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Biomedical subjects

M Namba

Publications and source records attributed to M Namba.

At least 73 records · Page 4Linked to original sources

Fas and Fas ligand expression in inflamed islets in pancreas sections of patients with recent-onset Type I diabetes mellitus.

AIMS/HYPOTHESIS: Type I (insulin-dependent) diabetes results mainly from T-cell-mediated autoimmune destruction of pancreatic beta cells. Cytotoxic T lymphocytes destroy target cells via a perforin-based or Fas-based mechanism. Our previous study indicated that the Fas-Fas ligand (FasL) pathway is required for the development of autoimmune diabetes in the NOD mouse. We now investigated whether or not the Fas-FasL system is involved in the beta-cell destruction in human Type I diabetes. METHODS: We immunohistochemically analysed pancreas biopsy specimens of 13 recent-onset patients. RESULTS: Pancreatic islets were identified but showed various degrees of reduction in beta-cell volume in all patients. Out of 13 patients 6 had insulitis. In these 6 patients Fas was expressed in both the islets and infiltrating cells but not in either cell type in the 7 other patients without insulitis. Double immunostaining showed that Fas was positive in 92.2 to 97.7 % of beta cells but only in 17.6 to 46.7 % of alpha cells in Fas-positive, insulin-remaining islets. We found FasL was expressed exclusively in islet-infiltrating cells in patients with insulitis. Double immunostaining revealed that the most prevalent phenotype of FasL-positive cells was CD8, which was followed by macrophages and CD4. CONCLUSION/INTERPRETATION: The interaction between Fas on beta cells and FasL on infiltrating cells might trigger selective apoptotic beta-cell death in inflamed islets, leading to immune-mediated Type I diabetes. [Diabetologia (1999) 42: 1332-1340]

Adolescent↗

Establishment and cellular characteristics of a hepatocyte cell line (OUMS-31) derived from an acatalasemic mouse.

Liver cell lines with very low catalase activity were established from an acatalasemic mouse. Hepatocytes isolated by a collagenase-liver-perfusion technique were cultured in Williams' E medium supplemented with 10% fetal bovine serum. The acatalasemic liver cell line showed approximately 20% of the catalase activity of a normal mouse liver cell line, whereas its glutathione peroxidase activity was approximately equal to that of the normal liver cell line. DNA sequence analysis of this cell line showed the same mutation in the catalase gene as is seen in the acatalasemic mouse. Our observation of intracellular content of hydrogen peroxide (H2O2) radical and increased susceptibility of the cells to H2O2 were compatible with the existence of low catalase activity in the acatalasemic mouse. This hepatocyte cell line should be useful for studying effects of oxidative radical stress at the cellular level.

Acatalasia↗

Risk factors for the progression of microalbuminuria in Japanese type 2 diabetic patients--a 10 year follow-up study.

To clarify risk factors for the progression of microalbuminuria in Japanese type 2 diabetic patients, the longitudinal study for 10 years was conducted on 67 outpatients with type 2 diabetes, who had shown no overt proteinuria at baseline. The urinary albumin index (UAI) has been determined based on the mean of at least two random urine samples each year. Categories were defined as normoalbuminuria (UAI < 30.0 mg/g x Cr.), microalbuminuria (30.0 < or = UAI < 300.0), and macroalbuminuria (UAI > or = 300.0). Progression was defined as worsening of the category and/or more than doubling of the baseline UAI value. Multiple logistic regression analysis was performed using age, duration of diabetes, HbA1c, blood pressure, BMI, serum lipids, smoking habits, and alcohol consumption as independent variables and the progression of microalbuminuria as a dependent variable. Age and HbA1c were estimated as significant and independent variables. Furthermore, genetic polymorphisms of angiotensin I-converting enzyme (ACE) and angiotensinogen were analyzed to evaluate the genetic contribution. The D/D genotype of ACE was significantly more common in progressors than in non-progressors. These results suggest that glycemic control and age are important risk factors and the D/D genotype of ACE acts as a risk factor for the progression of microalbuminuria in Japanese type 2 diabetic patients.

Adult↗

Increase in beating rate of cultured chick cardiac myocytes by ethanol and inhibition of the increase by antiarrhythmic drugs.

Drinking alcohol sometimes causes cardiac arrhythmia, but the precise mechanism remains unknown. To study the mechanism, we investigated the effects of ethanol exposure on the beating rate of cultured chick cardiac myocytes. Primary cultures of cardiac myocytes were prepared from the ventricles of 14-day-old chick embryos and then treated with ethanol which, in the range of 0.3 to 1.5 vol%, increased the beating rate in a dose-dependent manner. Ethanol (0.6 vol%) caused an increase in the beating rate, but disopyramide (5 microg/ml) and procainamide (10 microg/ml), Na+ and K+ channel blockers, inhibited the increase in the beating rate significantly. Neither lidocaine (5 microg/ml) nor mexiletine (2 microg/ml), Na+ channel blockers, nor calcium antagonist verapamil (5 ng/ml) inhibited the increase. However, tetraethylammonium chloride (ranging from 15 to 30 mmol/l), a K+ channel blocker, inhibited the increase. These findings indicate that ethanol increases the beating rate of cultured chick cardiac myocytes via the activation of the K+ channel. This experimental model may be useful in studying the effect of ethanol on the K+ channel.

Animals↗

SV40LT highly mutates and immortalizes two fibroblast strains from patients with Wilms' tumor.

In order to analyze in detail the process of immortalization of human cells, SV40LT was introduced into two chromosome 11p- fibroblast strains from Wilms' tumor patients. Both fibroblasts, hereafter referred to as CM1 and CM2, displayed the mutant phenotype in the crisis stage of cellular aging. In comparison to a control fibroblast, the density of the CM1 strain was abnormally high while the crisis period of the CM2 strain was abnormally long. The CM1 immortalization was 7 times greater than the control and the CM2 strain had the highest frequency of immortalization, 7 times greater than the CM1. These findings indicate that genes associated with chromosome 11p- may be involved in the immortalization of human cells. During their abnormal crisis periods, the cells derived from the patients with Wilms' tumor showed an extremely high frequency of chromosomal aberrations and mutations (6TGs --> 6TGr). These results indicate that when the growth-arrested cells from Wilms' patients are induced to grow with the introduction of SV40LT at the crisis stage they are highly mutable, resulting in their immortalization in vitro.

Antigens, Viral, Tumor↗

Transferrin synthesized in cultured human fibroblasts is associated with tubulins and has iron binding capacity.

In a previous report (13), using immunocytochemical and fluorescence-labeling techniques, we demonstrated that transferrin is synthesized in cultured human fibroblasts and that it is associated with tubulins in the cells. These morphological findings led us to attempt to elaborate those issues in more detail by biochemical methods. In this report, we were able to prove the association of transferrin produced in cells with tubulins. In addition, the transferrin associated with tubulins was found to bind to iron. These results suggest that endogenous transferrin plays a role in preventing damage caused by free radicals which can be induced by the interaction of iron with the hydrogen peroxide produced in cells.

Cells, Cultured↗

Immunohistochemical localization of betacellulin, a new member of the EGF family, in normal human pancreas and islet tumor cells.

Betacellulin (BTC) purified from mouse beta cell tumor (betaTC-3) is a new member of the epidermal growth factor (EGF) family which can bind receptor tyrosine kinase, EGF receptor (erbB1) and erbB4. It has been demonstrated that proBTC mRNA was abundantly expressed in human pancreas tissue, and that BTC converted amylase-secreting rat acinar cell line (AR42J) into insulin-secreting cells, suggesting that BTC might be important for the growth and/or differentiation of islet cells. However, the cell type producing BTC in the pancreas has not been clarified. In this study, we examined the localization of BTC in human pancreas and islet cell tumors. Immunohistochemistry using specific antibodies to human BTC revealed that this protein was produced in alpha cells and duct cells, and probably in beta cells in normal adult pancreas. Furthermore, strong immunoreactivity to BTC was detected in primitive duct cells of the fetal pancreas, and both insulinoma and glucagonoma cells also showed positive immunoreactivity to BTC. EGF receptor (erbB1) and erbB4 were expressed mainly in islet and duct cells, and duct cells, respectively. These results demonstrate the localization of BTC and its receptors, and suggest that BTC may be one of the factors that have physiologically important roles such as growth and differentiation of islet cells in the human pancreas.

Adenoma, Islet Cell↗

Maintenance of near-diploid karyotype of PA-1 human ovarian teratocarcinoma cells due to death of polyploid cells by chromosome fragmentation/pulverization.

Chromosome instability (polyploidy or aneuploidy) is one of the characteristics of malignant tumors. Human teratocarcinoma cell line PA-1, which was established more than 10 years ago, consists of a majority of near-diploid cells and a minority of polyploid cells, indicating that it is karyologically very stable. In the present study we investigated this genomic stability from the view point of cytogenetics. Cleavages and breaks in the chromosome were found in the metaphase of PA-1 polyploid cells, accompanied by the formation of polynucleosomal DNA fragments. These findings were absent in the near-diploid cells. In addition, polyploid cells did not show colony-formation ability by in situ analysis of cytogenetics in each colony. Thus, the maintenance of the near-diploid karyotype in PA-1 cells may be due to a blockage in the M-phase of the polyploid cells by functional mitotic checkpoints, if any, leading to cell death due to inability to enter the next cell cycle.

Chromosome Banding↗

Cytogenetic characteristics and p53 gene status of human teratocarcinoma PA-1 cells in 407-445 passages.

To study why the human teratocarcinoma cell line PA-1 maintains a stable near-diploid karyotype even after it has been cultured for more than twenty years, p53 gene status of the cell line in 407-445 passages were investigated in detail by DNA sequence analysis and a yeast function status assay. Direct sequence analysis of RT-PCR products showed both wild and mutated bands (p53 codon 239 mutation). Consistent with the above results, the functional assay showed that one allele of the p53 gene was active (wild), while the other was inactive (mutant). In addition, the PA-1 cells expressed the p21 protein to a lesser extent than normal human fibroblasts. Though many lines of evidence have shown that mutant p53 works dominant-negatively, our results suggest that mutation in a p53 allele alone can not induce cytogenetic instability.

Aneuploidy↗

In vivo effects of calcium entry blockers on human parathyroid adenoma cells with special reference to calcium sensing ability and the hormone secretion.

We evaluated the effects of calcium-entry blockers on parathyroid hormone (PTH) secretion by human parathyroid adenoma cells in vitro. Nifedipine and bamidipine inhibited PTH secretion, while diltiazem had no significant effect. Cytosolic calcium concentrations were measured by use of the calcium-sensitive fluorescent dye fluo-3 with confocal laser scanning microscopy. Nifedipine increased the cytosolic concentration of calcium, whereas diltiazem decreased it. Results suggest that, in parathyroid adenoma cells, regulation of PTH secretion with respect to intracellular calcium concentration would be maintained despite differing response of intracellular calcium concentration following exposure to calcium-entry blockers.

Adenoma↗

A new human chondrosarcoma cell line (OUMS-27) that maintains chondrocytic differentiation.

A new human chondrosarcoma cell line, OUMS-27, was established. Monolayer cultures consisted of elongated polygonal cells with a doubling time of 41 hr and a plating efficiency of 2.1%. After reaching confluence, the cells continued to slowly proliferate and formed nodule-like structures, which showed metachromasia when stained with toluidine blue, indicating the presence of proteoglycan. The cells in the nodules were round to polygonal in shape, multilayered and surrounded by abundant extracellular matrix. Types I, II and III collagens were identified by Northern blotting and immunostaining. The cells formed colonies (0.1%) in 0.3% soft-agar medium 3 weeks after inoculation. Inoculation of cells into athymic mice resulted in the formation of tumors at the injection site, resembling the original chondrosarcoma. These results demonstrated that OUMS-27 cells expressed a differentiated chondrocytic phenotype. Moreover, OUMS-27 cells had p53-gene mutation. Thus, the OUMS-27 cell line can provide a useful model not only for studies on human chondrocyte but also for basic studies on the diagnosis, treatment and etiology of human chondrosarcoma.

Bone Neoplasms↗

Inhibitory effects of antioxidants on neonatal rat cardiac myocyte hypertrophy induced by tumor necrosis factor-alpha and angiotensin II.

BACKGROUND: Tumor necrosis factor-alpha (TNF-alpha) and angiotensin II (Ang II) modulate heart failure in part by provoking the hypertrophic response. Signal transduction pathways of those factors are implicated in reactive oxygen intermediates (ROIs). Therefore, we hypothesized that TNF-alpha and Ang II might cause myocyte hypertrophy via the generation of ROIs. METHODS AND RESULTS: To test the hypothesis, we tested whether TNF-alpha and Ang II could induce the generation of ROIs and whether antioxidants such as butylated hydroxyanisole (BHA), vitamin E, and catalase might inhibit the hypertrophy in cultured neonatal rat cardiac myocytes. ROIs were measured by the ROI-specific probe 2',7'-dichlorofluorescin diacetate in cultured cardiac myocytes. We demonstrated that TNF-alpha and Ang II induced the generation of ROIs in a dose-dependent manner. TNF-alpha (10 ng/mL) and Ang II (100 nmol/L) enlarged cardiac myocytes and increased [3H]leucine uptake, and BHA (10 micromol/L) significantly inhibited both effects. Other antioxidants, such as vitamin E (1 microg/mL) and catalase (100 U/mL), also inhibited the enlargement of cardiac myocytes induced by TNF-alpha. CONCLUSIONS: These results indicate that TNF-alpha and Ang II cause hypertrophy in part via the generation of ROIs in cardiac myocytes.

Angiotensin II↗

Characteristics of intracellular transferrin produced by human fibroblasts: its posttranscriptional regulation and association with tubulin.

Transferrin (Tf), an iron-binding protein, was investigated in the cultured human fibroblast which is a major cell type in connective tissues. Tf is a major iron-transporting protein and has an important role in iron metabolism. Using two-dimensional gel electrophoresis, we demonstrated the eight subtypes of Tf produced by cultured normal human fibroblasts and their down-regulation after the immortalization of human cells, an essential early step of in vitro transformation. However, the amount of Tf mRNA in the immortalized cells was equal to that in the normal human fibroblasts, suggesting that the down-regulation occurred at the posttranscriptional level. The amount of Tf receptor increased in the immortalized cells in spite of a decrease in the amount of intracellular Tf. Interestingly the produced Tf associated with microtubules. These findings suggest a novel aspect of Tf characteristics in human fibroblasts.

Cell Line↗

Transforming growth factor-beta 1 stimulates or inhibits cell growth via down- or up-regulation of p21/Waf1.

Transforming growth factor-beta (TGF-beta) regulates cell proliferation positively or negatively. The mitoinhibition by TGF-beta has been attributed to induction of cyclin-dependent kinase (CDK) inhibitors, such as p15/ Ink4B, p27/Kip1, and p21/Waf1 also known as Cip1 and Sdi1. However, the biological process by which TGF-beta exerts the stimulatory effects on cell growth remains poorly understood. Here we report that TGF-beta 1 stimulates DNA synthesis of IMR-90 human embryonic lung fibroblasts but inhibits that of HuCCT1 human cholangiocarcinoma cells, via down- or up-regulation of p21/Waf1, respectively. TGF-beta 1 markedly suppresses IMR-90 cells to express two different kinds of the p21/Waf1 gene transcription factors, the p53 tumor suppressor and the interferon regulatory factor-1 (IRF-1). This is followed by a marked decrease in expression of p21/Waf1 in a manner consistent with the timing of activation of cyclin E-associated kinase, which normally accompanies the G1-S transition in the cell cycle. Contrarily, TGF-beta 1-induced inhibition of DNA synthesis in HuCCT1 cells is preceded by IRF-1-dependent but p53-independent up-regulation of p21/Waf1 expression followed by inactivation of cyclin E-associated kinase. Thus the cell growth stimulation or inhibition by TGF-beta 1 are mediated by the down- or up-regulation of p21/ Waf1, respectively.

CDC2-CDC28 Kinases↗

Increased hepatocyte growth factor production by aging human fibroblasts mainly due to autocrine stimulation by interleukin-1.

Hepatocyte growth factor (HGF), also known as scatter factor is a pleiotropic factor that is mainly produced by mesenchymal cells and acts on cells of epithelial origin which express the HGF receptor c-Met. Here we demonstrate that production of HGF by human embryonic lung fibroblasts increased sharply after about 70% completion of their lifespan in culture, which is regulated at the transcriptional level. In addition, human skin fibroblasts from old donors, over 80 years, also produced more HGF than cells from young and middle-aged donors. The increased production of HGF by aging fibroblasts from human embryonic lung tissue is mainly due to autocrine stimulation by interleukin-1.

Adult↗

Ubiquitous presence of cellular proteins that specifically bind to the 3' terminal region of hepatitis C virus.

The 3' terminal region (3'-X tail) of hepatitis C virus (HCV) genomic RNA forms a stable stem-loop structure. The 3'-X tail consists of 98 nucleotides (nt) that are highly conserved among the HCV strains and supposed to function as a cis-acting region for replication of negative strand RNA and/or viral encapsidation. In the present study, by UV cross-linking assay we found two kinds of cellular proteins of approximately 87 and 130 kDa, which specifically bind to the full-length 3'-X tail (nt 1 to 98), but not the 3'- or 5'-truncated 3'-X tail, consisting of nt 1 to 50 or nt 51 to 98, respectively. These proteins were detected in human cell lines such as hepatic tumor cell lines and a T-lymphocyte cell line and also in a human embryonic lung fibroblast cell strain. In addition, human hepatocellular carcinoma tissues expressed these proteins regardless of infection or uninfection of HCV. Furthermore, these proteins were also detected in normal human tissues derived from the lung, heart, kidney, stomach, intestine, and colon. Thus, these cellular proteins, which are ubiquitously present in human tissues, might be involved in viral replication and/or encapsidation.

Binding Sites↗

Cyclin E overexpression responsible for growth of human hepatic tumors with p21WAF1/CIP1/SDI1.

We examined a relationship between p21WAF1/CIP1/SDI1 and cell-cycle-related proteins in 12 human liver tumor cell lines (JHH-1, -2, -4, -5, -6, -7; HLE; HuH-7; Hep3B; PLC/PRF/5; HuH-6; HepG2). Seven (JHH-1, -2, -5, -6, -7; Hep3B; HepG2) out of eight cell lines having p21WAF1/CIP1/SDI1 protein overexpressed cyclin E protein, although one of them (JHH-5) overexpressed a reduced size of cyclin E. The rest (HuH-6) of the 8 cell lines with p21WAF1/CIP1/SDI1 showed a decreased expression of cyclin E. Four cell lines (JHH-4; HLE; HuH-7; PLC/PRF/5) deficient of p21WAF1/CIP1/SDI1 protein did not overexpress cyclin E protein. As to expression of the other cell-cycle-related proteins, cyclin A, cyclin D1, CDK2 or CDK4, no significant difference was detected among the 12 cell lines. These findings indicate that the human liver tumor cell lines which have the p21WAF1/CIP1/SDI1-inducible barriers of the cell cycle progression can go through the G1/S checkpoint by overexpressing cyclin E.

Blotting, Northern↗