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Biomedical subjects

Seiya Okuda

Publications and source records attributed to Seiya Okuda.

At least 19 recordsLinked to original sources

Carbonic-adsorbent AST-120 reduces overload of indoxyl sulfate and the plasma level of TGF-beta1 in patients with chronic renal failure.

BACKGROUND: We previously reported a significant increase in plasma TGF-beta1 in patients with chronic renal failure (CRF). Progression of CRF may be caused by persistent renal production of TGF-beta1. In CRF rat models, an oral carbonic absorbent (AST-120) reduces the expression of the TGF-beta1 gene in the kidney, and delays the progression of CRF, in part by alleviating the overload of indoxyl sulfate. The aim of this study was to evaluate the effect of AST-120 on plasma levels of indoxyl sulfate and TGF-beta1 in CRF patients. METHODS: Ten CRF patients (aged 59.3 +/- 9.5 years, 5 men, serum creatinine 4.37 +/- 1.72 mg/dl) were enrolled in this study. All patients maintained a regular dietary therapy and the same medication throughout the study. AST-120 was added at a dose of 6 g/day. Parameters including the slope of the reciprocal of the serum creatinine-time plot, plasma indoxyl sulfate level, and plasma and urinary levels of TGF-beta1 were compared before and after the treatment with AST-120. The mean observation periods before and after the treatment were 9.7 +/- 2.8 and 6.5 +/- 2.9 months, respectively. RESULTS: Administration of AST-120 significantly reduced the plasma levels of indoxyl sulfate (1.42 +/- 1.50 vs. 1.26 +/- 1.40 mg/dl, P < 0.05) and TGF-beta1 (17.9 +/- 7.2 vs. 10.6 +/- 4.7 ng/ml, P < 0.05) and improved the slope of the reciprocal of serum creatinine (-0.061 +/- 0.041 vs. -0.032 +/- 0.055 dl/mg/year, P < 0.05). CONCLUSIONS: These results support the notion that indoxyl sulfate and TGF-beta1 may be involved in the progression of CRF, and that the oral adsorbent AST-120 may suppress the progression, at least in part, by reducing overproduction of TGF-beta1.

Adsorption↗

Pitavastatin inhibits lysophosphatidic acid-induced proliferation and monocyte chemoattractant protein-1 expression in aortic smooth muscle cells by suppressing Rac-1-mediated reactive oxygen species generation.

Lysophosphatidic acid (LPA), a product generated during oxidative modification of low-density lipoprotein (LDL) and a major lipid extracted from human atherosclerotic plaques, has been shown to elicit smooth muscle cell (SMC) proliferation and inflammation, thereby being involved in atherogenesis. Recently, statins, an inhibitor of 3-hydroxy-methylglutaryl coenzyme A (HMG-CoA) reductase, have been reported to reduce the risk of cardiovascular events and slows the progression of atherosclerosis, at least partly, via pleiotropic effects. However, the effect of statin on the LPA-signaling in SMCs remains to be elucidated. In this study, we investigated whether and how pitavastatin could inhibit the LPA-induced proliferation and monocyte chemoattractant protein-1 (MCP-1) expression in cultured human aortic SMCs. LPA dose-dependently increased intracellular reactive oxygen species (ROS) generation in SMCs, which was blocked by diphenylene iodonium (DPI), an inhibitor of NADPH oxidase or pitavastatin. The anti-oxidative property of pitavastatin was prevented by simultaneous treatment of geranylgeranyl pyrophosphate. Furthermore, overexpression of dominant negative Rac-1 mutant was found to inhibit the LPA-induced ROS generation in SMCs. LPA induced Rac-1 activation in SMCs, which was suppressed by pitavastatin or LPA receptor antagonist. Pitavastatin, DPI, and an anti-oxidant N-acetylcysteine inhibited the LPA-induced proliferation and MCP-1 gene expression in SMCs. These results suggest that pitavastatin could block the LPA-induced proliferation and MCP-1 expression in SMCs by suppressing Rac-1-mediated NADPH oxidase-dependent ROS generation. Our present study provides a novel beneficial aspect of pitavastatin; pitavastatin may act as a blocker of the LPA-signaling in SMCs.

Antioxidants↗

Granulocytapheresis (GCAP) for severe alcoholic hepatitis-A preliminary report.

AIM: To evaluate the efficacy of granulocytapheresis therapy in alcoholic hepatitis. METHODS: We attempted to trap leukocytes in the peripheral circulation using the granulocytapheresis (GCAP) technique in patients with severe alcoholic hepatitis who showed a marked elevation of peripheral leukocytes. Corticosteroids were co-administered. RESULTS: The Maddrey's indices for these patients varied between 42 and 117 and MELD scores for alcoholic hepatitis (Mayo) ranged from 20 to 44. Survival rate was 50% (3/6), which is better than the results reported recently for similar patients in a national survey (29%). The effect of GCAP was reflected in decreases in interleukin-6 and interleukin-8 levels as well as in serum concentrations of soluble intercellular adhesion molecule. White blood cell counts were not affected. In the surviving patients, the Maddrey's indices and MELD scores for alcoholic hepatitis varied between 49 and 67, and 20 and 22, respectively, showing that GCAP is effective in patients with disease of moderate severity. Hemolytic anemia occurred in one patient after GCAP therapy. Other events such as pancreatitis, pneumonia, and cerebral hemorrhage were considered to be related to the alcoholic hepatitis itself. CONCLUSION: GCAP therapy deserves further evaluation as a new therapeutic modality for a moderately severe alcoholic hepatitis.

Journal Article↗

Molecular mechanism for elevation of asymmetric dimethylarginine and its role for hypertension in chronic kidney disease.

Asymmetric dimethylarginine (ADMA) is an endogenous inhibitor of nitric oxide synthase. ADMA is generated by protein methyltransferase (PRMT) and is metabolized mainly by dimethylarginine dimethylaminohydrolase (DDAH). ADMA levels are reported to increase in patients with chronic kidney disease (CKD), thereby playing a role in the pathogenesis of accelerated atherosclerosis in this population. However, the precise mechanism underlying ADMA accumulation in these patients is not fully understood. This study investigated the molecular mechanism for the elevation of ADMA levels in CKD, using a rat remnant kidney model that represents progressive CKD. After male Sprague-Dawley rats underwent baseline measurement of BP and renal function, 5/6 subtotal nephrectomy (5/6Nx) and 4/6 nephrectomy were performed. Plasma and urinary levels of ADMA and symmetric dimethylarginine, an inert isomer of ADMA, were measured by HPLC. Expression levels of PRMT genes and DDAH proteins were analyzed by semiquantitative reverse transcription-PCR and Western blotting, respectively. Plasma ADMA levels were elevated in the Nx groups in proportion to the degree of nephrectomy despite marked increases in renal clearance of ADMA. In contrast, renal clearance of symmetric dimethylarginine was decreased and its plasma levels were increased in the Nx groups. Furthermore, both liver and kidney gene expression of PRMT was increased, whereas DDAH protein expression was decreased in the 5/6Nx group. Plasma ADMA levels were correlated with systolic BP levels. Moreover, adenovirus-mediated DDAH gene transfer into the 5/6Nx rats prevented the elevation of BP levels, which was associated with the reduction of plasma and urinary ADMA levels. The results presented here suggest that decreased DDAH levels as well as increased PRMT gene expression could cause the elevation of plasma ADMA levels, thereby eliciting hypertension in CKD. Substitution of DDAH protein or enhancement of its activity may become a novel therapeutic strategy for the treatment of hypertension-related vascular injury in CKD.

Adenoviridae↗

Usefulness of whole PTH assay in patients with renal osteodystrophy--correlation with bone scintigraphy.

OBJECTIVE: Intact parathyroid hormone (PTH) assay has recently been reported to be effective in evaluating both 1-84 PTH (whole PTH) and inactive 7-84 PTH. Inactive 7-84 PTH is considered to be increased in hemodialysis patients and to prevent the effects of 1-84 PTH, and intact PTH is considered to overestimate the PTH activity in these patients. As such, a whole PTH assay has recently been developed. The purpose of this study was to examine the usefulness of a whole PTH assay using the bone to soft tissue (B/ST) ratio on bone scintigraphy. METHOD: Twenty-five hemodialysis patients were included in our study. In all patients, bone scintigraphy and a blood test [whole PTH, intact PTH, alkaline phosphatase (ALP), calcium (Ca), and phosphorus (P)] were performed. Regions of interest (ROIs) were drawn around the cranium, lumbar vertebrae, left femoral neck, and soft tissue of the medial left thigh to obtain the B/ST ratio. RESULTS: The B/ST ratio of the cranium and left femoral neck correlated with whole PTH and intact PTH. In particular, the B/ST ratio of the cranium correlated most significantly with the value of whole PTH. Whole PTH levels correlated with intact PTH levels (r = 0.891, p < 0.0001). CONCLUSION: Our data indicate that a whole PTH assay may be useful in evaluating PTH activity using the B/ST ratio. The B/ST ratio of the cranium may reflect the bone metabolism of hemodialysis patients.

Adult↗

Evaluation of exercise-induced acute renal failure in renal hypouricemia using Tc-99m DTPA renography.

We present a case of a thirty-eight-year-old man who had exercise-induced acute renal failure (exercise-induced ARF). He experienced oliguria, general fatigue, and vague discomfort in the lower abdomen after he exercised. As he had suffered from hypouricemia before, he was diagnosed as having exercise-induced ARF associated with hypouricemia. Enhanced computed tomography (CT) images showed patchy wedge-shaped contrast enhancement on his bilateral kidneys, consistent with characteristic observations for exercise-induced ARF. Tc-99m diethylene triamine pentaacetic acid (DPTA) renography revealed decreases in both the renal blood flow (RBF) and glomerular filtration rate (GFR), and revealed parenchymal dysfunction of the bilateral kidneys. Renogram revealed a hypofunctional pattern on the bilateral kidneys. CT images and Tc-99m DTPA renography also had improved when the symptoms of exercised-induced ARF indicated improvement. It has been hypothesized that one cause of exercise-induced ARF may be renal vasocontraction. Although CT images are useful in evaluating exercise-induced ARF, Tc-99m DTPA renography can more easily and safely evaluate renal function. We also show that Tc-99m DTPA renography is useful in precisely evaluating the degree of improvement of exercise-induced ARF.

Acute Kidney Injury↗

Usefulness of bone uptake ratio of bone scintigraphy in hemodialysis patients.

OBJECTIVE: It is important to estimate the bone metabolism in patients with renal osteodystrophy. The methods of estimation must be noninvasive, accurate, and able to measure repeatedly. METHODS: The regions of interest on bone scintigraphy were drawn over the radius in 22 hemodialysis patients (10 males, 12 females). The bone/soft tissue ratio (B/ST ratio) was calculated for all patients. The bone soft tissue ratio of both skull (S) and radius (R) was obtained from the resultant count ratios. We investigated the correlation between intact parathyroid hormone (PTH), alkaline phosphatase (ALP) and the uptake ratios S and R. RESULTS: Intact PTH had a significantly linear correlation with R (r = 0.745, p < 0.0001) and S (r = 0.702, p = 0.0001). ALP also had a significantly linear correlation with R (r = 0.537, p = 0.009) and S (r = 0.772, p < 0.0001). CONCLUSION: The measurement of the bone soft tissue ratio of radius on bone scintigraphy was crucial for estimating renal osteodystrophy.

Adult↗

Assessment of therapeutic effect in patients with secondary hyperparathyroidism using bone scintigraphy.

OBJECTIVE: The semi-quantitative method of bone scintigraphy [bone to soft tissue (B/ST) ratio] has been used in diagnosing and evaluating systemic metabolic bone diseases. The aim of this study is to evaluate of the therapeutic effect of secondary hyperparathyroidism (SHP). METHODS: The subjects were ten hemodialysis patients with SHP. Seven patients underwent parathyroidectomy (PTX), and 22-Oxacalcitoriol (derivative of 1,25-dihydroxyvitamin D3) (OCT) was given to three patients. Bone scintigraphy and blood tests [intact parathyroid hormone (PTH), alkaline phosphatase (ALP), calcium (Ca), phosphorus (P), bone alkaline phosphatase (BALP), and deoxypridinoline (DPYD)] were performed before and after treatment. Regions of interest were drown around cranium, lumbar vertebrae, femoral neck and soft tissue of left medial thigh to calculate the B/ST ratio. RESULT: The B/ST ratios of cranium, lumbar vertebrae, and femoral neck were reduced significantly after PTX (cranium, p = 0.0079, lumbar vertebrae, p = 0.0282, femoral neck, p = 0.0252). Intact PTH, ALP, Ca, P, BALP and DPYD levels were reduced significantly after PTX (intact PTH, p = 0.003, Ca, p = 0.0005, P, p = 0.0393, ALP, p = 0.0051, DPYD, p = 0.0232, BALP, p = 0.0324). After OCT administration, the B/ST ratio of each bony region showed tendency to diminish, although not significantly. Intact PTH levels were reduced significantly, although ALP, BALP, and DPYD levels were not. Ca and P levels were increased significantly because of the medicinal action of OCT. CONCLUSION: The B/ST ratio of cranium may be non-invasive method and have potential in evaluating the therapeutic effect of SHP.

Adult↗

Effect of saccharated ferric oxide and iron dextran on the metabolism of phosphorus in rats.

As a means of investigating the physiologic damage to and histologic deterioration of the kidney caused by saccharated ferric oxide (SFO) and iron dextran (ID), we administered these substances intraperitoneally to rats. The rats were divided into 3 groups. Group 1 rats ( n = 7) were given SFO, 28 mg/kg for 9 days and 20 mg/kg for 19 days. Group 2 rats ( n = 5) were given ID, 28 mg/kg for 9 days and 20 mg/kg for 19 days. Group 3 rats (control, n = 9) were given normal saline solution. After 28 days, serum calcium, total protein, and albumin concentrations were significantly lower in the SFO group than in the ID group. Serum phosphorus concentrations were significantly lower in the SFO group than in the control group. Serum iron concentrations were significantly higher in the ID group than in the SFO group or the control, and the fractional excretion of sodium was significantly lower in the ID group than in the control group. The percent tubular reabsorption of phosphorus was significantly greater in the ID group than in the SFO group or the control group, and the theoretical threshold concentration of phosphorus was also significantly lower in the SFO group than in the ID or the control group. Histologic examination of the kidney after treatment revealed neither iron in the tubules nor any structural damage to the tubules. ID was not found to induce hypophosphatemia, whereas SFO did. We believe that the cause of such hypophosphatemia is impaired tubular reabsorption.

Animals↗

Effects of thyroid function on the course of experimental chronic renal failure in rats.

Thyroid hormone has been reported to affect renal function. To investigate the effects of thyroid hormone on the progression of renal deterioration, thyroid hormone (dried thyroid) and an antithyroid drug (thiamazole) were administered to adriamycin (ADR)-induced renal failure rats. The rats were divided into four groups, including 1) ADR-DT, given dried thyroid and thiamazole; 2) ADR-T, given thiamazole; 3) ADR; and 4) control. The survival rate at the end of the study (22 weeks) was 62.5% in ADR-DT group and 100% in ADR-T, ADR, and control groups, respectively. There was a significant difference in the body weight and pulse rate between ADR-DT and ADR-T or ADR groups, except for the pulse rate at week 6 (P<0.05). The creatinine clearance was greater in the ADR-T group than in the ADR or ADR-DT groups at week 22, and was significantly different between the ADR-T and the ADR-DT groups (P<0.05). The fractional kidney weight and tubular changes were significantly greater in the ADR-DT group than in the ADR-T or ADR groups (P<0.05). The interstitial volume was significantly greater in the ADR-DT group than in the ADR-T group (P<0.05). We therefore conclude that a dried thyroid has an aggravative effect in the tubular changes and relative interstitial volume induced by ADR.

Animals↗

Comparison of histological findings and parathyroid scintigraphy in hemodialysis patients with secondary hyperparathyroid glands.

To determine the usefulness of parathyroid scintigraphy in histological estimation for secondary hyperparathyroidism (2HPT) using Tc-99m sestamibi or Tc-99m tetrofosmin. Tc-99m sestamibi (MIBI) and Tc-99m tetrofosmin (Tetro) parathyroid imaging following double-phase study, magnetic resonance imaging (MRI), and ultrasound were performed on 14 patients with 2HPT. All patients underwent parathyroidectomy. The uptake of two tracers in parathyroid areas was compared with the histopathologic findings. Forty-nine parathyroid glands were surgically explored and histologically proven to be hyperplastic. Of these, 42 were diagnosed with nodular type (N-type) hyperplasia, and 7 with diffuse type (D-type) hyperplasia. MIBI and Tetro parathyroid imagings detected 34 and 35 parathyroid glands, respectively. The sensitivity of MIBI was determined to be 76.2% (32/42) for N-type, and 28.6% (2/7) for D-type. The sensitivity of Tetro was determined to be 78.6% (33/42) for N-type and 28.6% (2/7) for D-type. The sensitivity of both MIBI and Tetro was significantly higher for N-type than for D-type, 76.2% (32/42) vs. 28.6% (2/7) in MIBI, P = 0.022; 78.6% (33/42) vs. 28.6% (2/7) in Tetro, P = 0.015. The sensitivity of MRI was determined to be 76.2% (32/42) for N-type and 42.9% (3/7) for D-type, and the sensitivity of ultrasound was 71.4% (30/42) for N-type and 71.4% (5/7) for D-type. There was no significant difference in the sensitivity of MRI or ultrasound between N-type and D-type. The uptake ratios of MIBI and Tetro were also greater for N-type than for D-type. The detectability of both MIBI and Tetro was greater for N-type than for D-type. Tc-99m MIBI or Tc-99m Tetro parathyroid scintigraphy therefore may be used clinically to distinguish N-type from D-type parathyroid gland hyperplasia.

Adult↗

[Case of traditional herbal medicine-induced aristolochic acid nephropathy developing to end-stage renal failure].

A 48-year-old male was referred to our university hospital for severe azotemia with muscle cramp. He had been taking Chinese herbs as a traditional medicine to reduce hyperuricemia for about 9 months. Urinalysis showed trace proteinuria and hematuria without any casts. Renal glucosuria was also observed. In addition to azotemia, hyperchloremic metabolic acidosis and severe anemia were revealed. Hemodialysis was conducted and his general condition improved. A renal biopsy specimen revealed severe interstitial fibrosis and tubular atrophy with cellular degeneration. No remarkable glomerular changes were observed except for wrinkling of the basement membrane in a few glomeruli. Aristolochic acid was detected in the Chinese herbs, leading to the diagnosis of aristolochic acid nephropathy (AAN). His renal dysfunction was considered to be irreversible and he underwent maintenance hemodialysis. In Japan, AAN or Chinese herbs nephropathy decreased after an outbreak from 1995 to 2000. The public should be warned again that Chinese herbs, which are not permitted by the Japanese government, may contain aristolochic acid.

Aristolochic Acids↗

[Steroid pulse therapy combined with tonsillectomy in a patient with IgA nephropathy complicated with tuberculous pleurisy].

We report a case of IgA nephropathy with tuberculous pleurisy that was treated with steroid pulse therapy combined with tonsillectomy. A 27-year-old female was referred to our hospital because of hematuria and proteinuria. Her urinalysis showed mild proteinuria (0.7 to 0.9 g/day) with dysmorphic red blood cells and cellular casts. Her serum creatinine level was within the normal range. Renal biopsy specimens revealed mild mesangial proliferation with cellular crescent and adhesion of glomeruli to the Bowman's capsule. Tubulointerstitial changes including mononuclear cell infiltration and tubular atrophy were also observed. Immunohistochemical staining of IgA and C3 was detected in the mesangial area, leading to the diagnosis of IgA nephropathy. She had a past history of tuberculous pleurisy at 13 years of age and had taken antituberculosis drug for one and a half year. Although treatment with angiotensin receptor antagonist was started, the amount of proteinuria was not changed. Steroid pulse therapy with tonsillectomy followed by oral prednisolone 20 mg/day was conducted. Proteinuria and hematuria gradually decreased. Her respiratory status and chest X-ray had been closely followed up by her respiratory physician. After one and a half years of treatment with low-dose prednisolone, her urinalysis became almost normal. Recurrence of tuberculosis was not observed during the follow-up period. The successful outcome of this case encouraged us to treat IgA nephropathy with a past history of tuberculosis using interventions including steroid pulse therapy.

Adult↗

AGEs activate mesangial TGF-beta-Smad signaling via an angiotensin II type I receptor interaction.

BACKGROUND: The renin-angiotensin system (RAS) and the accumulation of advanced glycation end products (AGEs) have been implicated in the pathogenesis of diabetic nephropathy. Whether there is a functional interaction between the RAS and AGEs in diabetic nephropathy is not known. In this study, we investigated whether AGEs could activate autocrine angiotensin II (Ang II) signaling and subsequently induce transforming growth factor-beta (TGF-beta)-Smad signaling in cultured rat mesangial cells. METHODS: The intracellular formation of reactive oxygen species (ROS) was detected using the fluorescent probe CM-H2DCFDA. Ang II was measured by radioimmunoassay. TGF-beta released into media was quantitatively analyzed in an enzyme-linked immunosorbent assay (ELISA). Smad2, p27(Kip1) (p27), fibronectin, and receptor for AGEs (RAGE) protein expression were determined by Western blot analysis. TGF-beta-inducible promoter activity was analyzed by a luciferase assay. DNA synthesis was evaluated by 5-bomo-2'-deoxyuridine (BrdU) incorporation and de novo protein synthesis was determined by [3H]leucine incorporation. RESULTS: AGEs increased intracellular ROS generation in mesangial cells, and this effect was significantly inhibited by an antiserum against RAGE. AGEs also were found to stimulate Ang II production in a time- and dose-dependent manner, which was completely prevented by an antioxidant, N-acetylcysteine (NAC). AGE-induced TGF-beta overproduction was completely blocked by candesartan, an Ang II type 1 receptor (AT1R) antagonist. Both candesartan and neutralizing antibody against TGF-beta completely prevented AGEs-induced Smad2 phosphorylation and TGF-beta-inducible promoter activity. Furthermore, AGEs were found to inhibit DNA synthesis and to stimulate de novo protein synthesis and fibronectin production in association with up-regulation of p27. All of these phenomena were completely prevented by candesartan or a polyclonal antibody against TGF-beta. CONCLUSION: The present study suggests that AGE-RAGE-mediated ROS generation activates TGF-beta-Smad signaling and subsequently induces mesangial cell hypertrophy and fibronectin synthesis by autocrine production of Ang II. This pathway may provide an important link between metabolic and haemodynamic factors in promoting the development and progression of diabetic nephropathy.

Angiotensin II↗