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Biomedical subjects

H Ishioka

Publications and source records attributed to H Ishioka.

10 recordsLinked to original sources

The effect of ultraviolet rays on the prevention of exit-site infections.

The aim of this study was to show that ultraviolet (UV) irradiation to the skin around the catheter exit site (ES) could inhibit its infection. First, bacterial cultures of swabbed fluid from the ES were obtained from 68 continuous ambulatory peritoneal dialysis (CAPD) outpatients six times during the 24-month observation period. Second, the bactericidal effects of UV irradiation on the catheter ES were examined. The results were as follows: (1) In spite of disinfection of the catheter ES by the strict application of povidone-iodine once or twice a day, 23%-45% of the cases were found to be micro-organism positive. The most prevalent micro-organisms from the catheter ES were, in order of highest to lowest prevalence, Staphylococcus epidermidis (SE), Staphylococcus aureus (SA), and Pseudomonas aeruginosa (PA). (2) In the nasal cavity SA was detected in 20%-25% of patients. There was a high incidence of ES infection among the SA nasal carriers. (3) UV irradiation was performed in 18 cases that constantly revealed bacteria on culture at the catheter ES. Ten cases (55%) became culture-negative, 3 cases showed a microbial decrease, and 5 cases remained unchanged. These results suggest that UV irradiation can eliminate bacteria and can be of prophylactic use for ES infections.

Bacteria

Effect of mammalian growth hormone on amino nitrogen mobilization in the eel.

Hypophysectomy decreased plasma amino nitrogen (PAN) levels of Japanese eels. In contrast, administration of bovine or ovine growth hormone (GH; 2 micrograms/g) produced a delayed increase in PAN levels of both intact and hypophysectomized eels 48 hr after GH injection. The minimum dose of GH required to elevate PAN levels was found to be 0.1-1 micrograms/g body wt. The fact that GH treatment also increased PAN of hepatectomized eels indicates that the increased PAN was at least partly caused by the increased mobilization of amino nitrogen from body protein. GH also increased plasma free fatty acid content of intact and hypophysectomized eels 48 hr after GH injection in one experiment of the present study, but this effect was not reproducible in other experiments. No effect of GH administration was observed either in plasma glucose and lipid of intact and hypophysectomized eels 48 hr after the injection.

Amines

In vivo and in vitro effects of growth hormone on the incorporation of [14C]leucine into protein of liver and muscle of the eel.

In vivo administration of ovine GH (2 micrograms/g body wt) increased [14C]leucine incorporation into protein of the liver, skeletal muscle, and opercular muscle of hypophysectomized eels. Addition of ovine GH into the medium (5 micrograms/ml) slightly increased [14C]leucine incorporation into protein of liver slices during 5 hr in vitro incubation, but did not affect protein synthesis from [14C]leucine in opercular muscle. In vivo pretreatment with ovine GH (2 micrograms/g body wt) 48 hr prior to tissue preparation clearly increased [14C]leucine incorporation into protein of liver slices in vitro. However, no statistically significant change was observed for in vitro incorporation of [14C]leucine into protein of opercular muscle of hypophysectomized eels which had been previously treated with ovine GH (2 micrograms/g body wt). These results indicate that ovine GH has a protein anabolic action in the liver and muscle of the eel and that compared to mammals a rather long lag period is needed to elicit such protein anabolic actions of GH in these animals.

Anguilla

Catecholamines in experimental spinal cord lesions associated with spinal arachnoiditis.

Catecholamines in the spinal cord and cerebrospinal fluid of dogs with arachnoiditis induced by cisternal kaolin injection were measured by radioenzymatic assay. The levels of noradrenaline in the gray matter of the cervical cord and the cerebrospinal fluid were highest in 1st week (mean values, 127.8 ng/g and 856.0 pg/ml), whereas those in the gray matter of the thoracic and thoracolumbar cord increased to 175.0 and 210.0 ng/g in average respectively in 12th week. The increase in the level of noradrenaline in the gray matter seemed to be related with degenerative cord lesions in almost all segments, while most segments with cavitation indicated low noradrenaline level.

Animals

Effects of insulin and glucagon on the incorporation of [14C]glycine into the protein of the liver and opercular muscle of the eel in vitro.

Effects of insulin and glucagon on the incorporation of [14C]glycine into the protein of liver slices and the opercular muscle of the eel were studied in vitro. Addition of insulin (0.1 IU/ml) to the medium increased the radioactivity both of the trichloroacetic acid (TCA)-soluble fraction and of the protein of the opercular muscle, indicating an acceleration by the hormone both of entry of the amino acid into the tissue and of protein synthesis. Insulin also increased the incorporation of [14C]glycine into the liver protein, while a decrease in the radioactivity of the TCA-soluble fraction was observed. These findings suggest that the hormone accelerated protein synthesis at the expense of an intracellular amino acid pool. In contrast, glucagon (5 micrograms/ml) did not affect the radioactivity either of the TCA-soluble fraction or of protein for either the opercular muscle or the liver. Thus, the present results highlight the importance of insulin in the regulation of protein synthesis in the eel both in muscle and in liver.

Animals

Effects of insulin and glucagon on amino acid transport into the liver and opercular muscle of the eel in vitro.

Effects of insulin and glucagon on amino acid transport in vitro into liver slices and the opercular muscle of the eel were studied using a labeled nonmetabolizable amino acid analog, alpha-[1-14C]aminoisobutyric acid (AIB). Addition of insulin (0.1 IU/ml) to the medium increased the radioactivity in the deproteinized fractions of both the liver slices and opercular muscle, indicating an accelerated movement of this amino acid analog into these tissues. Glucagon (5 micrograms/ml) also enhanced the entry of [14C]AIB into the liver slices; however, treatment of opercular muscle with glucagon did not alter the radioactivity in the deproteinized fraction. These findings clearly indicate that the entry of amino acids into eel tissues independent of protein synthesis can be altered by insulin and glucagon.

Aminoisobutyric Acids