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Biomedical subjects

K Tanigawa

Publications and source records attributed to K Tanigawa.

At least 19 recordsLinked to original sources

[Basic life support skills of the first aid course II/standard first aid course ambulance personnel].

This study was undertaken to evaluate thirteen elements of basic life support skills of the First Aid Course II/Standard First Aid Course (FAC II/SFAC) ambulance personnel and to determine the effects of FAC II/SFAC education and basic life support instructor courses. Ninety-eight FAC II/SFAC ambulance personnel were enrolled in this study. It was found that only half of the personnel possessed the skills required for assessing respiration, mask holding and producing adequate tidal volume by the bag-valve-mask devices at the acceptable levels. Regarding the effect of the time that had passed following FAC II/SFAC education, we did not find any correlation between the time and the levels of skills. However, there was a tendency in which the skills for assessing mental status/respiration and for manual airway control were less adequately possessed by FAC II/SFAC personnel who did not take basic life support instructor courses, particularly those who had completed FAC II/SFAC education more than four years prior to this study. Since airway control and respiratory management play a key role in saving patients in life-threatening conditions, we need to critically reevaluate how the initial FAC II/SFAC education and continuing education programs can best be implemented.

Ambulances

Fulminant hepatitis complicated by small intestine infection and massive hemorrhage.

A 34-year-old man diagnosed with fulminant hepatitis, caused by hepatitis B virus, and acute renal failure was referred to our hospital. After admission to the intensive care unit, the liver and renal failure were ameliorated. Melena requiring transfusion occurred during the course of his illness. Endoscopic examination demonstrated pseudomembranes, erosions, ulcers, and hemorrhage in the duodenum, the upper jejunum, and the terminal ileum, suggesting widespread lesions throughout the small intestine. Pseudomonas putida, Xanthomonas maltophilia, and Candida glabrata were cultured from ileal fluid. Candida glabrata was also detected in sputum, feces, and on an intravenous catheter tip. The patient was treated with amphotericin B and miconazole. The melena was ameliorated, but inflammation of the small intestine persisted. Although we had difficulty in treating the enteritis, the patient survived, and 1 year later colonoscopic examination demonstrated no abnormalities. The small intestine is a difficult site to examine, but endoscopic examination of this site is important when massive hemorrhage develops.

Adult

Rat liver postischemic lipid peroxidation and vasoconstriction depend on ischemia time.

In this investigation, we used chemiluminescence to study the ability of increasing durations of ischemia (1, 2, or 2.5 h) to induce enhanced generation of reactive oxygen species in a crystalloid perfused rat liver model. To evaluate the effect of reactive oxygen species generation upon the development of the postischemic hypoperfusion, hepatic vascular resistance was simultaneously monitored. One hour of ischemia did not produce sustained reactive oxygen species generation or development of no-reflow. Two hours of ischemia did not result in sustained reactive oxygen species generation but did produce no-reflow. Sustained reactive oxygen production was achieved after 2.5 h of ischemia and was accompanied by the development of no-reflow. We found that 2.5 h of ischemia is the threshold for sustained lipid peroxidation. Both lipid peroxidation and no-reflow could be mitigated through the administration of superoxide dismutase. Superoxide dismutase could reduce the amount of cell injury due to the enhanced lipid peroxidation induced by 2.5 h of ischemia. Limitation of reactive oxygen species generation to a critical threshold, either by restricting the duration of ischemia or by pharmacological intervention, may be an important means of preventing further cellular injury through no-reflow and lipid peroxidation.

Animals

Interferon-gamma-inducing factor elicits antitumor immunity in association with interferon-gamma production.

Interferon-gamma-inducing factor (IGIF) is a novel cytokine that stimulates T-cell proliferation, augments natural killer (NK) cell lytic activity, and induces interferon-gamma (IFN-gamma) production in established type 1 T-helper (Th1) cells in the presence of anti-CD3 antibody. The in vitro induction of IFN-gamma by recombinant murine IGIF in these cells was more potent than that induced by murine interleukin-12 (IL-12) and occurred apparently independent of murine IL-12. Here we report that subcutaneous injection into mice of tumor cells transfected with murine IGIF complementary DNA (cDNA) resulted in > or = 10-fold increase of mitogen-stimulated IFN-gamma production in cultured splenocytes. In addition, IGIF-transfected Renca and K1735 tumor cells can be rejected in vivo. The IGIF antitumor effect was abrogated in mice that were sublethally irradiated or depleted of both CD4+ and CD8+ T cells but not in mice depleted of either subpopulation alone. The antitumor effect mediated by IGIF appears to be dependent on IFN-gamma production, because in vivo neutralization of IFN-gamma was accompanied by growth of IGIF-transfected tumors in 100% of the animals. Taken together, our results show that murine IGIF can elicit T-cell-dependent antitumor immunity associated with IFN-gamma induction.

Animals

Effect of acarbose (alpha-glucosidase inhibitor) on disaccharase activity in small intestine in KK-Ay and ddY mice.

The hypoglycemic effect and the alpha-glucosidase activity inhibition of acarbose (AC:alpha-glucosidase inhibitor) were investigated in normal and KK-Ay mice, an animal model of noninsulin-dependent diabetes mellitus (NIDDM). AC improved hyperglycemia after an oral administration of maltose or sucrose, dose dependently in normal mice (1, 10, and 50mg/kg body weight) and in KK-Ay mice (50mg/kg). Furthermore, AC (50mg/kg) significantly inhibited maltase and sucrase activities in the small intestines of normal and KK-Ay mice (inhibitory efficacy: sucrase > maltase). The enzymatic inhibition in KK-Ay mice is stronger than in normal mice. However, AC (50 mg/kg) did not suppress the blood glucose in oral lactose tolerance and did not inhibit the lactase activity in either normal or KK-Ay mice. These findings indicate that the AC effect on the inhibition of alpha-glucosidase activity is selective for sucrase and maltase in normal and NIDDM mice.

Acarbose

Type 1 versus type 2 cytokine release by Vbeta T cell subpopulations determines in vivo antitumor reactivity: IL-10 mediates a suppressive role.

We have previously reported that CD8+ tumor-draining lymph node (TDLN) cells activated with anti-CD3 and IL-2-mediated tumor regression in adoptive immunotherapy. In this study, we examined the TCR Vbeta repertoire usage of TDLN cells with respect to cytokine release profiles and therapeutic efficacy in vivo. The majority of the whole population of TDLN cells after activation with anti-CD3 were composed of Vbeta3+, -5+, -7+, -8+, and -11+ cells. Enrichment of Vbeta subsets of TDLN cells by in vitro activation with anti-Vbeta mAb revealed Vbeta8+ cells released high amounts of IFN-gamma and granulocyte/macrophage-CSF (GM-CSF) with minimal amounts of IL-10 in response to tumor and mediated tumor regression in vivo. In contrast, enriched populations of Vbeta5+, Vbeta7+, and Vbeta11+ cells released low amounts of IFN-gamma and GM-CSF with high levels of IL-10 and had no in vivo antitumor reactivity. In vitro depletion of specific Vbeta subsets from the whole TDLN pool confirmed that the profile of cytokines released correlated with in vivo antitumor function. Therapeutic efficacy mediated by TDLN cells required the release of IFN-gamma and GM-CSF since in vivo neutralization of both cytokines inhibited tumor regression. The administration of anti-IL-10 mAb abrogated the suppressed antitumor response manifested by adoptively transferred TDLN cells, which elaborated increased levels of IL-10. Our study documents that type 1 cytokine release (i.e., IFN-gamma and GM-CSF) promotes in vivo tumor Ag recognition, in contrast to type 2 release (i.e., IL-10), which suppresses this interaction, and discriminates the functional activity of Vbeta subpopulations of effector cells.

Adoptive Transfer

Novel point mutation in the uroporphyrinogen III synthase gene causes congenital erythropoietic porphyria of a Japanese family.

The molecular basis of the uroporphyrinogen III synthase (UROIIIS) deficiency was investigated in a member of a Japanese family. This defect in heme biosynthesis is responsible for a rare autosomal recessive disease: congenital erythropoietic porphyria (CEP) or Günther's disease. The patient was homozygous for a novel missense mutation: a G to T transition of nucleotide 7 that predicted a valine to phenylalanine substitution at residue 3 (V3F). The parents were heterozygous for the same mutation. The loss of UROIIIS activity was verified by an in vitro assay system. The corresponding mutated protein was expressed in Escherichia coli and no residual activity was observed. Further studies are needed to determine whether the mutations of the UROIIIS gene (UROS) have a specific profile in Japan compared to European or American countries.

Adult

Antidiabetic effect of seishin-kanro-to in KK-Ay mice.

The hypoglycemic effect of Seishin-kanro-to (SK) was investigated in KK-Ay mice, one of the non-insulin dependent diabetic mellitus types. SK (1700 mg/kg) reduced the blood glucose of KK-Ay mice from 557 +/- 17 to 383 +/- 36 mg/100 ml 7 hours after single oral administration (P < 0.001). SK also decreased the blood glucose and improved glucose tolerance 5 weeks after repeated administration in KK-Ay mice. These results support, therefore, the use of SK in patients with diabetes and confirm its role as a traditional medicine. In addition, the active plants of SK were identified as the rhizome of Anemarrhena asphodeloides Bunge and the radix of Rehmannia glutinosa Liboschitz.

Animals

Effect of aging on B-cell function and replication in rat pancreas after 90% pancreatectomy.

We studied the effect of aging on B-cell function and replication in depancreatized rats. Male Wistar rats, at the ages of 1, 5, and 15 months, underwent 90% pancreatectomy (Px) or a sham operation, and islet function and regeneration were examined 3 weeks later. Plasma glucose levels in 1-month-old rats reached a peak 2 weeks after Px and then declined, while those in 5- and 15-month-old rats reached significant levels as early as the day after Px or 2 days after surgery and continued to increase over the following 3 weeks. Consequently, in contrast to young Px rats, weight loss due to severe diabetes was observed in 5- and 15-month-old Px rats. Plasma glucose responses to intravenous glucose loading (0.5 g/kg body weight) were much greater in older Px rats than in younger rats. There was a marginal insulin response to glucose in 1-month-old Px rats, whereas no insulin response to glucose was observed in older Px animals. The insulin content of the residual pancreas was increased threefold in 1-month-old Px rats, but there was no increase in 5- and 15-month-old Px rats. These data demonstrate that the effect of reducing islet mass is much greater in aged rats than in young rats and that the replicatory capacity of B cells tends to diminish after adulthood has been reached.

Aging

Docosahexanoic acid (DHA) improved glucose and lipid metabolism in KK-Ay mice with genetic non-insulin-dependent diabetes mellitus (NIDDM).

The hypoglycemic and hypolipidemic effect of docosahexaenoic acid (DHA; C22: 6omega-3) ethyl ester was examined in KK-Ay mice and neonatal streptozotocin-induced diabetic (NSZ) which are respectively obese and lean animal models of non-insulin-dependent diabetes mellitus (NIDDM), and in ddY normal mice. Single administration of DHA (500 mg/kg body weight) to KK-Ay mice significantly reduced (p<0.05) the blood glucose levels (BG) (p<0.05) and plasma free fatty acid levels (FFA) (p<0.05) at 10 h after oral administration when compared with control group. DHA (500 mg/kg body weight)-treated NSZ and normal mice, however, showed no change in these parameters. In addition, repeated administration of DHA (100 mg/kg) to KK-Ay mice significantly suppressed the increment of BG (p<0.05) and plasma triglyceride levels (TG) (p<0.01), and significantly decreased FFA (p<0.05) at 30 d compared with control group. DHA also significantly decreased the blood glucose at 60 and 120 min on insulin tolerance test (ITT). From these findings, it seems likely that DHA exhibits its hypoglycemic effects by increasing insulin sensitivity. It is concluded that DHA would be useful for treatment of obese type NIDDM with insulin resistance.

Animals

A comparative study of high-fat diet containing fish oil or lard on blood glucose in genetically diabetic (db/db) mice.

The effects of high-fat diets containing fish oil or lard on blood glucose and plasma insulin after oral glucose loading were compared in genetically diabetic (db/db) mice, one of the animal models of non-insulin-dependent diabetes mellitus (NIDDM) with hyperinsulinemia. The blood glucose levels were significantly decreased in 27% of the mice fed high-fat diets containing 20% fish oil 30 and 60 min after the oral administration of glucose (both; p < 0.05). Conversely, the plasma insulin levels were significantly increased 30 min after the glucose loading as compared to 27% of the mice fed high-fat diets containing 20% lard (p < 0.01). In addition, a significant hypoglycemic effect was observed 60 min after the subcutaneous administration of insulin to mice on the fish oil diet (p < 0.05), whereas no effect was demonstrated in the case of those on the lard diet. The average body weight of the fish oil-treated mice was not significantly different from that of the lard-treated mice. The fish oil diet has a beneficial effect on glucose tolerance by increasing the insulin secretory capacity from pancreatic beta cells and also ameliorating insulin resistance.

Animals

Unique case of growth hormone (GH) deficiency accompanied by clinical anophthalmia, hypoplastic orbits, digital dysplasia, short stature, obesity, and diabetes mellitus.

A 43-year-old female was admitted to our hospital for polydipsia and hyperglycemia. She had total blindness and globes were not recognized by inspection, indicating clinical anophthalmia. Physical examination revealed short stature, obesity, prematurely gray hair, shortness of fingers and toes, syndactyly, and multiple dental caries. Laboratory examination showed hyperglycemia, increased glycosilated hemoglobin (HbA1c) and insulin resistance on euglycemic glucose clamp. Blunted growth hormone (GH) secretion was shown in response to insulin-induced hypoglycemia, arginine infusion, and GH-releasing hormone (GHRH) loading test, and in 24 h spontaneous GH profile. Magnetic resonance imaging (MRI) and computed tomography (CT) showed dysostosis of orbit, defect of optic nerve, enlarged suprasellar cistern, and prolonged pituitary stalk. This may be the first report of a unique case with GH deficiency accompanied by clinical anophthalmia, hypoplastic orbits, digital dysplasia, short stature, obesity, and diabetes mellitus.

Abnormalities, Multiple

Role of endogenous hypergastrinemia in regenerating endocrine pancreas after partial pancreatectomy.

We studied the possible role of endogenous gastrin in the regenerating pancreas. Male Wistar rats underwent sham operation or 90% partial pancreatectomy (Px). Lansoprazole (30 mg/kg body wt), a proton pump inhibitor (PPI), was given p.o. for 3 weeks after surgery. Plasma glucose levels were higher in Px rats than in shams. Lansoprazole lowered plasma glucose levels in the Px rats. In addition, integrated insulin secretion during an oral glucose tolerance test (2 g/kg body wt) was significantly (p < 0.01) higher in lansoprazole-treated Px rats than in control Px rats, while lansoprazole did not affect insulin secretion in shams. Fasting serum gastrin levels were higher (p < 0.01) in lansoprazole-treated animals than in controls both in sham rats and in Px rats. Furthermore, lansoprazole increased the pancreas weight per body weight and elevated the insulin content of the pancreas in Px rats. These results suggest that endogenous hypergastrinemia has a trophic effect on endocrine pancreas during regenerating processes and that administration of PPI may be clinically beneficial to the remnant pancreas after pancreatectomy if the whole stomach is preserved.

2-Pyridinylmethylsulfinylbenzimidazoles

A novel point mutation in congenital erythropoietic porphyria in two members of Japanese family.

The molecular basis of the uroporphyrinogen III synthase (UROIIIS) deficiency was investigated in two members of a Japanese family. This defect in heme biosynthesis is responsible for a rare autosomal recessive disease: congenital erythropoietic porphyria (CEP) or Gnther's disease. The first patient was homoallelic for a novel missense mutation: a T to C transition of nucleotide 634 that predicted a serine to proline substitution at residue 212 (S212P). The second patient appeared heteroallelic, carrying the same missense mutation and a nonsense mutation: a C to T change at nucleotide 745, resulting in a premature stop at codon 249, instead of a glutamine (Q249X). The corresponding mutated proteins were expressed in Escherichia coli and no residual activity was observed. A family study was also performed to determine the carrier status.

Adult

Distribution of nitric oxide synthase-containing nerves in the aganglionic intestine of mutant rats: a histochemical study.

We examined the distribution of nerves containing nitric oxide synthase in the intestine of congenitally aganglionic rats, using a reduced nicotinamide adenine dinucleotide phosphate diaphorase histochemical method for whole-mount and cryostat specimens. A constricted intestinal segment extends from the terminal ileum to the anus in this mutant. No nerve elements with the activity were found in the affected terminal ileum, cecum and proximal colon. Although intrinsic ganglionic neurons were absent along the constricted intestine, nerve fibers with the activity were found in both the submucous and intermuscular layers distal to the proximal colon. These fibers increased in density towards the rectum, forming hypertrophic nerve bundles and unusual fiber networks. However, positive fibers were never seen within the circular and longitudinal musculature of the constricted lesion. Some of these hypertrophic nerve bundles were continuous with ectopic ganglia that were situated in the adventitial connective tissue around the lower rectum and in the submucosa near the anus. The hypertrophic nerve bundles seemed to have an extrinsic origin; some of them may have originated from ectopic ganglia. These results suggest that the defective distribution of nerves containing nitric oxide synthase may be involved in the pathogenesis of congenital colonic aganglionosis.

Animals

Expression of hepatocyte growth factor, transforming growth factor alpha, and transforming growth factor beta 1 messenger RNA in various human liver diseases and correlation with hepatocyte proliferation.

Hepatocyte growth factor (HGF) and transforming growth factor alpha (TGF-alpha) stimulate liver regeneration, whereas transforming growth factor beta 1 (TGF-beta 1) inhibits it in rats. However their significance in human liver diseases, especially in severe acute liver injury, remains unclear. We studied HGF, TGF-alpha, and TGF-beta 1 messenger RNA (mRNA) expression in the livers of patients with live diseases using a competitive reverse transcriptase polymerase chain reaction. As little as a twofold difference in mRNA expression could be detected from minute liver biopsy samples. We then examined cell proliferation using proliferating cell nuclear antigen (PCNA) staining. HGF mRNA levels were significantly higher (approximately threefold) in acute hepatitis (AH) than in exacerbation of chronic liver disease (EX) (P < .05). TGF-alpha mRNA levels were significantly greater in AH (approximately twofold) than EX (P < .05), and the levels were significantly higher (approximately threefold) in chronic hepatitis (CH) than in EX (P < .05). The TGF-beta 1 mRNA levels in all the groups were not significantly different. In acute liver injury (AH and EX), there was a significant correlation between HGF mRNA expression and the PCNA labeling index (LI) in the liver (r = .87, P < .005). TGF-alpha mRNA expression also correlated with the PCNA LI (r = .92,P < .0001). There was no significant correlation between the serum HGF and the PCNA LI in the liver. In conclusion, HGF and TGF-alpha produced in the liver stimulate hepatocyte proliferation in response to acute liver injury in humans.

Base Sequence

Ontogeny of FAD-linked glycerophosphate dehydrogenase in rat pancreatic islets.

The activities of the mitochondrial FAD-linked glycerophosphate dehydrogenase (m-GDH), glutamate dehydrogenase, alpha-ketoglutarate dehydrogenase, glutamate-pyruvate transaminase (GPT) and glutamate-oxaloacetate transaminase were measured in islet and liver homogenates from fetal, neonatal, adult male, adult female, pregnant and lactating rats. Either parallel or dissociated ontogenic changes were observed in islet and liver homogenates. The activity of islet m-GDH was slightly, albeit not significantly, lower in neonates than in adult rats, comparable in male and female adult animals, unaffected by pregnancy, and increased during lactation. It was much higher in fetal or adult islets cultured for 7 days than in freshly isolated islets from adult rats. In cultured islets from adult rats, the increase in m-GDH activity coincided with a dramatic decrease of GPT activity, a situation the mirror image of that found in several animal models of non-insulin-dependent diabetes mellitus. The intrinsic properties of m-GDH, as judged by comparison of measurements made by either a radioisotopic or a colorimetric procedure, were not identical in islet and liver homogenates and differed between fetal and adult islets, suggesting the existence of distinct iso-enzymes. These findings illustrate adaptive changes of islet enzymes, with exclusive or partial mitochondrial location, in ontogenic situations characterized by a remodelling of fuel homeostasis.

Animals