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Biomedical subjects

K Nonaka

Publications and source records attributed to K Nonaka.

At least 73 records · Page 4Linked to original sources

Association of an (A-C)n dinucleotide repeat polymorphic marker at the 5'-region of the aldose reductase gene with retinopathy but not with nephropathy or neuropathy in Japanese patients with Type 2 diabetes mellitus.

AIMS: Recently an (A-C)n dinucleotide repeat polymorphic marker in the 5'-region of the ALR2 gene encoding aldose reductase was found to be associated with diabetic retinopathy in the Chinese population in Hong Kong, and with nephropathy and neuropathy in the British Caucasian population. The present study assessed the association between the polymorphism and microvascular complications in Japanese patients with Type 2 diabetes mellitus. METHODS: DNA from 87 Japanese patients with Type 2 diabetes mellitus and 90 control subjects with normal glucose tolerance were typed for the polymorphic marker by polymerase chain reaction and direct sequencing. RESULTS: Six alleles, namely Z-12, Z-6, Z-4, Z-2, Z, and Z+2 were identified. There was no significant difference in allele distribution between diabetic patients and controls. The Z-2 allele frequency was significantly higher in subjects with diabetic retinopathy than those without retinopathy (0.35 vs. 0.20, P=0.039), suggesting that aldose reductase is involved in the development of diabetic retinopathy. In contrast, the microsatellite marker was not associated with diabetic nephropathy, peripheral or autonomic neuropathy. The discrepancy may be partly attributable to the low frequency of Z+2 allele in the Japanese subjects. CONCLUSIONS: The (A-C)n dinucleotide repeat polymorphism may be a useful genetic marker to screen for patients at high risk of retinopathy.

Adult↗

Color Doppler ultrasonography in patients with subacute thyroiditis.

We studied the utility of color Doppler ultrasonography in patients with subacute thyroiditis. Eighteen patients with subacute thyroiditis (SAT) with painful goiter and thyrotoxicosis underwent color Doppler ultrasonography during the acute and recovery stages of the disease. Thyroid vascularization in these patients was compared with that of 15 untreated patients with Graves' disease and 17 control subjects. During the acute stage of subacute thyroiditis, color Doppler ultrasonography showed low echogenicity without increased tissue vascularity in the affected swollen thyroid. In the recovery stage, color Doppler ultrasonography showed isoechogenicity with slightly increased vascularization. Vascularization became normal at 1 year follow-up time. In contrast, marked by increased vascularization was observed in patients with untreated Graves' disease. Color Doppler ultrasonography showed clear differences between SAT and Graves' disease patients. Vascularity was significantly correlated with serum free thyroxine (FT4) and thyrotropin (TSH) concentrations in the recovery stage (3 months after the initial ultrasonography). Color Doppler ultrasonography accurately visualized lesions without increased vascularity in the acute stage of SAT and lesions of slightly increased vascularity in the recovery stage. Color Doppler ultrasonography may be a useful, noninvasive, and rapid method for differentiating SAT from Graves' disease and for evaluating and monitoring the location and activity of lesions in SAT.

Adult↗

Dominant infiltration of T(H)1-type CD4+ T cells at the retrobulbar space of patients with thyroid-associated ophthalmopathy.

Lymphocyte infiltration in the retrobulbar space is a prominent histological feature of thyroid-associated ophthalmopathy (TAO). We have characterized phenotypic and functional features of T cells derived from retrobulbar infiltrates of 3 TAO patients to better understand their roles in the disease. One hundred four T-cell clones (TCC) were directly established from cells of retrobulbar tissues using a highly efficient cloning procedure. Phenotypic analysis of TCC showed approximately 70% to 80% were CD3+ CD4+ CD8- T cells, and approximately 20% to 30% were CD3+ CD8+ CD4- T cells. None of the TCC were CD3+ CD4- CD8- T cells. Analysis of the cytokine profile of TCC, as documented by the ability to express interferon-gamma, interleukin (IL)-2, IL-4, and IL-10 demonstrated that the majority of TCC expressed T helper (T(H))1-like profile in both the mRNA and protein levels. A few TCC showed T(H)0-like profile, but no TCC showed T(H)2-like profile. These results suggest that T(H)1-type CD4+ T cells play important roles in the pathogenesis of TAO.

Adult↗

Increased serum soluble Fas in patients with Graves' disease.

We addressed the role of soluble Fas (sFas), which suppresses Fas-mediated apoptosis, in the pathogenesis of Graves' disease (GD). The serum concentration of sFas was measured by enzyme-linked immunosorbent assay and the expression of sFas mRNA in thyroid tissues by reverse transcriptase-polymerase chain reaction. The serum concentration of sFas was significantly increased in untreated GD (mean+/-SD: 1.57+/-0.48 ng/mL) compared to age-matched control subjects (0.77+/-0.46 ng/mL). The serum sFas level tended to decrease after the medication of antithyroid drugs for 6 to 8 weeks and was significantly decreased in patients who were euthyroid for more than 3 years (0.98+/-0.23 ng/mL), compared to that in untreated GD. The concentration of serum sFas was significantly correlated with anti-thyrotropin (TSH) receptor antibody titers, but not with the other clinical parameters (free triiodothyronine [FT3], free thyroxine [FT4], TSH, antithyroglobulin antibody titer, antimicrosomal antibody titer, or 123I uptake). The sFas mRNA was detected in thyroid tissue, cultured thyrocytes, and intrathyroidal lymphocytes. sFas was detected in supernatant of cultured thyrocytes from patients with GD. Its production by thyrocytes was induced by culture with interleukin-1beta (IL-1beta) and tumor necrosis factor-alpha (TNF-alpha). The present study confirms serum sFas increases in GD and provides evidence of local production of sFas by thyrocytes and its regulation by cytokines. These data suggest that sFas may play a role in the pathogenesis of GD.

Adolescent↗

Preparation of 2'-deoxyribonucleosides with an identically 2H/13C-labeled sugar residue.

Thymidine with the stereoselectively 2H/13C-Labeled sugar moiety, (2'R)(5'S)-[1',2',3',4',5'-(13)C5;2',5'-(2)H2]-thymidine, was synthesized from uniformly 13C-labeled glucose, via the selectively deuterated ribose derivative prepared by the stereo-controlled deuteride transfer reactions. The labeled sugar moiety of the thymidine was then transferred to 2'-deoxyadenosine, 2'-deoxyguanosine, and 2'-deoxyuridine, by the enzymatic transglycosylation reactions by purine and pyrimidine nucleoside phosphorylases, in good yields. Labeled 2'-deoxyuridine was chemically converted to 2'-deoxycytidine. Consequently, all of the 2'-deoxynucleosides prepared by this method has the identically labeled sugar moiety. By using DNA oligomers containing the identically labeled sugar residue for NMR studies, any possible complexity in NMR data analyses expected to be observed for DNA oligomers containing variously labeled nucleosides can be minimized.

Carbon Isotopes↗

Tomographical description of tennis-loaded radius: reciprocal relation between bone size and volumetric BMD.

Effects of long-term tennis loading on volumetric bone mineral density (vBMD) and geometric properties of playing-arm radius were examined. Paired forearms of 16 tennis players (10 women) and 12 healthy controls (7 women), aged 18-24 yr, were scanned at mid and distal site by using peripheral quantitative computerized tomography. Tomographic data at midradius showed that tennis playing led to a slight decrease in cortical vBMD (-0.8% vs. nonplaying arm, P < 0. 05) and increase both in periosteal and endocoritcal bone area (+15. 2% for periosteal bone, P < 0.001; and +18.8% for endocortical bone, P < 0.001). These data suggest that, together with an increase in cortical thickness (+6.4%, P < 0.01), cortical drift toward periosteal direction resulted in improvement of mechanical characteristics of the playing-arm midradius. Enlargement of periosteal bone area was also observed at distal radius (+6.8%, P < 0.01), and the relative side-to-side difference in periosteal bone area was inversely related to that in trabecular vBMD (r = -0.53, P < 0.05). We conclude that an improvement of mechanical properties of young adult bone in response to long-term exercise is related to geometric adaptation but less to changes in vBMD.

Adult↗

Polymorphism in the 5'-leader cistron of the beta2-adrenergic receptor gene associated with obesity and type 2 diabetes.

We screened the 5'-untranslated region of the beta2-adrenergic receptor gene from 40 obese subjects by the PCR-direct sequencing technique. Two polymorphic sites were identified; a T-->C substitution at -47 and a T-->C substitution at -20. We further analyzed the association of the polymorphisms with obesity in 574 subjects by PCR and restriction digestion. The substitution at -47 was in tight linkage disequilibrium with that at -20. The polymorphisms were also in linkage disequilibrium with codon 16 and codon 27 polymorphisms. Subjects carrying the -47C/-20C allele had greater body mass index (25.5+/-4.5 vs. 24.4+/-4.1 kg/m2, p=0.007) and higher serum triglyceride levels (166+/-160 vs. 139+/-95 mg/dl, p=0.015) than -47T/-20T homozygotes. The variant allele frequency was significantly higher in obese subjects than in non-obese subjects (0.18 vs. 0.11, p=0.0026). Furthermore, an increased frequency of the variant allele was shown in diabetic patients compared with non-diabetic subjects (0.19 vs. 0.11, p=0.0005). The association may be attributable to the greater proportion of diabetic patients in the obese group. The exchange at -47 may alter the expression level of the beta2-adrenergic receptor gene, because the nucleotide substitution at -47 results in a Cys-->Arg exchange at the C terminal of the leader peptide. The -47C/-20C allele may be associated with genetic predisposition to obesity and obesity-related metabolic disorders.

Body Mass Index↗

Immunohistochemical analysis of Bcl-2, Bax, and Bak expression in thyroid glands from patients with subacute thyroiditis.

Bcl-2 family proteins are important regulators of apoptosis. To clarify a role of apoptosis and the expression of Bcl-2 family proteins in the pathogenesis of subacute thyroiditis (SAT), we evaluated the expression of Bcl-2, Bax, and Bak by immunohistochemistry and apoptosis by in situ end labeling of fragmented DNA in thyroid tissues from 11 patients with SAT. Apoptotic nuclei were found in granulomas, especially in macrophages/histiocytes and lymphocytes, and in the regenerating follicular cells, but were rarely found in the area of fibrosis. The mean (+/-SD) percentage of apoptotic follicular cells was significantly greater in SAT than that in controls (1.4 +/- 0.8% vs. 0.4 +/- 0.6%). Bcl-2, Bak, and Bax were strongly expressed in the granulomas and regenerating thyroid follicular cells from patients with SAT. Bcl-2 and Bak, but not Bax, were expressed in follicular cells from normal controls. The percentage of apoptotic cells and the expression of Bax in follicular cells did not correlate with age or serum levels of thyroid hormones, C-reactive protein, or thyroglobulin. These data suggest that apoptosis may be involved in the development of SAT and that Bax expression in regenerating thyrocytes may be important for the recovery of SAT.

Adolescent↗

Functional Fas ligand expression in thyrocytes from patients with Graves' disease.

Fas/Fas ligand (FasL) interaction has been suggested to play a role in the pathogenesis of Hashimoto's thyroiditis. This manuscript addressed a role for Fas/FasL interaction in the pathogenesis of Graves' disease (GD). Apoptosis was detected in 0.5-5.0% of GD thyrocytes, but not in normal thyrocytes from patients with adenoma (N). Fas was constitutively expressed on the basement membrane of both GD and N thyrocytes. Thyrocytes expressed Bcl-2 constitutively in both GD and N thyrocytes. FasL was detected at the messenger ribonucleic acid level in thyroid tissue and cultured thyroid cells by Northern blotting and RT-PCR. FasL protein was detected in the cytoplasm and basolateral surface of thyrocytes from GD, but not in N. Cell surface expression of FasL on cultured thyrocytes disappeared within 48 h after their isolation. However, it was retained by culturing the cells with a matrix metalloproteinase inhibitor. Coculture with thyrocytes induced apoptosis of Fas transfectants, which was blocked by an anti-FasL antibody. Although cultured thyrocytes expressed Fas on the surface, they were not killed by an agonistic anti-Fas antibody. Interferon-gamma-induced Fas up-regulation was suppressed by TSH. These results suggest that the increased expression of FasL in GD thyrocytes, the down-regulation of Fas expression by TSH or possibly by TSH receptor autoantibody, and the overexpression of Bcl-2, which could render thyrocytes resistant to FasL-mediated elimination, may thus be involved in the pathogenesis of GD.

Adult↗

[Prevalence of dental erosion caused by sulfuric acid fumes in a smelter in Japan].

The effect of occupational sulfuric acid exposure and other factors on teeth was explored in a cross-sectional study with blind dental examinations. Among 350 male workers in a copper-smelter in Japan, 28 had mild dental erosion with silky-glazed opaque appearance of the enamel and/or shallow concavities on the enamel. While opaqueness was observed in 20 and concavities found in 11 workers, only 3 had both signs, suggesting that the concave lesions were often accompanied with enough remineralization to keep the dental surface gloss, possibly due to acid exposure at a low level. The cases had a history of working in an electrolytic refining plant (36%), significantly more than in the non-cases (14%, p < 0.05). Some significant differences were found between the cases and the non-cases: the cases were older, had less dental plaque, less gingivitis, and more frequent toothbrushing habits. No significant differences were observed in possibly related dietary habits such as several types of acidic drinks. It was concluded that the present cases with dental erosion were most probably associated with occupational acid exposure. The risk ratio of cross-sectional prevalence of dental erosion for those with a history of electrolytic refining plant work was 3.0 (95% CI: 1.3-6.7) compared with those without a history of acid exposure. Whether the present work environment can still develop new cases of dental erosion remains to be studied.

Adult↗

Essential role of caspase-3 in apoptosis of mouse beta-cells transfected with human Fas.

Several recent studies have indicated that the Fas-Fas ligand system may be critical for pancreatic beta-cell destruction in type 1 diabetes. Although the fundamental roles of caspases in the mammalian apoptotic machinery have been elucidated, it is not known which caspase or caspases play a major role in Fas-mediated apoptosis of beta-cells. In this study, we transfected human Fas cDNA into a mouse beta-cell line (betaTC1) and established a beta-cell clone expressing human Fas. This clone, designated hFas/betaTC1, underwent apoptosis when exposed to anti-Fas, showing hallmarks of apoptosis (chromatin condensation, nucleolar disintegration, internucleosomal DNA fragmentation, and annexin V staining), indicating that the mouse beta-cell line has the intact machinery of Fas-mediated apoptosis. The cross-linking of Fas by anti-Fas resulted in the elevation of caspase-3-like, but not caspase-1-like, protease activity 2-12 h after the addition of the anti-Fas. A caspase-3 inhibitor, Z-Asp-Glu-Val-Asp-fluoromethyl ketone, attenuated the Fas-mediated beta-cell apoptosis, while a caspase-1 inhibitor, acetyl-Tyr-Val-Ala-Asp-chloromethylketone, failed to suppress the apoptosis. Thus the Fas-induced death signal apparently bypassed caspase-1 in the cells. Furthermore, an antisense caspase-3 construct blocked caspase-3 activation and substantially suppressed Fas-triggered apoptosis of hFas/betaTC1 cells. These observations suggest the essential role of caspase-3 in Fas-mediated apoptosis of the beta-cell line.

Amino Acid Chloromethyl Ketones↗

Bioconversion of milbemycin-related compounds: biosynthetic pathway of milbemycins.

Streptomyces hygroscopicus subsp. aureolacrimosus SANK 60286 and SANK 60576 produce many kinds of milbemycins. Among them, milbemycin alpha11, alpha14, A3, and A4 have the most effective acaricidal activity. In this study, we investigated the terminal biosynthetic pathway to milbemycin alpha14 and A4 which accumulated as the final products in these strains. Using cerulenin, a specific inhibitor of fatty acid and polyketide biosynthesis, we conducted bioconversion experiments with cultures of several mutants, including milbemycin A4- and alpha14-producing strains. The bioconversions of milbemycin beta6 to milbemycin A4 and milbemycin A4 to milbemycin alpha14 could be identified. For the biosynthesis of milbemycin A4 from milbemycin beta6 in the milbemycin A4-high producing strain, there appeared to be two separate pathways exhibiting different sequences of furan ring formation and C-5 keto reduction steps.

Animals↗

Bioconversion of milbemycin-related compounds: isolation and utilization of non-producer, strain RNBC-5-51.

A non-producing strain, the so-called strain RNBC-5-51 SANK 60198, was isolated during a screening program of strain improvement in the milbemycin production. Strain RNBC-5-51 indicated almost the same characteristics as those in the parent strain, that is, the abundant spore formation on agar media and the good growth in liquid media. But it does not produce any kind of milbemycins. In addition, strain RNBC-5-51 accumulated precursor-like compounds of milbemycin-polyketide, the production of which were inhibited by the addition of cerulenin. In the bioconversion experiments, strain RNBC-5-51 converted milbemycin beta6 and A4 to milbemycin alpha14, and milbemycin beta7 and A3 to milbemycin alpha11, respectively. This strain also converted milbemycin D and avermectin B1a, to 26-(3-methyl-2-butenoyloxy)milbemycin D and 26-(3-methyl-2-butenoyloxy)avermectin B1a, respectively. These results suggest that milbemycin alpha11 is biosynthesized through the same route as milbemycin alpha14, and the mutated step in strain RNBC-5-51 might be in the polyketide synthetic pathway of milbemycins. Strain RNBC-5-51 loses the ability for de novo synthesis of milbemycins, but it retains the ability to bioconvert the milbemycin skeleton. This strain might be useful for C-26 modification of milbemycin-related compounds.

Anti-Bacterial Agents↗

Human sex ratio at birth and mother's birth season: multivariate analysis.

We used a population-based historical French Canadian database to examine the effects of mother's birth season on sex ratio at birth. Non-first births in the database (n = 127,658) were analyzed for their sex, parish size (2 large parishes of Montreal and Quebec or the other smaller parishes), time period (births up to 1719 or those from 1720), maternal age (< or = 24, 25-29, 30-34, 35+ years), sex of the preceding sibling (male or female), and birth seasons of the child and his or her parents (February-April, May-July, August-October, November-January). Season of child's birth significantly affected the sex ratio (chi 2 = 11.507, d.f. = 3, p = 0.009), with the births in February-April or May-July showing a lower sex ratio. Season of mother's birth also contributed highly significantly to the variation of sex ratio (chi 2 = 15.196, d.f. = 3, p = 0.002); mothers born in February-April had a low sex ratio among their children (sex ratio = 1.013). In contrast, season of father's birth did not affect the sex ratio (chi 2 = 0.618, d.f. = 3, p = 0.892). When a multiple logistic model was applied to the data, mother's birth season was the single most significant factor. The lower sex ratio from mothers born in February-April was observed consistently for every maternal age and delivery season. Seasonal influences on female fetuses seem to have changed their future reproductive characteristics.

Canada↗

Convergence of the BMP and EGF signaling pathways on Smad1 in the regulation of chondrogenesis.

Bone morphogenetic protein 4 (BMP4) induces, whereas epidermal growth factor (EGF) inhibits chondrogenesis. We hypothesize that BMP4 and EGF mediated intracellular signals are both coupled in the regulation of Meckel's cartilage development. Two chondrogenic experimental model systems were employed to test the hypothesis: (1) an ex vivo, serum-free, organ culture system for mouse embryonic mandibular processes, and (2) a micromass culture system for chicken embryonic mandibular processes. Chondrogenesis was assayed by alcian blue staining and expression of Sox9 and type II collagen. Exogenous EGF inhibited and BMP4 induced ectopic cartilage in a dose-dependent manner. When BMP4- and EGF-soaked beads were implanted in juxtaposition within embryonic day 10 mouse mandibular processes, the incidence and amount of ectopic cartilage, and Sox9 and type II collagen expression induced by BMP4, were significantly reduced as the concentration of EGF was increased. Similarly, in chicken serum-free micromass cultures, expression of a constitutively active BMP receptor type IB by replication competent avian retrovirus system promoted the rate and extent of chondrogenesis; however, exogenous EGF attenuated this effect. In micromass cultures, BMP signaling resulted in nuclear translocation and accumulation of the signaling molecule Smad1, whereas the addition of EGF inhibited this event. Our results suggest that BMP4 and EGF function antagonistically, yet are coupled in the regulation of initial chondrogenesis. Smad1 serves as a point of convergence for the integration of two different growth factor signaling pathways during chondrogenesis.

Animals↗

Smad7 is an activin-inducible inhibitor of activin-induced growth arrest and apoptosis in mouse B cells.

Members of the transforming growth factor-beta (TGF-beta) family, which includes the activins, relay signals from serine/threonine kinase receptors in membrane to nucleus via intracellular Sma- and Mad-related (Smad) proteins. Inhibitory Smad proteins were found to prevent the interaction between the serine/threonine kinase receptors and pathway-restricted Smad proteins. Smad7 was identified as a TGF-beta-inducible antagonist of TGF-beta signaling, and it may participate in a negative feedback loop to control TGF-beta signaling. Here we demonstrate that the mRNA expression of Smad7 is induced by activin A in mouse B cell hybridoma HS-72 cells, which undergo growth arrest and apoptosis upon exposure to activin A. The ectopic expression of mouse Smad7 in HS-72 cells suppressed the activin A-induced cell cycle arrest in the G1 phase by abolishing the activin A-induced expression of p21(CIP1/WAF1) and hypophosphorylation of retinoblastoma protein. Furthermore, Smad7 expression suppressed activin A-induced apoptosis in HS-72 cells. Thus, our data indicate that Smad7 is an activin A-inducible antagonist of activin A-induced growth arrest and apoptosis of B lineage cells.

Activins↗

Possible involvement of protein kinase C in apoptotic cell death of macrophages infected with Actinobacillus actinomycetemcomitans.

We have previously reported the evidence for apoptosis in the mouse macrophage cell line J774.1 by the periodontopathic bacterium Actinobacillus actinomycetemcomitans. In this study, we examined the role of protein kinases in the induction of apoptosis in A. actinomycetemcomitans-infected J774.1 cells by the MTT assay, fluorescence microscopy and flow cytometric analysis. After J774.1 cells were precultured with protein kinase C (PKC) activator, phorbol 12-myristate 13-acetate (PMA), J774.1 cells infected with A. actinomycetemcomitans showed the increased percentage of apoptotic cells. On the contrary, protein kinase A (PKA) activators, such as forskolin and dibutyryl cAMP, do not mimic the effect of PMA. PKC inhibitors, such as staurosporine, calphostin C, chelerythrine chloride, and H7 were found to suppress apoptotic cell death in J774.1 cells infected with A. actinomycetemcomitans. However, HA1004, known as PKA inhibitor, had no effect on apoptosis in infected macrophages. The results presented here suggest that the signals through PKC may play crucial roles in the modulation of apoptosis in macrophages infected with A. actinomycetemcomitans.

Aggregatibacter actinomycetemcomitans↗