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Y Tomino

Publications and source records attributed to Y Tomino.

At least 19 recordsLinked to original sources

An (CA)n dinucleotide repeat polymorphism of the interleukin-6 (IL-6) gene is associated with metacarpal bone mineral density in hemodialysis patients.

Genetic factors may play an important role in the pathogenesis of reduced bone mineral density (BMD). IL-6 is a multifunctional cytokine and a candidate gene for regulation of bone mineral density (BMD). The relationship between a microsatellite polymorphism of the IL-6 gene and metacarpal BMD in Japanese hemodialysis patients was examined. We selected 165 patients (96 males and 69 females) with a mean age of 62.0 +/- 13.7 years (mean +/- standard deviation (SD) in this study. They were dialyzed for an average of 75.8 +/- 60.8 months (mean +/- SD). The microsatellite polymorphism in the IL-6 gene was examined. According to the number of cytosine-adenine repeats, varying from 13 to 18, 6 alleles could be distinguished. Patients were categorized based on the presence or absence of the allele with 126 bp (i.e. 14 CA repeats) (allele A, all others allele O). The frequencies of IL-6 gene genotypes in hemodialysis patients were 16.4% for OO, 52.1% for AO and 31.5% for AA. The BMD score adjusted for age and body weight (Z score) in the AA genotype group (-0.93 +/- 1.17) was significantly lower than that in the OO (-0.09 +/- 1.42, mean +/- SD, p < 0.005) or AO group (-0.48 +/- 1.15, mean +/- SD, p < 0.01). Serum intact PTH in the OO genotype group (79.3 +/- 84.6) was lower than that in the AA (120.8 +/- 113.6, mean +/- SD, p 0.10) or AO group (132.1 +/- 106.5, mean +/- SD, p < 0.05). These results suggest that polymorphism of the IL-6 gene may be a useful marker for reduced BMD.

Aged↗

Blockade of TGF-beta signaling in T cells prevents the development of experimental glomerulonephritis.

Anti-glomerular basement membrane (GBM) Ab-induced glomerulonephritis (GN) at late stage is thought to be mediated by T cells. However, signaling pathways of T cells that are involved in the development of anti-GBM Ab-induced GN are unclear. We have recently established transgenic mice expressing Smad7, an inhibitor of TGF-beta signaling, in mature T cells, where signaling by TGF-beta was blocked specifically in T cells. In this study, we showed that anti-GBM Ab-induced GN was suppressed in several measures in the transgenic mice including the severity of glomerular changes, proteinuria, renal function, and CD4 T cell infiltration into the glomeruli without down-regulation of CD62 ligand (CD62L) (L-selectin) expression on CD4 T cells. Furthermore, treatment with the soluble fusion protein of CD62L and IgG enhanced anti-GBM Ab-induced GN. These findings indicated that blockade of TGF-beta signaling in T cells prevented the development of anti-GBM Ab-induced GN. Because CD62L on T cells appears to be inhibitory for the development of anti-GBM Ab-induced GN, persistent expression of CD62L on CD4 T cells may explain, at least in part, the suppression of anti-GBM Ab-induced GN in the transgenic mice. Our findings suggest that the development of anti-GBM Ab-induced GN requires TGF-beta/Smad signaling in T cells.

Animals↗

Serum cystatin C may predict the prognostic stages of patients with IgA nephropathy prior to renal biopsy.

The relationship between the levels of serum cystatin C and the prognostic stages of IgA nephropathy was determined in a multicenter trial in Japan. The levels of serum cystatin C in patients with IgA nephropathy were measured using the Dade Behring N Latex Cystain C assay. In 1995, the Joint Committee of the Special Study Group on Progressive Glomerular Diseases, Ministry of Health and Welfare of Japan, and the Japanese Society of Nephropathy reported four prognostic stages. These are: good prognosis group (Group I), relatively good prognosis group (Group II), relatively poor prognosis group (Group III), and poor prognosis group (Group IV), for this disease. Three-hundred and six patients with IgA nephropathy and other glomerular diseases were examined. There were no significant changes in the levels of serum creatinine (Cr) or creatinine clearance (CCr) between Group I and Group II. The mean levels of serum cystatin C in Group II were significantly higher than those in Group I (P < 0.05). The mean levels of serum cystatin C in Group III or IV were significantly higher than those in Group I (P < 0.001, P < 0.005, respectively). These suggest that the measurement of serum cystatin C may predict the prognostic stages of patients with IgA nephropathy prior to renal biopsy.

Adult↗

Urinary levels of interleukin-8 (IL-8) and disease activity in patients with IgA nephropathy.

Using quantitative sandwich ELISA, we studied 27 patients with IgA nephropathy to determine whether the levels of urinary IL-8 might reflect the disease activity. The levels of urinary IL-8 in patients with advanced stage IgA nephropathy were significantly higher than those in the patients with the mild stage of this disease, or in the healthy controls. The results showed a positive significant correlation between the levels of IL-8 and disease activity, i.e., between levels of urinary protein and urinary casts. A significant correlation between levels of urinary IL-8 and tubular function damage was also found. It was thus suggested that measurement of urinary IL-8 might be useful in evaluating the degree of renal injuries and/or prognosis in patients with IgA nephropathy.

Adult↗

Asian multicenter trials on urinary type IV collagen in patients with diabetic nephropathy.

To investigate the changes of renal type IV collagen turnover in diabetic nephropathy, urinary type IV collagen was measured by a highly sensitive one-step sandwich enzyme immunoassay (EIA). Urinary samples were obtained from 698 diabetic patients and 191 healthy adults. Among the patients, 264 had urinary albumin levels of less than 29 mg/g.creatine (Cr) (Stage I: normoalbuminuric stage), 169 had microalbuminuria from 30 to 299 mg/g.Cr (Stage II: microalbuminuric stage), 84 patients had macroalbuminuria of more than 300 mg/g.Cr and serum Cr of less than 1.1 mg/dl (Stage IIIA: macroalbuminuric stage without renal dysfunction), 97 had macroalbuminuria of more than 300 mg/g.Cr and serum Cr of more than 1.2 mg/dl (Stage IIIB: macroalbuminuric stage with renal dysfunction), and 84 had renal failure (Stage IV). The levels of urinary type IV collagen in Stages II, IIIA, IIIB, and IV were significantly higher than those in Stage I (P < 0.0001). The level of urinary type IV collagen in Stage I (5.00 +/- 0.23 microg/g.Cr; mean +/- SE) was also higher than that in normal adults (3.44 +/- 0.11 microg/g.Cr; mean +/- SE). These levels increased gradually due to progression of the clinical stage of diabetic nephropathy. It appears that the levels of urinary type IV collagen can be a useful marker for detecting renal injuries in diabetes according to our Asian multicenter trials.

Aged↗

Polymorphism in promoter region of Fcalpha receptor gene in patients with IgA nephropathy.

We have recently identified two novel polymorphisms (-114T/C and +56T/C relative to the major transcription start site) in the functional promoter region of the Fcalpha receptor (FcalphaR) gene. Since altered FcalphaR expression may be associated with IgA nephropathy, we examined these promoter polymorphisms in this disease. Patients with IgA nephropathy (n = 90), patients with other primary glomerulonephritis (n = 50), and healthy adults (n = 83) were studied. Genotyping was performed by the polymerase chain reaction (PCR) followed by direct sequence analysis and was subsequently confirmed by PCR with mismatched primers followed by restriction fragment length polymorphism analysis. The study demonstrated that the frequency of the +56C allele in patients with IgA nephropathy (0.511) was significantly (P < 0.01) higher than that in patients with other primary glomerulonephritis (0.350) and healthy adults (0.337). In addition, a significant increase in the frequency of the +56CC genotype was observed in patients with IgA nephropathy (27.8% vs 10.0% in other GN and vs 9.6% in healthy adults). In contrast, no significant difference in the frequencies of the +56CC genotype and +56C allele was observed between other primary glomerulonephritis patients and healthy adults. The frequency of the -114CC genotype in patients with IgA nephropathy was significantly increased compared with those in both control groups (15.6% vs 4.0% in other GN and vs 2.4% in healthy adults). Polymorphisms of the FcalphaR promoter region therefore appear to be associated with susceptibility to IgA nephropathy, suggesting the importance of the FcalphaR gene and its expression in this disease.

Adolescent↗

Identification of cellular origin of type I collagen in glomeruli of rats with crescentic glomerulonephritis induced by anti-glomerular basement membrane antibody.

BACKGROUND: Type I collagen is an interstitial collagen, which is not present in normal glomeruli. As type I collagen was observed in advanced glomerular lesions, it appears to be associated with deterioration of renal function. However, the origins of cells expressing type I collagen mRNA in glomeruli of diseased kidneys remains controversial. METHODS: We examined the expression of type I collagen in glomeruli at protein and mRNA levels in rat crescentic glomerulonephritis induced by anti-glomerular basement membrane (GBM) antibody. In addition, in situ hybridization and immunohistochemical staining of serial sections were performed to identify the cellular origin of type I collagen in glomeruli. RESULTS: Semi-quantitative reverse transcription-polymerase chain reaction (RT-PCR) in isolated glomeruli showed that mRNA expression of type I collagen was remarkably increased on days 7, 14, and 28 after anti-GBM antibody injection (12.2+/-1.4, 20.2+/-2.1 and 14.6+/-1.0-fold over day 0, respectively). Immunofluorescence for type I collagen demonstrated marked staining in the fibrocellular and fibrous crescents, and weak staining within glomerular mesangial areas. In close association with mRNA levels analysed by RT-PCR, in situ hybridization revealed predominant presence of alpha1(I) collagen mRNA in cells within crescentic areas and Bowman's capsules. Serial section analysis for immunostaining and in situ hybridization showed that some alpha1(I) collagen mRNA-positive cells were also positive for cytokeratin. In contrast, no alpha1(I) collagen mRNA-positive cells were stained by ED-1 and podocalyxin. CONCLUSIONS: It appears that increased expression of type I collagen at the protein and mRNA levels in glomeruli is involved in the progression of glomerulonephritis. At least in this crescentic model, parietal epithelial cells (PECs) may partially contribute to the dysregulated production of type I collagen, which leads to glomerulosclerosis.

Animals↗

An intron 4 gene polymorphism in endothelial cell nitric oxide synthase might modulate lipid metabolism in nondiabetic patients on hemodialysis.

We investigated the relationship between endothelial constitutive nitric oxide synthase (ecNOS) gene polymorphism and lipid metabolism in patients with nondiabetic chronic renal failure on hemodialysis. Serum from 181 nondiabetic patients on hemodialysis were examined. A genomic DNA fragment was amplified by polymerase chain reaction (PCR) for determining the ecNOS genotype. The PCR products were designated as a and b alleles by electrophoresis. In hemodialysis patients, the frequency of the ecNOS4 for b/b, b/a and a/a genotype was 76.6, 22.8 and 0.6%, respectively. There was not significant difference in the levels of total cholesterol (TC), triglyceride (TG) and calculated low-density lipoprotein cholesterol (LDL-c) in sera between patients (aa and ba) with the a allele and patients (bb) without the a allele. On the other hand, the levels of serum high-density lipoprotein cholesterol (HDL-c) in patients with the a allele (51.9 +/- 3.33 mg/dl) were significantly higher than those in patients without the a allele (43.05 +/- 1.40 mg/dl) (p = 0.005). The frequency of patients with the a allele and low levels of serum HDL-c among patients with a long duration of dialysis (> or =10 years) was significantly lower than that in patients with short duration of dialysis (<10 years) (p = 0.05). It appears that an intron 4 gene polymorphism in ecNOS may modulate lipid metabolism in nondiabetic patients on hemodialysis and the a allele of ecNOS gene polymorphism may affect the prognosis of hemodialysis patients with low levels of serum HDL-c.

Alleles↗

Effect of steroid-liposome on immunohistopathology of IgA nephropathy in ddY mice.

Immunopathological studies were performed to determine whether glomerular injuries in ddY mice, a spontaneous animal model for IgA nephropathy, are influenced by treatment with a newly developed liposome loaded with prednisolone phosphate (PSL-liposome). The newly synthesized novel cationic lipid 3,6-dipentadeciroxy-1-amizino-benzene (TRX-20) was employed to obtain selective affinity to the anionic cell surface and extracellular matrices in glomerular mesangial lesions. ddY mice were treated intravenously with 1.0 mg/kg of PSL-liposome once a week for 16 weeks (from 45 weeks to 61 weeks of age). ddY mice were also intravenously treated with 1.0 mg/kg of ordinary PSL once a week for the same duration. On immunofluorescence, depositions of IgA and C3 in the glomerular mesangial areas and capillary walls of PSL-liposome-treated ddY mice were markedly decreased as compared with those of ordinary PSL-treated and untreated control ddY mice. The mean intensity of IgA and C3 in glomeruli of PSL-liposome-treated ddY mice was decreased as compared with that in ordinary PSL-treated and untreated control ddY mice. Glomerular mesangial expansion in PSL-liposome-treated ddY mice was milder than that found in ordinary PSL-treated ddY mice or untreated control ddY mice. It appears that treatment with PSL-liposome is effective in improving glomerular IgA and C3 depositions and glomerular expansion in IgA nephropathy of ddY mice.

Animals↗

Relationship between mast cells in the tubulointerstitium and prognosis of patients with IgA nephropathy.

There have been a few reports suggesting that mast cells may play an important role in the development of fibrosis and/or the degradation of extracellular matrix. We examined the relationship between the number of distribution of mast cells in tubulointerstitium and prognosis of patients with IgA nephropathy. Renal biopsy specimens were stained with mouse monoclonal antihuman mast cell tryptase antibody and then with aniline blue. Specimens from 45 patients with IgA nephropathy and from 5 patients with minimal-change nephrotic syndrome were used. There was a significant correlation between the number of mast cells per unit area of the whole tubulointerstitium and the degree of tubulointerstitial fibrosis or renal function. Patients with IgA nephropathy were divided into two groups (group 1: 'minimal' and 'slight'; group 2: 'moderate' and 'advanced') according to the classification by a previously reported method. Mast cells were mainly observed in the fibrotic areas in group 1. In group 2, many mast cells were detected not only in the fibrotic but also in the nonfibrotic areas. It appears that the number of mast cells in the nonfibrotic areas may be one of the predictive factors for the prognosis of patients with IgA nephropathy.

Adolescent↗

Protein localization and mRNA expression of epimorphin in mouse and human kidneys.

Epimorphin is a mesenchymal cell surface protein which induces epithelial branching morphogenesis. However, the role of epimorphin in the kidney has not been addressed. In the present study, the localization of epimorphin protein and the expression of its mRNA were investigated in the developing mouse and adult human kidneys using immunohistochemistry and semiquantitative RT-PCR. The in vitro expression of epimorphin protein and its mRNA was also explored in cultured mouse and human mesangial cells. Epimorphin protein was expressed in the renal interstitium and the circumference of the comma-shaped body at day 16 of gestation. The intensity and distribution of epimorphin were gradually increased during kidney differentiation and maturation. Epimorphin was first observed in glomeruli at 1 week of age. The localization of epimorphin in glomerular mesangial cells and interstitial fibroblasts was confirmed by immunoelectron microscopy of 2-week-old mouse kidneys. The highest mRNA expression of epimorphin was observed at day 16 of gestation, thereafter it diminished with the maturation of the kidney. A similar localization of epimorphin was observed in a normal adult human kidney. Cultured human mesangial cells expressed epimorphin mRNA 150-kD protein. These results suggest that epimorphin may play a role in the development of the kidney and in the differentiation of fibroblast and mesangial cells.

Animals↗

Dilazep hydrochloride, an antiplatelet drug, inhibits lipopolysaccharide-induced mouse mesangial cell IL-6 secretion and proliferation.

BACKGROUND: Antiplatelet agents have been widely used to reduce proteinuria and to prevent the progression of chronic glomerulonephritis or diabetic nephropathy to end-stage renal failure. Dipyridamole, one type of antiplatelet drug, inhibits the proliferation of glomerular mesangial cells (MCs). The effect of dilazep hydrochloride (dilazep) on these cells is still obscure. The effects of dilazep on cultured MC IL-6 secretion and proliferation were investigated in the present study. METHODS: IL-6 secretion from MC induced by bacterial lipopolysaccharide (LPS) were assessed using sandwich ELISA. LPS-induced MC proliferation was detected by 3H-thymidine incorporation and WST-1 assay (similar to MTT assay). RESULTS: Incubation of MCs with various dosages of LPS (0, 1, 10, 50 and 100 ng/ml) induced IL-6 secretion in a dose-dependent manner. However, dilazep significantly inhibited this LPS-induced IL-6 secretion from MCs in a dose- and time-dependent manner. Dilazep also significantly inhibited MC proliferation in a dose-dependent manner. CONCLUSION: It appears that these effects of dilazep may prevent progression of mesangial proliferative glomerulonephritis.

Animals↗

Podocyte injury predicts prognosis in patients with iga nephropathy using a small amount of renal biopsy tissue.

To predict the progression in patients with IgA nephropathy, we analyzed glomerular lesions except for sclerosis, adhesion and/or crescents in 34 patients with this disease by morphometric analysis. Levels of urinary protein excretion (UP), creatinine clearance (Ccr), serum creatinine (sCr) and mean blood pressure (MBP) at the time of renal biopsy were used as the clinical parameters. The slope of 1/sCr was also used as a prognostic parameter. Renal specimens were obtained by echo-guided biopsy. In PAS-stained light microscopic renal sections, three mid sections of open glomeruli were selected and photographed. Stereologic estimation was performed as follows: absolute values of glomerular volume (V(G)), glomerular surface area (S(G)), podocyte and nonpodocyte cell number per glomerulus (N(G(pod)) and N(G(Non-pod))), glomerular surface area covered by one podocyte S(G)/N(G(pod))) and glomerular volume occupied by one nonpodocyte cell (V(G)/N(G(Non-pod))). There was a significant correlation between the levels of UP and the change of podocyte injury parameters (N(G(pod)) and S(G)/N(G(pod))) or N(G(Non-pod)). N(G(pod)) was negatively but S(G)/N(G(pod)) and N(G(Non-pod)) were positively correlated with UP. S(G)/N(G(pod)) or N(G(Non-pod)) was correlated with MBP. N(G(pod)), S(G)/N(G(pod)), N(G(Non-pod)), UP or MBP was significantly correlated with the slope of 1/sCr. High specificity was observed for N(G(pod)), S(G)/N(G(pod)) and MBP. High sensitivity was also observed for N(G(Non-pod)) and UP. It appears that podocyte injury might provide additional prognostic information in patients with IgA nephropathy.

Adolescent↗

Animal models.

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Animals↗