[Inhibitory effects of uremic toxins on the compensatory renal growth].
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Biomedical subjects
Publications and source records attributed to A Yoshimura.
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We report a rare instance of chemical pericystitis in a 60-year-old man who had undergone transurethral resection of a bladder tumor and subsequent intravesical instillation of doxorubicin. The patient had a high fever lasting for 18 days, lower abdominal pain and mild hydronephrosis. Extravasation of doxorubicin through the resected and thinned region of the bladder wall seemed to be responsible for this complication. The lesion improved spontaneously without any sequela.
A new subtraction method was developed to improve visual resolution in fluorescent scanning. A digital gate circuit could subtract backscatter of a fluorescing gamma ray source in real time without the need for a computer for postprocessing of the image data.
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Effect of influenza virus on erythrocyte membranes was investigated by electron microscopy and fluorescence photobleaching recovery measurements. The virus induced mobilization of integral proteins in erythrocyte membrane at acidic pH, where it fused with the cell membrane to cause hemolysis and also cell fusions but not at neutral pH. At lower temperatures (e.g., 4 degrees C), the proteins aggregated in the membrane and, consequently, large protein-free lipid bilayer area was produced. At higher temperatures (e.g., 37 degrees C) the protein distribution became randomized. Spectrin meshwork underneath the erythrocyte membrane was also markedly modified by the virus at acidic pH. Diffuse fibril structure was converted into dense spots and the membrane area lacking the fibril structure was produced. Isolated hemagglutinin rosettes also caused mobilization and aggregation of the integral proteins at acidic pH but to smaller extent than that induced by virus. The membrane perturbation detected as the protein mobilization by the action of hemagglutinin was assigned to be the cause for envelope fusion.
Lipoprotein patterns and cholesteryl ester transfer activity (CETA) were examined in 2 patients with familial hyperalphalipoproteinaemia (FHALP). The proband was a healthy 58-year-old Japanese male who had an HDL cholesterol of 7.83 mmol/l (301 mg/dl). His sister's HDL cholesterol was 4.52 mmol/l (174 mg/dl), which suggested that both were homozygous carriers of FHALP. In both subjects HDL showed a high cholesterol/apo A-I ratio and appeared to be a larger-sized particle than normal HDL on agarose gel chromatography. Two of the proband's children showed higher HDL cholesterol levels (1.74 mmol/l, 2.16 mmol/l) than normal, but another 2 children showed normal levels (1.48 mmol/l, 1.40 mmol/l). However, the ratios of HDL cholesterol to total cholesterol and to apo A-I in all children were higher than normal. These data suggest, but do not prove, that all his children were heterozygotes. Apo B levels in all of the family members studied were lower than normal (47-80 mg/dl). Deceased members of the same family had not died from cardiovascular disease. Cholesteryl-ester transfer activity was studied in both patients. When serum or lipoprotein deficient serum (d greater than 1.21) and [3H]cholesteryl ester labelled HDL3 were incubated in the presence of an LCAT inhibitor, there was no evidence of cholesteryl ester transfer from HDL to VLDL and/or LDL, unlike normal subjects. The deficiency of CETA in these patients with FHALP presumably accounted for the increase in particle size and cholesterol enrichment of HDL.
A mutant (MO-5) resistant to monensin (an ionophoric antibiotic) derived from the mouse Balb/3T3 cell line, was a poor host for vesicular stomatitis virus (VSV) or semliki forest virus (SFV) multiplication. The yield of VSV particles in MO-5 is one 100-fold reduced as is VSV-dependent RNA synthesis. In contrast to a pH-remedial mutant, the abortive production of infectious VSV particles in MO-5 cells was not restored by low pH treatment. The pH values in the endosome and the lysosome of MO-5 cells were 5.2 and 5.4, respectively, values that were comparable to the pH value in Balb/3T3 cells. Assays with [3H]uridine-labeled VSV indicated similar binding of VSV in MO-5: percoll gradient centrifugation analysis of [35S]methionine-labeled VSV-infected Balb/3T3 showed accumulation of VSV in the lysosome fraction 20 min after VSV infection, whereas VSV can be found mainly in endosome/Golgi fraction of MO-5 cells after 40 to 60 min on the percoll gradients. Degradation of [35S]methionine-labeled VSV was observed at a significant rate in Balb/3T3 cells, but not in MO-5 cells. The monensin-resistant somatic cell may thus provide a genetic route to study the mechanism of endocytosis or transport of enveloped viruses.
The early interaction between KB cells and adenovirus was studied by examining the uptake of an extracellular fluorescent macromolecule, FITC (fluorescein isothiocyanate)-labeled dextran (FD). When cells in suspension were incubated with both adenovirus and FD, cell-associated FD increased 2- to 3-fold the value obtained without adenovirus. Under fluorescence microscopy, cells incubated with adenovirus showed bright, whole-cellular fluorescence; whereas, those incubated without adenovirus, or with heat-inactivated virus, showed weaker fluorescence, mainly of the pinocytic vesicles. The increased uptake of the FD by adenovirus was inhibited by treating KB cells with the drugs chloroquine, ammonium chloride and monensin that raise the pH of the acidic compartment. Entry of adenovirus into the KB cell's nucleus also was inhibited by these drugs. The conclusion is that entry of adenovirus into the cell involves its passage of an acidic compartment (probably the endocytic vesicle) and that co-endocytosed macromolecules are released into the cytosol on entry.
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Time-of-flight measurement was applied to obtain the energy spectra of the neutron emitted from tissue-equivalent plastic (TEP) exposed by pi- mesons. The separation of electrons and muons in beams was attempted. Neutrons from TEP exposed by pi- mesons at P pi = 500 MeV/c were separated from gamma-rays by the NE 213 liquid scintillator and the pulse-height analyzer. The double differential cross sections for neutron energy are obtained. The cross sections of the neutron energy distributions show a preponderance of low energy neutrons and a high energy tail extending to approximately 100 MeV.
The intracellular uncoating site of influenza virus was studied by measuring the fluorescence intensity of probes conjugated to the virus or the isolated hemagglutinin and also by assaying virus replication under various incubation conditions. Acidification of the viral environment was monitored by the decrease in the fluorescence intensity of fluorescein isothiocyanate, and transport of the virus particles into secondary lysosomes was assayed by the increase in the fluorescence intensity of fluorescein isothiocyanate diphosphate. The intracellular pH was estimated by the ratio of fluorescence intensities excited at two different wavelengths. It was found that the viral environment became acidified to a pH value of 5.1 to 5.2 within 10 min at 37 degrees C or 1 h at 20 degrees C after endocytosis. Addition of ammonium chloride to the medium rapidly raised the pH to 6.7. Transport of the virus particles into the secondary lysosomes was slower and negligibly low during those incubation periods. Virus replication occurred when the cells were incubated for 10 min at 37 degrees C or for 1 h at 20 degrees C, followed by incubation in the presence of ammonium chloride for a total of 12 h. These results indicate the uncoating of influenza virus in endosomes before reaching the secondary lysosomes.
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The Watanabe Heritable Hyperlipidemic rabbit (WHHL rabbit) and the cholesterol-fed rabbit have been reported to show elevations of very low density (VLDL), intermediate density (IDL), and low density lipoproteins (LDL), and a broad-beta band on agarose-gel electrophoresis. We have studied the lipid and lipoprotein composition of WHHL rabbits and cholesterol-fed rabbits using ultracentrifugal analysis and isoelectric focusing. The total cholesterol (TC)/triglyceride (TG) ratios of VLDL, IDL, and LDL in WHHL rabbits were slightly elevated, but almost normal compared with those of cholesterol-fed rabbits, whose TC/TG ratios were markedly elevated compared with normolipidemic rabbits. ApoVLDL of WHHL rabbits showed no compositional changes in apoE and apoC isoforms, and no marked changes in the apoE/apoC ratios. But apoVLDL of cholesterol-fed rabbits showed a significant decrease of apoC-III, a significant increase of apoC-V, and marked elevation of the apoE/apoC ratio. We conclude that serum lipoprotein compositions in the WHHL rabbit were normal, while the lipoprotein lipid and apolipoprotein composition in the WHHL rabbit are different from those in cholesterol-fed rabbits.
A future application of negative pions to radiotherapy has arrived at a promising stage. Negative pions, in addition to their good localization characteristics, offer an advantage of favorably influencing biological factors because of differences in the quality of radiation given to a) the treatment volume and b) the intervening normal tissue. By utilizing dose fractionation, the low dose to intervening normal tissue with its low LET allows these tissues to recover better than cells in the treatment volume. In this study the lucite phantom was bombarded with 150 MeV/c and 173 MeV/c negative pions and 173 MeV/c positive pions, respectively, by using the 12 GeV proton synchrotron of the National Laboratory for High Energy Physics (KEK). Range-energy relations in the lucite and the remaining curves of pions were observed. The observed range of pions in lucite agreed well with the theoretical prediction. The remaining curves show the different structures for pi+ and pi- mesons. Peak to plateau ratio is ten times.
We studied the effects of the bile acid sequestrant cholestyramine, alone and in combination with the experimental agent compactin (ML-236B), a competitive inhibitor of 3-hydroxy-3-methylglutaryl coenzyme A reductase, on serum levels of lipoproteins in 10 heterozygous patients with familial hypercholesterolemia. After cholestyramine treatment alone for 2 to 16 months, serum total and low-density lipoprotein cholesterol decreased by 20 and 28 per cent, respectively. With the addition of compactin for 12 weeks there was a 39 per cent total decrease in serum cholesterol from the control value--from 356 +/- 14 to 217 +/- 10 mg per deciliter (9.27 +/- 0.36 to 5.64 +/- 0.26 mmol per liter [mean +/- S.E.M.]; P less than 0.001)--and a 53 per cent decrease in low-density lipoprotein cholesterol--from 263 +/- 13 to 125 +/- 10 mg per deciliter (6.84 +/- 0.34 to 3.25 +/- 0.26 mmol per liter; P less than 0.001). High-density lipoprotein cholesterol, which had increased during cholestyramine treatment, remained at its higher level. No adverse effects were observed. If long-term safety can be demonstrated, the compactin-cholestyramine regimen may prove useful in heterozygous familial hypercholesterolemia. prove useful in heterozygous familial hypercholesterolemia.
Dissolution test of two rifampicin (RFP) products (DI and CB) was carried out by "Rotating Basket Method" on JP X, using a first and second fluid for disintegration test or a de-aerated water as dissolution medium. The dissolution ratios of the DI product in the second fluid and de-aerated water at 60 min are 72.0% and 95.0%, and the CB product ratios are 10.0% and 5.5% respectively. On their bioavailability parameters, the DI product showed higher C max and AUC value than CB, in both healthy subjects and tubercular patients, but did not show a statistically significant difference. Healthy subjects showed statistically significant high C max and AUC values as compared against tubercular patients, namely on C max of CB and DI products, and on AUC of CB and DI product.
Interaction between influenza virus WSN strain and MDCK cells was studied by using spin-labeled phospholipids and electron microscopy. Envelope fusion was negligibly small at neutral pH but greatly activated in acidic media in a narrow pH range around 5.0. The half-time was less than 1 min at 37 degrees C at pH 5.0. Virus binding was almost independent of the pH. Endocytosis occurred with a half-time of about 7 min at 37 degrees C at neutral pH, and about 50% of the initially bound virus was internalized after 1 h. Electron micrographs showed binding of virus particles in coated pits in the microvillous surface of plasma membrane and endocytosis into coated vesicles. Chloroquine inhibited virus replication. The inhibition occurred when the drug was added not later than 10 min after inoculation. Chloroquine caused an increase in the lysosomal pH 4.9 to 6.1. The drug did not affect virus binding, endocytosis, or envelope fusion at pH 5.0. Electron micrographs showed many virus particles remaining trapped inside vacuoles even after 30 min at 37 degrees C in the presence of drug, in contrast to only a few particles after 10 min in vacuoles and secondary lysosomes in its absence. Virus replication in an artificial condition, i.e., brief exposure of the inoculum to acidic medium followed by incubation in neutral pH in the presence of chloroquine, was also observed. These results are discussed to provide a strong support for the infection mechanism of influenza virus proposed previously: virus uptake by endocytosis, fusion of the endocytosed vesicles with lysosome, and fusion of the virus envelope with the surrounding vesicle membrane in the secondary lysosome because of the low pH. This allows the viral genome to enter the target cell cytoplasm.
Effects of TPH-3 on various experimental gastric ulcers in rats and guinea-pigs were studied and the following results were obtained. In the preventive experiments, such as the Shay's ulcer, pylorus-ligated aspirin ulcer and restraint and water immersion stress ulcer, TPH-3 (200 mg/kg i.d. or p.o.) showed a statistically significant inhibition. TPH-3 markedly inhibited the histamine-induced gastric ulcer in guinea-pigs and a dose-response relationship was obtained for doses of 12.5, 25 and 50 mg/kg p.o. TPH-3 showed the weak inhibition regarding therapy for serosa-seared gastric ulcer and the recovery process of restraint and water immersion stress ulcer in rats. TPH-3, dosing 100 mg/kg intraduodenally, significantly inhibited the gastric secretion in the pylorus-ligated rats. TPH-3 significantly inhibited the histamine, pentagastrin and carbachol-induced acid secretion in the stomach-perfused rats. In particular, TPH-3 showed strong sensitivity to the action of histamine. TPH-3 had no anti-ACh or anti-H1-receptor effects.