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Biomedical subjects

M Kuwajima

Publications and source records attributed to M Kuwajima.

At least 55 records · Page 3Linked to original sources

Mitochondrial abnormalities in a murine model of primary carnitine deficiency. Systemic pathology and trial of replacement therapy.

Mitochondrial abnormalities and effectiveness of replacement therapy were examined in a murine model of systemic carnitine deficiency, namely the juvenile visceral steatosis (JVS) mouse. Homozygous JVS mice revealed severe lipid deposition and abnormal mitochondria in liver, heart, skeletal muscle, and kidney, but there was no pathological change in the nervous system, though they showed cerebral signs. There were numerous ragged-red fibers in muscles, but enzyme activities of the respiratory chain were intact. Histograms of oxidative and nonoxidative muscle fibers showed an increase in small and oxidative muscle fibers in 4-week-old JVS mice, but this difference no longer existed in 8-week- or 1-year-old JVS mice. On the contrary, Mn-superoxide dismutase immunostaining of muscle showed a focal increase in every age of JVS mice. With L-carnitine treatment, JVS mice could survive for a year, but to some extent, there were the same pathological changes as those seen in untreated mice.

Animals↗

Histopathologic study of the pancreas shows a characteristic lymphocytic infiltration in Japanese patients with IDDM.

We examined at autopsy 47 cases (22 males and 25 females) of insulin-dependent diabetes mellitus (IDDM) from 21 hospitals in Japan to clarify the pathological changes that occur in the pancreas vs. those in control patients. The mean age was 39.7 +/- 13.9 (mean +/- SD) years, and the duration of IDDM from clinical onset was 13.1 +/- 6.5 years. Causes of death included renal complications, infections, acute diabetic complications such as ketoacidosis or hyper- or hypoglycemic coma, and atherosclerotic disease. This study revealed noticeable decreases in the islet area and beta cell area, and a slight decreases in the alpha cell area and preservation of the number of islets. Insulitis was found in only 1 case, representing 25% of the cases with a duration of IDDM of one year or less. Lymphocytic infiltration of the exocrine gland was seen in 22 cases (46.8%). Predominant phenotypes of the lymphocytes were T lymphocytes and macrophages. Fibrosis, fatty change and atrophy were also found. Although this is not a strictly age- and sex-matched study, the high incidence of lymphocytic infiltration of the exocrine pancreas indicates that the exocrine tissue as well as beta cells is the target of immune reactions in Japanese patients with IDDM.

Adolescent↗

Leptin receptor of Zucker fatty rat performs reduced signal transduction.

Zucker fatty (fa/fa) rats exhibit overt obesity, hypercholesterolemia, hyperlipidemia, and hyperglycemia as recessive traits. The fa mutation has been determined to be a missense mutation in the extracellular domain of the leptin receptor. We report herein the construction of CHO cells that stably express the fa-type leptin receptor and the characterization of this receptor using mRNA expression levels of the immediate early genes, c-fos, c-jun, and jun-B, which are induced by leptin as a criterion of signal transduction. The fa-type receptor not only exhibits a slightly reduced leptin-binding affinity, but also performs reduced signal transduction.

Animals↗

Demonstration of two different processes of beta-cell regeneration in a new diabetic mouse model induced by selective perfusion of alloxan.

To clarify the regeneration process of pancreatic beta-cells, we established a new mouse model of diabetes induced by selective perfusion of alloxan after clamping the superior mesenteric artery. In this model, diabetes could be induced by the destruction of beta-cells in alloxan-perfused segments, while beta-cells in nonperfused segments were spared. Intraperitoneal glucose tolerance tests showed glucose intolerance, which gradually ameliorated and was completely normalized in 1 year with a concomitant increase of insulin content in the pancreas. Histological examination showed neo-islet formation in the alloxan-perfused segment and the proliferation of spared beta-cells in the nonperfused segment. In the alloxan-perfused segment, despite a marked reduction of islets in size and number at an early stage, both the number of islets, including islet-like cell clusters (ICCs), and the relative islet area significantly increased at a later stage. Increased single beta-cells and ICCs were located in close contact with duct cell lining, suggesting that they differentiated from duct cells and that such extra-islet precursor cells may be important for beta-cell regeneration in beta-cell-depleted segment. In addition to beta-cells, some nonhormone cells in ICCs were positive for nuclear insulin promoter factor 1, which indicated that most, if not all, nonhormone cells positive for this factor were beta-cell precursors. In the nonperfused segment, the islet area increased significantly, and the highest 5-bromo-2-deoxyuridine-labeling index in beta-cells was observed at day 5, while the number of islets did not increase significantly. This indicated that the regeneration of islet endocrine cells occurs mostly through the proliferation of preexisting intra-islet beta-cells in the nonperfused segment. In conclusion, the regeneration process of beta-cells varied by circumstance. Our mouse model is useful for studying the mechanism of regeneration, since differentiation and proliferation could be analyzed separately in one pancreas.

Alloxan↗

[Clinical laboratory consultation in the general hospital].

The future of laboratory medicine depends not only on quality assurance but also on appropriate use of laboratory tests. The clinical laboratory consultation system is effective tool for clarifying purpose. As an active laboratory-initiated consultation, we report patient-oriented "Laboratory Comment" on important or abnormal test results of each patient. About one thousand laboratory comments have been accumulated over the past eight years. From these comments, we discussed the requirements of laboratory consultation skills, establish standards for laboratory data check, and a database of reported and accumulated consultations or comments.

Clinical Laboratory Information Systems↗

[Glucagon, GLP].

Explore the source record for details and available documents.

Animals↗

Substitution at codon 269 (glutamine --> proline) of the leptin receptor (OB-R) cDNA is the only mutation found in the Zucker fatty (fa/fa) rat.

We recently cloned one of spliced variant forms of rat leptin receptor (OB-R), which contains a short intracellular domain, and found obese-phenotype-linked nucleotide alteration in the extracellular domain of the cDNA from the Zucker (fa/fa) rat, which results in a glutamine269 to proline269 amino acid substitution. Reported herein are the cloning and sequencing of another spliced variant forms of rat OB-R cDNA with a long intracellular domain. Both forms of OB-R cDNA share the same extracellular domain. In the Zucker (fa/fa) rat, no changes in either the gene structure nor in the nucleotide sequence of the long intracellular domain were observed. However, the expression level of OB-R mRNA in the brain of Zucker (fa/fa) rat was higher than for lean littermates. These facts suggest that the substitution at codon 269 of the OB-R cDNA represents the crucial mutation which results in the obese phenotype of Zucker (fa/fa) rat.

Alternative Splicing↗

Carnitine transport defect in fibroblasts of juvenile visceral steatosis (JVS) mouse.

Juvenile visceral steatosis (JVS) mice are associated with systemic carnitine deficiency (Kuwajima, et al., 1991). In order to investigate the cause of this deficiency, we compared fibroblast carnitine transport activities in normal mice and JVS mice. The kinetic analysis showed that in formal fibroblasts, the Km and Vmax values for saturable uptake was 15.6 microM and 2.56 pmol/min/mg protein, respectively. In JVS fibroblasts, however, saturable uptake was not observed. There was no great difference in the linear component of uptake between normal and JVS fibroblasts. At the physiological concentration (50 microM) of carnitine, the fibroblast carnitine transport activity in JVS mice was decreased to 18% of that in normal mice. Thus there is hardly any carnitine transport activity in the fibroblasts of JVS mice, indicating that the JVS mouse can be regarded as an animal model of primary carnitine deficiency.

Animals↗

Glucagon-like peptide-1(7-36)amide enhances insulin-stimulated glucose uptake and decreases intracellular cAMP content in isolated rat adipocytes.

We investigated the effect of GLPs on glucose uptake in isolated rat adipocytes. GLP-1(7-36)amide significantly enhanced glucose uptake in the presence of 1 nM insulin. GLP-1(7-36)amide at 15 nM increased glucose uptake maximally by 56.4% as compared with 1 nM insulin alone (P < 0.01). In contrast, with less than 1 nM insulin or without insulin GLP-1(7-36)amide showed no effect on glucose uptake. Full-sequence GLP-1(1-37) at 15 nM in the presence of 1 nM insulin increased glucose uptake by 24.6% as compared with 1 nM insulin alone (P < 0.05). GLP-2 showed no effect on glucose uptake. Further, we examined the effect of GLP-1(7-36)amide on cAMP content in isolated rat adipocytes. Insulin at 1 nM caused a significant decrease of cAMP content. The combination of 15 nM GLP-1(7-36)amide and 1 nM insulin caused a further reduction of cAMP content. These data indicate that GLP-1(7-36)amide possesses augmentative effects on insulin action in isolated rat adipocytes. Furthermore, it is suggested that the stimulatory effect of GLP-1(7-36)amide occurs through the reduction of intracellular cAMP content.

1-Methyl-3-isobutylxanthine↗

Phenotype-linked amino acid alteration in leptin receptor cDNA from Zucker fatty (fa/fa) rat.

The mouse obese (ob) gene product (leptin), expressed specifically in adipose cells, regulates energy balance in mice. Both mouse diabetes (db) and rat fatty (fa) gene products are thought to play major roles in leptin signaling pathways in the hypothalamic area. Mutations of these genes in murines result in marked obesity and type II diabetes as part of a syndrome that resembles morbid obesity in humans. Reported herein are the cloning and sequencing of one of spliced variant forms of rat leptin receptor (OB-R) cDNA with a short intracellular domain. In the Zucker (fa/fa) rat, no changes in either the gene structure or the expression levels were observed. However phenotype-linked nucleotide alteration exists in the cDNA from Zucker (fa/fa) rat, which results in an amino acid substitution.

Amino Acid Sequence↗

Definition of the locus responsible for systemic carnitine deficiency within a 1.6-cM region of mouse chromosome 11 by detailed linkage analysis.

Carnitine is an essential cofactor for oxidation of mitochondrial fatty acids. Carnitine deficiency results in failure of energy production by mitochondria and leads to metabolic encephalopathy, lipid-storage myopathy, and cardiomyopathy. The juvenile visceral steatosis (JVS) mouse, an animal model of systematic carnitine deficiency, inherits the JVS phenotype in autosomal recessive fashion, through a mutant allele mapped to mouse chromosome 11. As a step toward identifying the gene responsible for JVS by positional cloning, we attempted to refine the jvs locus in the mouse by detailed linkage analysis with 13 microsatellite markers, using 190 backcross progeny. Among the 13 loci tested, 5 (defined by markers D11Mit24, D11Mit111, D11Nds9, D11Mit86, and D11Mit23) showed no recombination, with a maximum lod score of 52.38. Our results implied that the jvs gene can be sought on mouse chromosome 11 within a genetic distance no greater than about 1.6 cM.

Animals↗

Altered expression of carnitine palmitoyltransferase II in liver, muscle, and heart of mouse strain with juvenile visceral steatosis.

We conducted a quantitative study of the effect of carnitine deficiency on the mRNA level of carnitine palmitoyltransferase II in the liver, muscle and heart of mice with juvenile visceral steatosis, a strain that is systematically deficient in carnitine. The amount of carnitine palmitoyltransferase II mRNA was increased in liver and muscle of homozygotes, as compared with heterozygotes and normal controls, at 2, 4, and 8 wk of age. The mRNA levels of this enzyme were normalized after carnitine administration. The mRNA level of carnitine palmitoyltransferase II in the heart was increased only at 8 wk, and was not affected by carnitine administration. These results suggest that carnitine displays some effect on the mRNA level of the carnitine palmitoyltransferase II gene in liver and muscle, probably through fatty acid metabolic change.

Ammonia↗

Disordered expression of hepatic glycolytic and gluconeogenic enzymes in Otsuka Long-Evans Tokushima fatty rats with spontanteous long-term hyperglycemia.

Expression of key regulatory enzymes involved in glucose metabolism was studied in the livers of Otsuka Long-Evans Tokushima fatty (OLETF) rats, a model of non-insulin dependent diabetes mellitus. The activity and mRNA levels of glucokinase and L-type pyruvate kinase was increased in the liver of OLETF rats compared with control rats. There was no such remarkable change in liver-type phosphofructokinase. The activities of glucose-6-phosphatase and fructose-1,6-biphosphatase also increase despite high plasma levels of glucose and insulin. The activity of phosphoenolpyruvate carboxykinase did not show any significant change. The mRNA levels for fructose-1,6-biphosphatase, and phosphoenolpyruvate carboxykinase exhibited no marked changes. These results suggest that the expression of glucose-6-phosphatase and fructose-1,6-biphosphatase is disordered in OLETF rats.

Animals↗

High glucose and hyperosmolarity increase heparin-binding epidermal growth factor-like growth factor (HB-EGF) production in cultured human aortic endothelial cells.

Heparin-binding epidermal growth factor-like growth factor (HB-EGF) has been shown to be a potent smooth muscle cell (SMC) mitogen and chemoattractant, and might be a candidate factor for the progression of atherosclerosis. We have investigated the effects of high glucose and hyperosmolarity on HB-EGF production in cultured human aortic endothelial cells. Following the culture of the cells for 2 days with high concentrations of glucose or in the hyperosmolar conditions, we measured the content of HB-EGF and the rate of production in the cells using a semi-quantitative immunofluorescent technique and a metabolic radiolabelling method. With high glucose (16.6 mmol) and hyperosmolar conditions (glucose 5.5 mmol + mannitol 11.1 mmol or glucose 5.5 mmol + raffinose 11.1 mmol), the content of HB-EGF was significantly increased and the metabolic rate was also significantly increased (more than a twofold increase, compared to that of 5.5 mmol glucose). In conclusion, conditions of high glucose or hyperosmolarity increase HB-EGF production in human aortic endothelial cells. These results suggest that diabetic macroangiopathy might be attributed at least in part to HB-EGF-related vascular changes which may be induced by glucose.

Aorta↗

Islet-infiltrating t lymphocytes in insulin-dependent diabetic patients express CD80 (B7-1) and CD86 (B7-2).

Insulin-dependent diabetes mellitus (IDDM) results mainly from T cell mediated pancreatic beta cell destruction. To fully activate antigen specific T cells, current evidence suggests that two signals are required. One signal is delivered via the antigen specific T cell receptor (TCR) when engaged by major histocompatibility complex presented antigen (MHC:Ag), the other via the T cell's CD28 when engaged by CD80/86. Recent studies have demonstrated that transgenic mice expressing CD80 on their pancreatic beta cells are susceptible to autoimmune beta cell destruction. To further explore whether CD80/86 expression plays a role in IDDM pathogenesis, we analysed pancreatic biopsy specimens from 16 recent-onset IDDM patients (13 men and 3 women; age 29.7 +/- 8.8 years) for CD80/86 expression. While no biopsy revealed any islet cell specific CD80 or CD86 expression, biopsies from six of the nine patients with insulitis revealed both CD80 and CD86 expression on the islet infiltrating cells. Triple immunofluorescent staining for CD80/86, CD3, and glucagon revealed that the CD80/86-positive cells were also CD3-positive. Of the CD3-positive cells, 19.4% expressed CD80 and 21.7% expressed CD86. CD80 and CD86-positive cells were similarly distributed throughout the inflamed islets. These data suggest that CD28 engagement with CD80/86 may play a pathogenic role in the beta cell destruction underlying IDDM.

Adult↗