mutants were also isolated. One of them, CB13 ple-801, exhibited the wild type phenotype when grown at 25 degrees C. However, at a higher temperature (35 degrees C), the mutant cells became non-motile and resistant to both DNA and RNA phages. These phenotypes seem to be attributed to the concommitant loss of flagella, pili and phage receptors. In other respects (cell growth and morphology, and asymmetric stalk formation), CB13 ple-801 was normal at 35 degrees C. The spontaneous revertants from CB13 ple-801 simultaneously regained the wild type phenotypes in all respects. It is suggested that a single mutation pleiotropically affects the formation of flagella, pili and phage receptors.

Bacteria↗

Biochemical studies on abnormal erythrocyte membranes. Protein abnormality of erythrocyte membrane in biliary obstruction.

Biochemical studies on erythrocyte membranes from eleven obstructive jaundice patients (due to various disorders) have been undertaken, By scanning electron microscopic observation these erythrocytes were spur and target in appearance. The lipid composition showed a marked increase in both cholesterol and phosphatidylcholine. In addition to these changes, it was unexpectedly demonstrated by polyacrylamide gel electrophoresis in sodium dodecyl sulfate that a specific membrane protein component 4.2 was reduced or absent in all cases tested. This membrane protein abnormality was identical with that of hereditary spherocytosis erythrocyte membranes. It is of particular interest to note that after surgical relief of biliary obstruction in a typical case of common duct cholelithiasis, the disc electrophoretic pattern of erythrocyte membranes became normal and both lipid composition and red cell morphology returned to normal.

Cholestasis↗

Changes in membrane lipid composition during temperature adaptation by a thermotolerant strain of Tetrahymena pyriformis.

Experiments on temperature adaptation have been conducted using a thermotolerant clone of Tetrahymena pyriformis designated as strain NT-1. The strain was able to grow well at 39.5 and 15 degrees C and could adapt quickly when transferred from one of these temperatures to the other. Cells grown at the extreme temperatures differed markedly in their membrane lipid composition, particularly in the phospholipid polar head groups and hydrocarbon chains. The levels of fatty acid unsaturation increased at the lower temperature (e.g. 15 degrees C cells contained 31% gamma-linolenic acid vs. 25% at 39.5 degrees C) as did the content of alkyl glyceryl ether derivatives. Ethanolamine phosphoglycerides decreased by more than 10 mol % of the lipid phosphorus with the drop in temperature, the decrease being offset by a concomitant rise in 2-aminoethylphosphonolipid. These temperature-induced changes were noted in certain purified membrane preparations as well as in whole cells. Experiments with [14C]palmitic acid and sodium[14C]acetate showed that fatty acids are first incorporated into phospholipids predominantly in a saturated form. The membranes served as a reservoir of fatty acid substrate for desaturase activity. Tetrahymena pyriformis, strain NT-1, was proposed as a useful model system for studying the temperature adaptation process in eukaryotic cells.

Acclimatization↗

Characterization of measles viruses in establishment of persistent infections in human lymphoid cell line.

Human lymphoid cells (NC-37) were infected with attenuated measles vaccine virus (Schwarz, AIK-C, and CAM-70 strains), subacute sclerosing panencephalitis virus (Mantooth and Halle strains), neurovirulent TYCSA strain, and wild type virus (Edmonston and Toyoshima strains) at an input multiplicity of 0-01. These strains were divided into two groups by their capacity to establish carrier states. CAM-70, Toyoshima, and Edmonston strains did not set up persistent infections in NC-37 cells, whereas AIK-C strain induced chronic cyclic infection and the Schwarz, TYCSA, Mantooth and Halle strains could set up persistent infections and furthermore two types of persistent infections were recognizable. Cells persistently infected with Schwarz strain contained nucleocapsid structures in both nucleus and cytoplasm, and produced infectious virus of 10(4) to 10(5) p.f.u./ml over 100 days after the inoculation of the virus but the cap-formation of measles antigens on the cell membrane was seldom observed. However, in cells persistently infected with TYCSA strain, nucleocapsid structures were rarely observed in the nucleus, but the cap-formation of measles antigens on the cell membrane was often observed. The titre of carried virus was always higher than the number of cells in the range of 10(6) to 10(7) p.f.u./ml. Mantooth strain was similar to Schwarz strain and Halle strain was similar to TYCSA strain in the properties of their carrier states. These carrier states were stable and the cells grew normally for over one year.

Antigens, Viral↗