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Biomedical subjects

Eisuke Kume

Publications and source records attributed to Eisuke Kume.

4 recordsLinked to original sources

Gene expression profiling in streptozotocin treated mouse liver using DNA microarray.

Streptozotocin (SZ) is known to exert toxic effects not only on pancreatic islet beta cells but also on other organs including liver. For analyzing changes in genes expression associated with SZ toxicity, we performed DNA microarray analyses on the liver obtained from SZ-treated mice. Eight-week-old male ICR mice were treated i.p. with 200 mg/kg of SZ, and the blood and liver were taken at 6, 24 and 48 h after the treatment. Labeled cRNA prepared from total RNA of the liver was hybridized to the GeneChip Murine Genome U74A V.2 (Affymetrix). The number of the probe sets, which were clearly up-regulated or down-regulated, were over 100 at 6 and 24h after the SZ-treatment, and it decreased at 48 h after the treatment. Many of the up-regulated genes were categorized into cell cycle/apoptosis related genes, immune/allergy related genes and stress response/xenobiotic metabolism related genes. On the other hand, genes related to glucose, lipid and protein metabolisms were down-regulated. These changes started prior to the elevation of the serum glucose levels, indicating the direct action of SZ on the liver rather than the secondary effect of diabetes. This may be related with the previously reported hepatic changes such as lipid peroxidation, mitochondrial swelling and inhibition of hepatocyte proliferation observed before the development of hyperglycemia.

Animals↗

Morphological and gene expression analysis in mouse primary cultured hepatocytes exposed to streptozotocin.

Streptozotocin (SZ) is known to exert toxic effects not only on pancreatic islet beta cells but also on other organs including the liver. For analyzing direct effects of SZ on hepatocytes, we performed morphological analysis and DNA microarray analysis on mouse primary cultured hepatocytes. Hepatocytes were taken from non-treated Crj:CD-1(ICR) mice. The primary cultured hepatocytes were treated with SZ at concentrations of 0, 1, 3, 10, 30 and 100 mM. After the treatment for about 6 or 24h, cell survival assay using tetrazolium salt (WST-1), light microscopic/electron microscopic analysis and gene expression analysis were performed. For the gene expression analysis, target (labeled cRNA) prepared from total RNA of the hepatocytes was hybridized to the GeneChip Murine Genome U74A V.2 (Affymetrix). The signal intensity calculation and scaling were performed using Microarray Suite Software Ver 5.0. IC50 of the cell survival assay was around 62 mM at 6 h exposure and 7 mM at 24 h exposure. Marked chromatin margination was observed in nuclei of the hepatocytes treated with SZ at concentrations of 3 or 10mM. Gene expression analysis revealed similar expression changes to those of in vivo, i.e. up-regulation in cell proliferation/ apoptosis related genes, and down-regulation of lipid metabolism related genes. These results potently supported the hypothesis that many of the hepatic alteration including histopathological and gene expression changes are induced by direct effect of SZ rather than by the secondary effect of the hyperglycemia or hypoinsulinemia.

Animals↗

Hepatic changes in the acute phase of streptozotocin (SZ)-induced diabetes in mice.

We have reported the streptozotocin (SZ)-induced hepatic lesions in the subacute phase (4 to 12 weeks after the treatment), which are characterized by appearance of oncocytic hepatocytes, cytomegalic hepatocytes and bile duct hyperplasia. In this study, we focused on the acute phase (6 to 48 hours after the treatment) of the SZ-induced hepatic lesions of mice to clarify the onset of the hepatic alterations, especially before the induction of hyperglycemia. Livers were taken from 8-week-old Crj:CD-1 (ICR) male mice at 6, 12, 24, 36 and 48 hours after the 200 mg/kg b.w. of SZ-injection. SZ-induced hyperglycemia was noted at 36 and 48 hours after the treatment, but the hepatic changes including lipid peroxidation, mitochondrial swelling, peroxisome proliferation and inhibition of hepatocyte proliferation occurred before the elevation of the serum glucose levels. The present findings indicate the direct effects of SZ on hepatocytes rather than the secondary effects of diabetes, and certain correlations between the hepatocytic changes in the acute phase and those in the subacute one. In addition, ulcer and submucosal edema of the gallbladder were observed at 36 or 48 hours after the SZ-treatment, which can be a novel finding in SZ-treated animal.

Acute Disease↗

Role of endotoxin in 6-sulfanilamidoindazole(6SAI)-induced arthritis in rats.

6-Sulfanilamidoindazole (6SAI) induces selflimiting arthritis in rats. Since close relationships exist between arthritis and endotoxin, four experiments were conducted to clarify the relationship between endotoxin and 6SAI-induced arthritis. Endotoxin levels in the plasma from the abdominal aorta and portal vein from rats that had 6SAI (500 mg/kg) administered orally for up to 7 days remained within the control values at day 1 and day 3, and were significantly elevated at day 7. Endotoxin levels in the synovial fluid from the same rats showed no significant change. Ankle swelling and redness in rats treated 11 consecutive days with 6SAI did not ameliorate when coadministered with an anti-endotoxin agent, polymyxin B sulfate. Histopathological examination on the ankles of rats treated orally with non-arthiritogenic sulfonamides including sulfonamide, sulfamethoxazole and sulfadimethoxin (250 and 500 mg/kg/day, each compound) for 2 weeks demonstrated no inflammatory changes, while hyperplasia/hypertrophy of thyroid epithelial cells were frequently observed. When histopathological changes in the ankles from rats coadministered with 6SAI and lipopolysaccharide (LPS, Escherihia coli O55:B5, 50 microg/kg, i.v.) were compared with those in rats treated with 6SAI or LPS alone, the ankles from the 6SAI+LPS treated animals had marked edematous inflammation in the synovium and surrounding connective tissues, whereas the LPS-group had only mild focal infiltration of polymorphonuclear leukocytes in the synovium and the 6SAI-group showed no apparent changes. These results suggest that endotoxin is not a direct cause but a possible acceralating factor of 6SAI-induced arthritis, and that the effects of 6SAI on gut bacteria is not related with the pathogenesis of this model.

Administration, Oral↗