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T Sakata

Publications and source records attributed to T Sakata.

At least 145 records · Page 8Linked to original sources

The I/D polymorphism of angiotensin-converting enzyme gene but not the angiotensinogen gene is associated with insulin response to oral glucose in Japanese.

Polymorphisms of angiotensin-converting enzyme (ACE) and angiotensinogen (AGT) genes have been reported to be associated with myocardial infarction and coronary artery disease, both of which are closely related to atherosclerosis and insulin resistance. In this study, we investigated the association between ACE and AGT genotypes and insulin sensitivity in a sample of 142 nondiabetic and 64 noninsulin-dependent diabetes mellitus (NIDDM) Japanese subjects, aged 62.7 +/- 9.5 years. The insulin response to the 75-g oral glucose tolerance test (OGTT) was significantly lower in subjects with the ACE D/D genotype compared to those with the I allele (I/D and I/I genotypes) in both nondiabetic (P < 0.05) and NIDDM subjects (P < 0.005). These homozygous D/D subjects also had lower insulin area under the curve of plasma insulin concentrations during OGTT compared to those with the I allele in nondiabetic (P < 0.05) and NIDDM subjects (P < 0.01). However, there was no significant association between AGT genotypes and either insulin response or insulin area under the curve during OGTT, in either nondiabetic or NIDDM subjects. From a viewpoint that insulin response to oral glucose is significantly correlated with insulin sensitivity, these results suggest that polymorphic variations at the ACE gene, but not the AGT gene, may be involved in the genetic regulation of insulin sensitivity in both nondiabetic and NIDDM Japanese subjects.

Aged↗

Detection of two novel mutations (nt2762, exon 2, CAG to TAG, and nt2483 or 2484, exon 2, +A) in individuals with congenital type I antithrombin deficiencies.

Genetic analyses were performed on two Japanese kindreds with congenital type I antithrombin deficiency causing recurrent thrombosis. The seven exons and flanking intron regions of the antithrombin gene were amplified by polymerase chain reaction followed by direct nucleotide sequencing. In case 1, one novel nonsense mutation, CAG to TAG at codon 100, nucleotide 2762, in exon 2, was detected. In case 2, one novel minor insertion, AT to AAT at codon 7, nucleotide 2483 or 2484, in exon 2, was detected, leading to a frameshift which resulted in a stop codon TGA at codon 32.

Adolescent↗

Lipid-lowering therapy corrects endothelial cell dysfunction in a short time but does not affect hypercoagulable state even after long-term use in hyperlipidemic patients.

Lipid-lowering therapy reduces cardiac events to an extent that is disproportionate to the small degree of regression of coronary atherosclerosis observed among hyperlipidemic patients. We prospectively investigated the effects of lipid reduction using simvastatin on the endothelial dysfunction and hypercoagulability found in hyperlipidemic patients. We measured levels of coagulation factors [factor VII (FVII) coagulant activity (FVIIc), FVII antigen (FVIIAg), activated FVII (FVIIa), and fibrinogen], and markers of coagulation activation [prothrombin fragment 1 + 2 (F1 + 2)] and endothelial cell dysfunction [von Willebrand factor (vWF)] in 20 hyperlipidemic patients, 20 hypertensive patients, and 20 normotensive normolipidemic controls. The levels of FVIIa, FVIIc, FVIIAg, F1 + 2, and vWF were all higher in hyperlipidemic patients, but only FVIIa, F1 + 2, and vWF levels were higher in hypertensive patients than in controls. We measured the above parameters in 13 hyperlipidemic patients before and after 1, 3, 6, 12 and 24 months of simvastatin therapy and compared these values with those in 15 hypertensive patients at baseline and after 12 and 24 months. The median (25th-75th percentile) level of total cholesterol was decreased from 259 (255-278) to 206 (176-220) mg/dl after 1 month of simvastatin therapy and this reduction persisted for 2 years. The plasma level of vWF [136% (113-158%)] was not changed after 1 month of administration of simvastatin [132% (115-153%)], but was decreased after 3 months of treatment [114% (96-128%), P<0.01]. This decrease also persisted for 2 years during simvastatin therapy and both of these reductions were significant, compared with levels in hypertensive patients. In contrast, levels of fibrinogen, FVIIc, FVIIAg, FVIIa, and F1 + 2 did not change throughout the 2 years of simvastatin therapy. We conclude that lipid reduction using simvastatin corrects endothelial cell dysfunction but not hypercoagulability in hyperlipidemic patients. The improvement in endothelial cell function brought about by lipid-lowering therapy might contribute to the reduction in cardiac events within a relatively short time period in hyperlipidemic patients.

Blood Coagulation↗

Intermittent administration of human parathyroid Hormone(1-34) prevents immobilization-related bone loss by regulating bone marrow capacity for bone cells in ddY mice.

ddY mice, 6 weeks of age, were neurectomized (Nx) in the right hindlimbs and sham-operated (Sham) in the left limbs for evaluation of the effects of intermittent injections of human parathyroid hormone (hPTH) on trabecular bone turnover and bone marrow cell development in unloaded and loaded limbs. Mice were given subcutaneous injections of hPTH(1-34) five times a week at a dose of 0 (vehicle), 4 (low dose), or 40 (high dose) microg/kg of body weight for 2, 4, or 6 weeks. Histomorphometric analyses of the trabecular bone of the proximal tibiae revealed that high-dose hPTH injections preserved the trabecular bone volume of the Nx limbs, which was reduced after neurectomy, at the same level as that of the contralateral Sham limbs. The mineral apposition rate in the Nx limbs was elevated to values above even that of the Sham limbs by high-dose hPTH injections. The bone formation rate reduced by neurectomy was maintained at the Sham level by low- and high-dose hPTH injections. The neurectomy-induced increase in osteoclast number was suppressed by high-dose hPTH injections. In the bone marrow cells, the numbers of nonadherent and adherent cells per tibia obtained from the Nx and Sham limbs did not change. The hPTH injections decreased the numbers of nonadherent cells and increased those of adherent cells in both the Nx and the Sham limbs, but the effects were less marked in the Nx than in the Sham limbs even at high-dose injections. The formation of osteogenic nodules in the marrow cultures obtained from the Nx limbs was decreased after surgery and was maintained at the level of the Sham limbs by high-dose hPTH injections. The number of osteoclast-like multinucleated cells was reduced in the Sham limbs by high-dose hPTH injections. The value was increased at 2 weeks after neurectomy, but it was maintained at the Sham level by high-dose hPTH injections through the experimental period. The numbers of colony forming units-fibroblastic, which were reduced by neurectomy, and those of colony forming units for granulocytes and macrophages were not altered by hPTH injections. These results demonstrate that intermittent high-dose hPTH administration in the Nx limbs as well as in the contralateral Sham limbs has similar anabolic effects, stimulating osteoblast cell lineage and suppressing osteoclast cell lineage. The anabolic effects at 4 microg were reduced, but the effects at 40 microg seemed to be less affected by unloading due to sciatic neurectomy.

Animals↗

Trabecular bone turnover and bone marrow cell development in tail-suspended mice.

To clarify the relationship between the changes of trabecular bone turnover and bone marrow cell development during mechanical unloading and reloading, we performed experiments with tail-suspended mice. At 8 weeks of age, 150 male ddY mice were divided into three body weight-matched groups. Mice of group 1 were euthanized at the start of tail suspension (day 0) as a baseline control. The mice of group 2 were subjected to hindlimb unloading by tail suspension for 14 days and reloading for the subsequent 14 days. The mice of group 3 were normally loaded as age-matched controls. Mice of groups 2 and 3 were sacrificed at 7, 14, and 28 days after the start of the experiment. In the first experiment (histomorphometric study of tibiae), unloading for 7 and 14 days and reloading for the subsequent 14 days significantly decreased the bone volume compared with that in the age-matched controls, respectively. Unloading for 7 and 14 days also significantly reduced the bone formation rate (BFR/BS), respectively, but reloading for the subsequent 14 days restored BFR/BS to the control level. While the unloading for 7 and 14 days significantly increased both the osteoclast surface (Oc.S/BS) and the osteoclast number (Oc.N/BS), the reloading for the subsequent 14 days decreased Oc.S/BS and Oc. N/BS, respectively. In the second experiment (bone marrow cell culture study of tibiae), unloading for 7 and 14 days reduced the adherent stromal cell number, without significance. Unloading for 7 days significantly decreased the mineralized nodule formation. Reloading for the subsequent 14 days markedly increased the adherent stromal cell number and the mineralized nodule formation. Unloading for 7 days significantly increased the number of tartrate-resistant acid phosphatase (TRAP)-positive multinucleated cells. These data clearly demonstrate that unloading reduces bone formation and increases bone resorption, and subsequent reloading restores reduced bone formation and suppresses increased bone resorption, closely associated with the changes in adherent stromal cell number, mineralized nodule formation, and the number of TRAP-positive multinucleated cells.

Animals↗

A simple technique for anatomical slow pathway ablation in atrioventricular nodal reentrant tachycardia.

The slow pathway potential or the slow potential serves as a useful marker in catheter ablation of the slow pathway. However, an anatomical approach without recording of these potentials is also an effective way to cure atrioventricular nodal reentrant tachycardia (AVNRT). Moreover, the origin of these potentials is a matter of controversy. We compared 2 approaches to ascertain whether or not recording of these potentials is necessary in eliminating the slow pathway and to estimate the usefulness of the simple anatomical approach. The study population consisted of 24 patients with a conventional approach (Group P) and 19 patients with an anatomical approach (Group A). In group A, the ablation site was determined by fluoroscopy, which was the lowest one-third of the area between the His bundle electrogram recorded position and the coronary sinus orifice at the right anterior oblique view, and just in front of and above the coronary sinus orifice also posterior to the His catheter at the left anterior oblique view where the His catheter was seen tangentially. The slow pathway was successfully ablated in all patients without any complications, including more than first-degree AV block. Although there were no significant differences in total energy or number of applications between the 2 groups, the procedure time was significantly shorter in group A (p < 0.01). In conclusion, recording of the slow pathway potential or the slow potential is not always necessary for slow pathway ablation in the treatment of AVNRT. Because our anatomical approach was performed simply, effectively and safely, it is recommended for the slow pathway ablation of AVNRT.

Adolescent↗

Blood biochemical characteristics, cecal microbiota and short-chain fatty acid composition in fistula implanted rats.

We raised an experimental rat implanted with a cecal fistula and investigated various characteristics of fistula-implanted rats. Male F344/N Sic rats at 14 weeks of age were divided into three groups, the fistula group (n = 5) which consisted of fistula-implanted rats, the sham group (n = 7) which consisted of sham-operated rats, and the control group (n = 7) which were not subjected to any surgical procedure. Four weeks after the fistula implantation surgery, we compared the blood biochemical indices, the microflora composition and the short-chain fatty acids (SCFA) concentration in cecal contents of fistula-implanted rats with those of sham-operated and control rats. The blood albumin concentration of the fistula group was significantly lower than that of the sham group and the control group, and the hematocrit value of the fistula group was significantly lower than that of the control group, but there were no significant differences in the SCFA concentration and the microflora composition among these three groups. In conclusion, it was considered that the fistula-implanted rats are useful for taking cecal contents and determining the microflora composition and the metabolites concentration at any time, without disturbing the physiological functions of the intestinal tract.

Animals↗

Hb Ube-2 in a diabetic case with an abnormally low HbA1C value.

A 69-year-old male diabetic patient had an abnormally low HbA1C value of 2.8%, which was inconsistent with his elevated fasting plasma glucose of 8.2 mmol/l. Hb analysis disclosed that the abnormal Hb was Hb Ube-2 [alpha68 (E17) Asn --> Asp] and it accounted for 21.5% of the total Hb. Since the glycated abnormal Hb emerged at the same position as did HbF on high performance liquid chromatography, the HbA1C value was falsely low. The present case demonstrates that Hb Ube-2 is one of the abnormal Hbs in which caution should be exercised when monitoring diabetic control.

Aged↗

Hypothalamic neuronal histamine as a target of leptin in feeding behavior.

Leptin, an ob gene product, has been shown to suppress food intake by regulating hypothalamic neuromodulators. The present study was designed to examine the involvement of brain histamine in leptin-induced feeding suppression. A bolus infusion of 1.0 microg leptin into the rat third cerebroventricle (i3vt) elevated the turnover rate of hypothalamic neuronal histamine (P < 0.05) as assessed by pargyline-induced accumulation of tele-methylhistamine (t-MH), a major metabolite of histamine. No remarkable change in the mRNA expression of histidine decarboxylase (HDC), a histamine-synthesizing enzyme, was observed in the hypothalamus after i3vt infusion of leptin. These results indicate that leptin increases histamine turnover by affecting the posttranscriptional process of HDC formation or histamine release per se. As expected, concomitant suppression in 24-h cumulative food intake was also observed after infusion of leptin. Systemic depletion of brain histamine levels by pretreatment with an intraperitoneal injection of 224 micromol/kg alpha-fluoromethylhistidine (FMH), a suicide inhibitor of HDC, attenuated the leptin-induced feeding suppression by 50.7% (P < 0.05). This attenuation of feeding suppression was mimicked by the i3vt infusion of 2.24 micromol/kg FMH before leptin treatment (P < 0.05). In addition, concentrations of hypothalamic histamine and t-MH were lowered in diabetic (db/db) mice, which are known to be deficient in leptin receptors (P < 0.05 vs. lean littermates for each amine), although the amine levels were higher in diet-induced obese rats (P < 0.05 for each amine). Leptin-deficient obese mice (ob/ob) showed lower histamine turnover (P < 0.05 vs. lean littermates), which recovered after leptin infusion. Thus, a growing body of results points to an important role for the hypothalamic histamine neurons in the central regulation of feeding behavior controlled by leptin.

Animals↗

Streptozotocin treatment upregulates uncoupling protein 3 expression in the rat heart.

Diabetic rats have a deficiency in their heart ATP concentrations, and although the mechanism remains to be elucidated, this deficiency may involve increased uncoupling of oxidative phosphorylation. To investigate whether heart uncoupling proteins (UCPs) are subject to transcriptional regulation in diabetes, we examined changes in UCP mRNA expression in the heart of streptozotocin-induced diabetic (STZ-DM) rats. Heart UCP3 mRNA expression significantly increased by 9.4-fold in STZ-DM rats, while levels of UCP2 mRNA expression were not significantly altered. Insulin supplementation in STZ-DM rats returned UCP3 mRNA concentrations to control levels. The expression of UCP3 mRNA was similarly elevated in the heart of fasted rats, which also have hypoinsulinemia and hyper-free fatty acidemia but, unlike the STZ-DM rats, are hypoglycemic. Since hyperinsulinemia alone was previously reported to not affect UCP3 gene expression in the muscle, these results indicate that hyper-free fatty acidemia is a potent enhancer of UCP3 gene expression in the diabetic rat heart. Interestingly, we found no changes in UCP3 mRNA levels in Zucker fatty (fa/fa) rats with excessive chronic hyper-free fatty acidemia, which suggests that upregulation of heart UCP3 mRNA may depend on an acute change in free fatty acid concentrations rather than on their sustained elevation. High-energy ATP deficiencies in the diabetic rat heart may primarily result from proton leakage due to the upregulation of UCP3 expression.

Animals↗

[Multivariate analyses using quantitative method II of annoyance due to tinnitus].

Factors affecting annoyance due to tinnitus were analyzed using quantitative method II. Ninety-one patients with unilateral tinnitus of single kind were studied. Major factors affecting annoyance due to tinnitus were found to be subjective loudness of tinnitus, age, degree of hearing loss, tinnitus loudness level in dB HL, pitch matched frequency, puerility and impurity of tinnitus tonality, and subjective tinnitus pitch. Increased annoyance due to tinnitus was associated with an age of 30-49 years, a tinnitus loudness level between 25 and 49 dB HL, a tinnitus loudness level more than 15dB SL, impurity of tinnitus tonality, larger subjective loudness, and high-pitched tones above 4000Hz. Decreased annoyance due to tinnitus was related to the smaller subjective loudness, loudness level below 25dB HL, low-pitched tones below 250Hz, and purity of tinnitus tonality. Our results suggest that these factors are responsible for individual differences in annoyance caused by tinnitus.

Adult↗

[Atypical chronic myeloid leukemia presenting with trilineage dysplasia and IgG (lambda) type monoclonal gammopathy].

A 78-year-old man was diagnosed as leukocytosis in February 1994. Physical examination revealed marked hepatosplenomegaly. A peripheral blood examination disclosed 95,090/microliter leukocytes without hiatus leukemicus, 6.5 g/dl Hb, and 15.0 x 10(4)/microliter platelets. The neutrophil alkaline phosphatase score was 27, and serum VB12 was above 1,600pg/ml. IgG was identified as monoclonal immunoglobulin of type lambda. Bone marrow specimens demonstrated marked granulocytic hyperplasia. Neither the Philadelphia chromosome (Ph1) nor BCR gene rearrangement was detected; hence, the diagnosis of Ph1 (-) chronic myeloid leukemia (CML) was made. The patient was treated with hydroxyurea and low-dose VP-16 with no improvement, and died of pneumonia and sepsis in June 1995. This case was considered to be consistent with atypical CML (aCML) according to the FAB classification because monocytosis was not observed. It seems likely and interesting that the coexistent monoclonal gammopathy and aCML might have arisen from common abnormal hematopoietic stem cells.

Aged↗

Age- and sex-related differences of plasma activated factor VII levels in children.

Although the majority of factor VII (FVII) circulates in the zymogen form, low levels of activated factor VII (FVIIa) exist in plasma and play an important role in the initiation of tissue factor-induced coagulation. It has been reported that the concentrations of hemostatic components in children and adults are different. Here, we investigated the age- and sex-related differences of FVIIa and FVII antigen (FVIIag) levels in children at age of 10 (n = 123; males: n = 62; females: n = 61), and 13 (n = 105; males: n = 47: females: n = 58), and compared these levels with those of young adults (mean +/- SD of age: 29.6+/-6.0 years). In males, there was not a significant difference between the FVIIIa levels of 10-year-old children and 13-year-old children, but the FVIIa levels in adult controls were significantly higher than those in children. In females, the FVIIa levels in 13-year-old children were significantly higher than that in 10-year-old children, but there was not a significant difference between 13-year-old children and adults. Thus, our study showed that plasma FVIIa levels were lower in children than in adults, and the increase of FVIIa level was earlier in females than in males.

Adolescent↗

[C1-inhibitor].

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Complement C1 Inactivator Proteins↗

Genetic analysis of protein C deficiency in nineteen Japanese families: five recurrent defects can explain half of the deficiencies.

We have been studying the molecular basis of protein C deficiency. In this study, we determined the molecular defects of protein C deficiency in 19 Japanese families by using a strategy combining polymerase chain reaction (PCR) and single-strand conformational polymorphism (SSCP) analysis. We identified 10 missense mutations, 1 in-frame deletion, 1 frameshift deletion, 1 frameshift addition, and 1 splice site mutation, 5 of which were novel. From the results of genetic analysis of 67 Japanese families with protein C deficiency reported in this and previous studies, the recurrent defects including Phe139Val and Met365Ile substitutions and a Lys150 d letion, a G8857 deletion, and a splice site mutation of G3079A were only found in Japanese subjects and seemed to be a founder effect. In contrast, Arg169Trp, Arg286His, Val297Met, and Asp359Asn substitutions, all occurring at CG dinucleotides, were commonly observed in not only Japanese but also Western populations, indicating that these are hot spots for mutation in the protein C gene. These 9 recurrent molecular defects were found in 43 families in total, accounting 64% of Japanese families with protein C deficiency. In particular, the recurrent defects of Phe139Val, Arg169Trp, Va1297Met, and Met36-4Ile substitutions and a G8857 deletion were found in 33 families in total, accounting for 49% of Japanese families with protein C deficiency. For the identification of the genetic defect in Japanese patients with protein C deficiency, screening of these recurrent defects by using restriction enzyme cleavage is a rational method.

Exons↗

Novel mutation of the DAX1 gene in a patient with X-linked adrenal hypoplasia congenita and hypogonadotropic hypogonadism.

X-linked adrenal hypoplasia congenita (AHC) is characterized by primary adrenal insufficiency and is frequently associated with hypogonadotropic hypogonadism (HHG). Mutations of the DAX1 gene have been reported in patients with AHC and HHG. We found a novel DAX1 mutation in our patient. Sequence analysis of the patient's DAX1 demonstrated a 1-bp (G) deletion at codon 49 in exon 1. The mutation shifts the reading frame, resulting in completely different amino acid sequences from codon 49 to the premature stop codon at 84. The G was present at this position in the sequences of the father and 2 younger brothers. Direct sequence and single-strand conformation polymorphism analyses of polymerase chain reaction fragments revealed that the mutation at codon 49 was heterozygously present in the mother's DAX1 gene. The codon 84 is located in the first half of the DNA binding domain, and the mutation site is closer to the N-terminus than those in previously reported cases. The onset of adrenal insufficiency in the neonatal period as seen in our patient has also been reported in other patients with different DAX1 mutations, especially in a patient with DAX1 protein lacking 11 amino acids at the C-terminus. Therefore, it is less likely that position of termination codons correlate to clinical manifestations.

Adrenal Glands↗

Molecular cloning of rat uncoupling protein 2 cDNA and its expression in genetically obese Zucker fatty (fa/fa) rats.

We isolated rat UCP2 cDNA, which has been proposed to play an important role in mammalian thermogenesis and body weight regulation. The nucleotide sequence of the cDNA revealed that the rat UCP2 protein is composed of 309 amino acid residues, and is 99% and 95% identical to the mouse and human proteins, respectively. The molecular weight of rat UCP2, calculated from the predicted amino acid sequence, was 33,369, and the UCP2 protein of this size was detected when the cDNA was expressed in vitro. Northern blot analysis revealed that the corresponding mRNA is approximately 1.7 kb in size, and is expressed in a variety of rat organs, with predominant expression in the heart, lung and spleen. UCP2 mRNA levels in the heart, liver, muscle and epididymal adipose tissue of Zucker fatty (fa/fa) rats were comparable to those in the lean littermates, while ob mRNA level markedly increased in the epididymal adipose tissue of Zucker (fa/fa) rats.

Amino Acid Sequence↗