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Biomedical subjects

Yukio Ikeda

Publications and source records attributed to Yukio Ikeda.

At least 19 recordsLinked to original sources

Association between serum ferritin and circulating oxidized low-density lipoprotein levels in patients with type 2 diabetes.

The oxidative modification of low-density lipoproteins (LDL) plays a central role in the initiation and acceleration of atherosclerosis. Iron plays a part in the formation of highly toxic free radicals such as hydroxide and superoxide anions, which can induce lipid peroxidation. We investigated whether serum iron status was associated with circulating oxidized LDL (oxLDL) levels in type 2 diabetic patients, in whom oxidative stress and susceptibility to lipid oxidation were supposedly increased. Serum ferritin levels were significantly correlated with plasma oxLDL concentrations in both male and female patients (p<0.02 and p<0.05, respectively). No correlation was detected between ferritin and LDL-cholesterol (LDL-C) concentrations despite the close correlation between LDL-C and oxLDL concentrations (p<0.0001). Stepwise regression analysis showed that ferritin concentration was an independent positive determinant of oxLDL level, in addition to triglyceride concentration, body mass index and sex. This is the first report to show that serum ferritin is associated with circulating oxLDL levels in patients with type 2 diabetes. Further work is required to establish a causative link between iron excess and the development of diabetic vascular complications.

Aged↗

A neuropeptide ligand of the G protein-coupled receptor GPR103 regulates feeding, behavioral arousal, and blood pressure in mice.

Here, we report the isolation and characterization of an endogenous peptide ligand of GPR103 from rat brains. The purified peptide was found to be the 43-residue RF-amide peptide QRFP. We also describe two mouse homologues of human GPR103, termed mouse GPR103A and GPR103B. QRFP binds and activates the human GPR103, as well as mouse GPR103A and GPR103B, with nanomolar affinities in transfected cells. Systematic in situ hybridization analysis in mouse brains showed that QRFP is expressed exclusively in the periventricular and lateral hypothalamus, whereas the two receptor mRNAs are distinctly localized in various brain areas without an overlap to each other. When administered centrally in mice, QRFP induced feeding behavior, accompanied by increased general locomotor activity and metabolic rate. QRFP-induced food intake was abolished by preadministration of BIBP3226, a specific antagonist for the Y1 neuropeptide Y receptor. Hypothalamic prepro-QRFP mRNA expression was up-regulated upon fasting and in genetically obese ob/ob and db/db mice. Central QRFP administration also evoked highly sustained elevation of blood pressure and heart rate. Our findings suggest that QRFP and GPR103A/B may regulate diverse neuroendocrine and behavioral functions and implicate this neuropeptide system in metabolic syndrome.

Amino Acid Sequence↗

Edaravone inhibits rheumatoid synovial cell proliferation and migration.

Rheumatoid arthritis (RA) is characterized by synovial proliferation and migration which is induced by proinflammatory cytokines or oxidative stress, followed by joint destruction. Edaravone, clinically available free radical scavenger in Japan, is confirmed to be beneficial in the acute stage of cerebral infarction. We aimed to investigate whether edaravone suppressed in vitro proliferation and migration of synovial cells (SC) induced by IL-1beta. SC proliferation and migration induced by IL-1beta were dose-dependently suppressed by edaravone at the clinically available concentration. These data suggest that edaravone has potential effects to suppress SC proliferation and migration, followed by suppression of synovial proliferation in RA. Therefore, edaravone, an antioxidant agent, might be a novel therapeutic agent which develops the new strategy for treatment of RA, and more detailed studies are required to establish the therapeutic effect of edaravone on RA in vivo.

Aged↗

Magnetic resonance imaging, clinical manifestations, and management of Rathke's cleft cyst.

OBJECTIVE: The management of Rathke's cleft cyst (RCC), particularly in patients with no symptoms or with only minor endocrinopathies, has not yet been established. We retrospectively analysed patients with RCC to elucidate correlations between the clinical manifestations, magnetic resonance imaging (MRI) findings, histology and therapeutic outcomes. METHODS: We retrospectively studied 37 patients with RCC, who underwent computed tomography (CT), MRI and endocrinological examinations, of whom 27 patients underwent surgical intervention. RESULTS: The presence of frontal headaches and anterior pituitary dysfunction was unrelated to the cyst size but was more frequent in patients with high- and isointensity cysts on T1-weighted images (WIs) than those with low-intensity cysts (P=0.0159 and P=0.0249, respectively). All three patients with posterior pituitary dysfunction had a high-intensity cyst on T1-WI (P=0.0385), whereas pituitary dysfunction was not observed in patients with a low-intensity cyst on T1-WI. In contrast to the excellent therapeutic outcomes with regard to visual disturbance and hyperprolactinaemia, recovery of pituitary dysfunction was rare; only three of nine patients with hypopituitarism showed improvement. Among six patients with histologically recognized intense chronic inflammation in the cyst wall, five patients had an RCC of T1 high intensity (P=0.0161), two patients had distinct rim enhancement on MRI (P=0.0060), all patients had frontal headaches (P=0.0130), and four patients had associated hypopituitarism (P=0.0243), none of which improved after surgical intervention. CONCLUSION: RCCs of high- and isointensity on T1-weighted images, which contain mucous material within the cyst, may be associated with chronic inflammation that can potentially cause irreversible endocrine dysfunction. In asymptomatic patients with RCCs of these MR intensities, close follow-up with precise endocrinological evaluation and gadolinium-enhanced MRI is necessary to avoid occult progression of the inflammation.

Adult↗

Edaravone inhibits the disease activity in rheumatoid arthritis.

A male patient with rheumatoid arthritis (RA) developed acute stroke and was treated with the free radical scavenger, edaravone. Polyarthralgia improved with a reduction in serum C-reactive protein concentration soon after the start of edaravone administration. The disease activity score 28 (DAS28) also decreased. Edaravone appears to be effective for the control of RA. The usefulness of this potentially novel therapeutic agent should be tested in a well designed randomized controlled trial.

Antipyrine↗

Susceptibility alleles and haplotypes of human leukocyte antigen DRB1, DQA1, and DQB1 in autoimmune polyglandular syndrome type III in Japanese population.

BACKGROUND: It has been reported that HLA class II haplotypes DRB1*0405-DQA1*0303-DQB1*0401 and DRB1*0901-DQA1*0302-DQB1*0303 are major susceptibility haplotypes for type 1 diabetes mellitus (DM) in Japanese population. However, little has been reported on the susceptibility HLA class II haplotypes in Japanese patients with autoimmune polyglandular syndrome type II and type III (APS III). PATIENTS AND METHODS: HLA class II haplotypes of DRB1-DQA1-DQB1 in 31 patients with APS III, 14 patients with Hashimoto's thyroiditis alone, and 15 patients with Graves' disease alone were examined in Japanese population. APS III patients were divided into three groups (A, B, and C) depending on the combination of autoimmune endocrine diseases. RESULTS: In 13 APS III patients with both Hashimoto's thyroiditis and type 1 DM (group A), the haplotype frequencies of the HLA DRB1*0802-DQA1*0401-DQB1*0402 and DRB1*0901-DQA1*0302-DQB1*0303 were significantly higher than in the controls. In patients with Hashimoto's thyroiditis alone, the haplotype frequency of DRB1*0901-DQA1*0302-DQB1*0303 was significantly higher than in controls, whereas the frequency of DRB1*0802-DQA1*0401-DQB1*0402 did not differ significantly from those in the controls. In 11 APS III patients with both Graves' disease and type 1 DM (group B), the haplotype frequencies of HLA DRB1*0405-DQA1*0303-DQB1*0401 and DRB1*0802-DQA1*0301-DQB1*0302 were significantly higher than in controls. In patients with Graves' disease alone, the haplotype frequency of DRB1*0803-DQA1*0103-DQB1*0601 were significantly higher than those in controls, suggesting that the susceptibility haplotypes for group B APS III differed from those for Graves' disease alone. In 7 APS III patients with both autoimmune thyroid diseases and pituitary disorders (group C), the haplotype frequency of HLA DRB1*0405-DQA1*0303-DQB1*0401 was significantly higher than in controls. CONCLUSIONS: Susceptible HLA class II haplotypes of DRB1-DQA1-DQB1 for APS III differ between the Japanese and Caucasian populations. More interestingly, the susceptible HLA class II haplotypes differ among the three types of Japanese APS III and are not merely a combination of susceptibility haplotypes of each endocrine disease.

Adult↗

SOX6 attenuates glucose-stimulated insulin secretion by repressing PDX1 transcriptional activity and is down-regulated in hyperinsulinemic obese mice.

In obesity-related insulin resistance, pancreatic islets compensate for insulin resistance by increasing secretory capacity. Here, we report the identification of sex-determining region Y-box 6 (SOX6), a member of the high mobility group box superfamily of transcription factors, as a co-repressor for pancreatic-duodenal homeobox factor-1 (PDX1). SOX6 mRNA levels were profoundly reduced by both a long term high fat feeding protocol in normal mice and in genetically obese ob/ob mice on a normal chow diet. Interestingly, we show that SOX6 is expressed in adult pancreatic insulin-producing beta-cells and that overexpression of SOX6 decreased glucose-stimulated insulin secretion, which was accompanied by decreased ATP/ADP ratio, Ca(2+) mobilization, proinsulin content, and insulin gene expression. In a complementary fashion, depletion of SOX6 by small interfering RNAs augmented glucose-stimulated insulin secretion in insulinoma mouse MIN6 and rat INS-1E cells. These effects can be explained by our mechanistic studies that show SOX6 acts to suppress PDX1 stimulation of the insulin II promoter through a direct protein/protein interaction. Furthermore, SOX6 retroviral expression decreased acetylation of histones H3 and H4 in chromatin from the promoter for the insulin II gene, suggesting that SOX6 may decrease PDX1 stimulation through changes in chromatin structure at specific promoters. These results suggest that perturbations in transcriptional regulation that are coordinated through SOX6 and PDX1 in beta-cells may contribute to the beta-cell adaptation in obesity-related insulin resistance.

Acetylation↗

Identification of N-arachidonylglycine, U18666A, and 4-androstene-3,17-dione as novel insulin Secretagogues.

The glucose-induced insulin secretion is fine-tuned by numerous factors. To systematically identify insulinotropic factors, we optimized a primary beta-cell-based functional assay to monitor intracellular Ca2+ flux ([Ca2+]i). By this assay system, we successfully identified several insulinotropic peptides including cholecystokinin, gastrin releasing peptide, vasopressin, and oxytocin from tissue extracts. Screening of an assortment of chemical compounds, we determined three novel insulin secretagogues: N-arachidonylglycine (NAGly), 3beta-(2-diethylamino-ethoxy) androstenone hydrochloride (U18666A), and 4-androstene-3,17-dione. The NAGly increased [Ca2+]i through stimulation of the voltage-dependent Ca2+ channels and it was dependent on extracellular glucose level. On the other hand, U18666A and 4-androstene-3,17-dione increased [Ca2+]i in the presence of K ATP channel opener diazoxide while it was inhibited by the presence of Ca2+ channel blocker nitrendipine, suggesting that their effects are independent of K ATP channel. These unique features will be useful for further development of insulinotropic factors and drugs for treating type 2 diabetes.

Androstenedione↗

Type 1 diabetes developed in a type 2 diabetic patient with severe insulin resistance.

We report a 38-year-old female with severe insulin resistance who developed type 1 diabetes after being diagnosed with type 2 diabetes. At the initial examination, BMI was 31.8 kg/m(2) and HbA1c 10.8%. Her insulin secretion was sufficient (urinary CPR 80 microg/day) and the GAD antibody was negative. Following treatment with insulin and glimepiride, HbA1c decreased to 6.3%, though diabetic control deteriorated after 1 year (HbA1c, 11.0%) and her body weight was reduced in a short period, from 78 to 67 kg. Re-examination revealed that the GAD antibody was high (1870 U/mL, normal <1.5) and the anti-islet cell antibody positive, and insulin secretion decreased (urinary CPR 18 microg/day). Further, a hyperinsulinemic-euglycemic cramp study using an artificial pancreas showed that the patient had severe insulin resistance [glucose infusion rate 1.8 mg/(min kg); normal, 7.4+/-2.4 (mean+/-S.D.)]. An HLA-analysis showed that she was a homozygote of haplotype DRB1*0901-DQB1*0303. In spite of strict insulin therapy, glucose control was not improved. Pioglitazone could not be used because of side effects, however, metformin was effective for glucose control. The accumulation of case reports of patients with type 1 diabetes and insulin resistance is important for studying the relationship between the onset of the disease and insulin resistance, and for developing an effective treatment strategy.

Adult↗

Pioglitazone prevents reactive hypoglycemia in impaired glucose tolerance.

A 42-year-old woman with hypoglycemic symptoms that occurred several hours after a meal visited our hospital. The hypoglycemic symptoms appeared when she was 37 years old, and her plasma glucose level had been assessed as less than 60 mg/dL when she experienced the symptoms. One year before, she had been diagnosed with reactive hypoglycemia by 75 g-oral glucose tolerance test (OGTT), which showed a normal glucose tolerance (NGT) pattern, and had begun taking an alpha-glucosidase inhibitor and nutritional treatment. A 75 g-OGTT on admission showed hypoglycemia at 240 min after glucose loading, excessive insulin secretion and an impaired glucose tolerance (IGT) pattern. A euglycemic-hyperinsulinemic clamp study demonstrated decreased insulin sensitivity. Therefore, we suspected that she had reactive hypoglycemia associated with insulin resistance and treated her with 15 mg/day pioglitazone. Her hypoglycemic symptoms completely disappeared after treatment with pioglitazone; insulin sensitivity in a euglycemic-hyperinsulinemic clamp study improved. Another 75 g-OGTT revealed that the excessive insulin secretion and hypoglycemia at 240 min after glucose loading had disappeared, and glucose tolerance was normalized from an IGT pattern to an NGT pattern. Thus, we believe that pioglitazone is effective for reactive hypoglycemia and aggravated glycemic metabolism associated with insulin resistance.

Adult↗

Intramembrane aspartic acid in SCAP protein governs cholesterol-induced conformational change.

The polytopic membrane protein SCAP transports sterol regulatory element-binding proteins (SREBPs) from the endoplasmic reticulum (ER) to the Golgi, thereby activating cholesterol synthesis. Cholesterol accumulation in the ER membranes changes SCAP to an alternate conformation in which it binds ER retention proteins called Insigs, thereby terminating cholesterol synthesis. Here, we show that the conserved Asp-428 in the sixth transmembrane helix of SCAP is essential for SCAP's dissociation from Insigs. In transfected hamster cells, mutant SCAP in which Asp-428 is replaced by alanine (D428A) remained in an Insig-binding conformation when cells were depleted of sterols. As a result, mutant SCAP failed to dissociate from Insigs, and it failed to carry SREBPs to the Golgi. These data identify an important functional residue in SCAP, and they provide genetic evidence that the conformation of SCAP dictates the rate of cholesterol synthesis in animal cells.

Amino Acid Sequence↗

Effect of pitavastatin on transactivation of human serum paraoxonase 1 gene.

Hepatic hydroxymethyl glutary coenzyme A HMG-CoA reductase inhibitors (statins) have various anti atherosclerosis pleiotropic effects that are independent of cholesterol reduction. Human serum paraoxonase 1 (PON1) is associated with high-density lipoprotein (HDL) and inhibits the oxidative modification of low-density lipoprotein (LDL). We investigated the effects of statins on PON1 gene transcription using a reporter gene assay. Promoter activity of the PON1 gene was estimated by measuring luciferase activity of plasmids with a PON1 promoter region transfected into human hepatoma HepG2 cells and human embryonic kidney (HEK) 293 cells. Pitavastatin, simvastatin, and atorvastatin each significantly increased PON1 promoter activity, and the transactivation by pitavastatin was abrogated by mevalonic acid and farnesyl pyrophosphate (FPP), however, not by geranylgeranyl pyrophosphate. Further, PON1 promoter activity was enhanced by farnesyl transferase inhibitor (FTI), but not by geranylgeranyl transferase inhibitor (GGTI). PON1 gene transcription has been reported to be dependent on Sp1 and the transactivation by pitavastatin was completely abrogated by mithramycin, an inhibitor of Sp1. Our results suggest that pitavastatin activates transcription of the PON1 gene through the FPP pathway, which may play an important role in the anti atherosclerotic effects of statins.

Alkyl and Aryl Transferases↗

Anomalous internal carotid anastomosis to contralateral anterior cerebral artery.

BACKGROUND: Many anomalies and variants in vascular anatomy have been reported in relation to the anterior cerebral artery (ACA). PATIENTS AND METHODS: We encountered an apparently novel anomaly in a 30-year-old man admitted for disturbance of consciousness following a traffic accident. Computed tomography revealed an acute subdural hematoma and subarachnoid hemorrhage. RESULTS AND CONCLUSIONS: No vascular abnormalities related to the hemorrhage were detected by conventional angiography, so we concluded that the bleeding was of traumatic origin. Anomalous origin of the ACA was disclosed incidentally, with both A1 segments arising from the right internal carotid artery; no normal A1 segment of the left ACA was visualized. We discuss possible bases for this anomalous origin.

Accidents, Traffic↗

Regulation of human glucocorticoid receptor gene transcription by Sp1 and p53.

The human glucocorticoid receptor (hGR) gene has several GC boxes in the promoter 1C region. We studied the effects of Sp1 and p53 on promoter 1C in HepG2 and HEK293 cells using luciferase (Lu) reporter assay. The results showed that the first GC box upstream of the transcription site activated the hGR promoter and over-expression of Sp1 obviously enhanced the activity. A mutant Lu-hGR vector, whose first GC box was defective, lost promoter activity nearly completely. Further, over-expression of p53 strongly suppressed the stimulating effect of Sp1 on hGR promoter activity. We concluded that Sp1 activates the hGR gene promoter, at least in part, by acting on the first GC box in promoter 1C, while p53 suppresses the transactivation by Sp1. These phenomena, demonstrated in cultured cells, may be important for the expression of hGR in vivo.

Carcinoma, Hepatocellular↗

Increased amount of the angiotensin-converting enzyme (ACE) mRNA originating from the ACE allele with deletion.

The insertion/deletion (I/D) polymorphism in intron 16 of the angiotensin-converting enzyme (ACE) gene is involved in the development of cardiovascular diseases. We compared the ACE mRNA expression originating from the allele with a deletion (D allele) and that from the allele with an insertion (I allele) in human white blood cells from ID heterozygotes. We identified the mRNA from the I allele by using the G2215A polymorphism that lies in exon 15 and that was linked to the I/D polymorphism. RNA samples were obtained from 12 healthy heterozygotes of both I/D and G2215A, and every insertion was shown to be linked to 2215G. ACE mRNA was amplified by the reverse transcription/polymerase chain reaction (RT-PCR) method with an end-labeled antisense primer. The PCR products were digested with HaeII and separated by electrophoresis, and the relative radioactivities of the 2215A and 2215G bands were measured on an auto-image analyzer. The results showed that, in every cases, the intensity of the 2215A product (D allele origin) was higher than that of the 2215G product (I allele origin). The mean ratio of 2215A to 2215G was 1.79 (1.11-2.62). Thus, the D allele leads to higher expression of the ACE mRNA and may affect the renin-angiotensin system in local regions.

Adult↗

A Kruppel-like factor KLF15 contributes fasting-induced transcriptional activation of mitochondrial acetyl-CoA synthetase gene AceCS2.

Acetyl-CoA synthetase 2 (AceCS2) produces acetyl-CoA for oxidation through the citric acid cycle in the mitochondrial matrix. AceCS2 is highly expressed in the skeletal muscle and is robustly induced by fasting. Quantification of AceCS2 transcripts both in C2C12 and human myotubes indicated that fasting-induced AceCS2 gene expression appears to be independent on insulin action. Characterization of 5'-flanking region of the mouse AceCS2 gene demonstrates that Krüppel-like factor 15 (KLF15) plays a key role in the trans-activation of the AceCS2 gene. Deletion and mutation analyses of AceCS2 promoter region revealed that the most proximal KLF site is a curtail site for the trans-activation of the AceCS2 gene by KLF15. Using Sp-null Drosophila SL2 cells, we showed that the combination of KLF15 and Sp1 resulted in a synergistic activation of the AceCS2 promoter. Mutation analyses of three GC-boxes in the AceCS2 promoter indicated that the GC-box, located 8 bases downstream of the most proximal KLF15 site, is the most important GC-box in the synergistic trans-activation of the AceCS2 gene by KLF15 and Sp1. GST pull-down assays showed that KLF15 interacts with Sp1 in vitro. Quantification of various KLF transcripts revealed that 48 h fasting robustly induced the KLF15 transcripts in the skeletal muscle. Together with the trans-activation of the AceCS2 promoter, it is suggested that fasting-induced AceCS2 expression is largely contributed by KLF15. Furthermore, KLF15 overexpression induced the levels of AceCS2 transcripts both in myoblasts and in myotubes, indicating that AceCS2 gene expression in vivo is indeed induced by KLF15.

Acetate-CoA Ligase↗

Roles of Sp1 and protein kinase C in regulation of human serum paraoxonase 1 (PON1) gene transcription in HepG2 cells.

Human serum paraoxonase 1 (PON1) is associated with high-density lipoprotein, and inhibits oxidative modification of low-density lipoprotein in vitro. Therefore, PON1 is supposed to protect against atherosclerosis in vivo. In this study, we investigated the direct effect of Sp1 on PON1 transcription in HepG2 cells using a reporter gene assay. A deletion analysis of the PON1 upstream region revealed that dominant promoter elements were present within a sequence between -269 and -97bp, which contained a consensus binding site for Sp1, and an electrophoretic mobility shift analysis (EMSA) indicated the Sp1 binding to the upstream sequence. In accordance with this, overexpression of Sp1 dramatically enhanced PON1 promoter activity, and the Sp1 inhibitor mithramycin inhibited Sp1-induced promoter activation in a dose-dependent manner. The basal promoter activity was also enhanced by phorbol 12-myristate 13-acetate (PMA), and synergistic promoter activation was observed when Sp1-transfected cells were treated with PMA. The PMA-induced promoter activation was inhibited by mithramycin. In addition, overexpression of the dominant negative version of PKCalpha or zeta, significantly reduced PON1 promoter activity. These data suggest that Sp1 acts as a positive regulator of PON1 transcription, and that an interaction between Sp1 and PKC is a key mechanism for the effect of Sp1 on PON1 transcription.

Arteriosclerosis↗