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Nahoko Yata

Publications and source records attributed to Nahoko Yata.

6 recordsLinked to original sources

Analysis of NPHS1, NPHS2, ACTN4, and WT1 in Japanese patients with congenital nephrotic syndrome.

BACKGROUND: Congenital nephrotic syndrome (CNS) causes significant renal failure, and is classified into two types: (1) Finnish type; and (2) other, including diffuse mesangial sclerosis. Mutations of NPHS1 and NPHS2, which encode the slit diaphragm components nephrin and podocin, cause CNS and autosomal-recessive familial steroid-resistant nephrotic syndrome, respectively. Most patients with Finnish-type CNS in Europe and the United States have NPHS1 mutations. However, NPHS2 mutations have been detected in some cases. Mutations in ACTN4, encoding alpha-actinin-4, cause an autosomal-dominant focal segmental glomerulosclerosis. alpha-actinin-4 stabilizes the podocyte cytoskeleton structure, connecting with actin filaments. WT1 mutations, causing Wilm's tumor, have been demonstrated in some CNS patients with diffuse mesangial sclerosis. Systematic investigation of genes for CNS in Japan has never been performed. METHODS: To clarify the role of mutations in these four genes, we used polymerase chain reaction (PCR) and direct sequencing to investigate all exons and exon-intron boundaries for these genes in 13 unrelated CNS patients from regional pediatric kidney disease centers in Japan. RESULTS: A novel homozygous nonsense mutation of NPHS1, E246X in exon 7, and a novel homozygous deletion mutation of NPHS1, 2156_2163del in exon 16 were detected in one patient each. A novel homozygous nonsense mutation of NPHS2, R196X in exon 5, was found in one patient, and the same heterozygous nonsense mutation was detected in another. No ACTN4 or WT1 mutations were detected. CONCLUSION: These studies demonstrate that mutation of NPHS1 is not a major cause of CNS in Japanese patients, and that mutation of NPHS2 can be responsible for CNS in this population.

Actinin↗

Evaluation of the inferior vena cava in potential pediatric renal transplant recipients.

Vascular anomalies due to occlusion or thrombosis of the inferior vena cava (IVC) may be hazardous to renal transplantation, and preoperative vascular evaluation is important for safe and successful surgery. The purpose of this study was to assess the utility and accuracy of two-dimensional time-of-flight (2D-TOF) magnetic resonance venography (MRV) as an alternative to conventional angiography for evaluating the IVC and iliac vein in potential pediatric renal transplant recipients. Four children with chronic renal failure were evaluated with 2D-TOF MRV by superior presaturation pulse and target maximum intensity projection. The whole MRV examination and filming required less than 30 min. All four patients had a normal IVC and iliac vein. Two of the patients underwent renal transplantation, and the MRV findings were in total agreement with the final anatomy revealed intraoperatively. MRV is accurate for evaluating the condition of the IVC and iliac vein. It is a reliable, noninvasive and rapid technique that can be considered as an alternative to invasive angiography for evaluation of children scheduled for transplantation. We recommend the use of this noninvasive procedure to ascertain the patency of the IVC in all infants and children with a history of indwelling catheters in the IVC or those with a propensity to thrombosis, i.e., all recipients with nephrotic syndrome. The insertion of catheters in the femoral vein in children who may become candidates for renal transplantation should be discouraged.

Adolescent↗

Typical MPGN with few urinary abnormalities.

We describe the concurrent appearance of membranoproliferative glomerulonephritis (MPGN) in renal biopsy samples and normal urinary sediment without hematuria, proteinuria, or renal dysfunction in 1 child and asymptomatic microscopic hematuria without significant proteinuria or renal dysfunction in 2 children who were subsequently followed up for many years. The only other abnormality detected was hypocomplementemia. This is the first report of biopsy-proven typical MPGN in patients with few urinary abnormalities. A renal biopsy should be considered in children with hypocomplementemia, regardless of urinalysis findings, to exclude MPGN.

Biopsy↗

A-20C angiotensinogen gene polymorphism and proteinuria in childhood IgA nephropathy.

We have previously reported that the TT genotype of the angiotensinogen gene and the ID/DD genotype of the angiotensin-converting enzyme gene are associated with increased severity of proteinuria in IgA nephropathy in Japanese children. Recently it was reported that polymorphism at -20 from adenine to cytosine in the angiotensinogen gene, increasing the level of this transcript, was associated with the progression of renal dysfunction in adult IgA nephropathy. We therefore investigated whether this polymorphism is involved in IgA nephropathy in Japanese children. We identified this polymorphism in 105 children with IgA nephropathy and 119 healthy adults using polymerase chain reaction/restriction fragment length polymorphism analysis. At the time of biopsy, all patients had normal blood pressure and renal function. There were no differences in the genotypes and allele frequencies of this polymorphism between patients with IgA nephropathy and controls. The number of patients with the AC/CC genotype showing heavy proteinuria (>or=1.0 g/day per m(2) body surface area) at biopsy was significantly higher than that with the AA genotype ( P=0.039, chi-squared test). The AC/CC genotype of this polymorphism may be associated with an increased severity of proteinuria, suggesting that this polymorphism may play a significant role in the progression of IgA nephropathy in Japanese children.

Adenine↗

[Peritoneal dialysis catheter-related complications].

UNLABELLED: The introduction of a double-cuff swan neck type catheter has reduced the frequency of peritonitis. The frequency of complications associated with insertion of this catheter has remained unknown. We evaluated these complications in patients aged < 20 years at the start of the chronic peritoneal dialysis using double-cuff swan neck catheters. SUBJECTS AND METHODS: The data from 221 double-cuff swan neck catheters of 126 patients inserted in our hospital between 1990 and 2001 were compared with 102 single-cuff straight catheters of 54 patients between 1982 and 1990. The frequency of catheter-related complications, such as dislocation, leakage with in/outflow malfunction and infection(exit-site/tunnel infection and peritonitis within a month after catheter insertion) were estimated. RESULTS: We observed 37 dislocations(17%), 37 leakages(17%) and 36 infections(16%) of all double-cuff swan neck catheters. Twenty-nine catheters were removed due to catheter-related complications: 18 dislocations(8%), 2 leakages(1%) and 9 infections(4%). Catheter removal due to dislocation occurred significantly more frequently in 12% of children who were > or = 6 years old than in 1% of children < 6 years old(p = 0.002). Eighty-three percent of dislocations could be returned by the whiplash method(alpha-replacer, JMS, Tokyo). Of all single-cuff straight catheters, 10 catheters were removed due to catheter-related complications: 4 dislocations(4%), 6 leakages(6%) and 12 infections(12%). CONCLUSION: A single-cuff straight type catheter was more frequently replaced because of leakage and infection than a double-cuff swan neck type catheter. A double-cuff swan neck catheter was more frequently replaced because of dislocation than a single-cuff straight catheter. When a double-cuff swan neck catheter is inserted particularly in older children, care should be taken to avoid dislocation.

Catheterization↗