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Bum Soon Choi

Publications and source records attributed to Bum Soon Choi.

11 recordsLinked to original sources

Inhibitory effect of pravastatin on transforming growth factor beta1-inducible gene h3 expression in a rat model of chronic cyclosporine nephropathy.

BACKGROUND/AIMS: Overexpression of transforming growth factor beta1-inducible gene h3 (betaig-h3) is associated with renal scarring in several models of renal disease. We investigated the inhibitory effect of pravastatin on betaig-h3 expression in a rat model of chronic cyclosporin A (CsA)-induced nephropathy. METHODS: Adult Sprague Dawley rats kept on a low salt diet (0.05% sodium) were treated daily for 4 weeks with vehicle (olive oil, 1 ml/kg), CsA (15 mg/kg) or both CsA and pravastatin (20 mg/kg in drinking water). The effect of pravastatin on betaig-h3 expression was evaluated using in situ hybridization, immunohistochemistry, and immunoblotting. Functional parameters, histopathology (tubulointerstitial fibrosis, TIF, and arteriolopathy), and levels of transforming growth factor beta1 (TGF-beta1) and endothelial nitric oxide synthase were compared for the different treatment groups. RESULTS: Co-administration of pravastatin significantly inhibited betaig-h3 mRNA production and gene expression within the tubulointerstitium of the CsA-treated kidneys, and this paralleled an attenuation of TIF (12.7 +/- 2.2 vs. 35.9 +/- 5.4%, p < 0.01 vs. CsA) and the expression of TGF-beta1 mRNA (279 +/- 40 vs. 719 +/- 85%, p < 0.01 vs. CsA). Pravastatin treatment reduced endothelial nitric oxide synthase protein levels and reversed the renal dysfunction caused by CsA. Neither CsA nor pravastatin affected total serum cholesterol or triglyceride levels in the treatment groups. CONCLUSION: Pravastatin thus effectively abrogated the upregulation of betaig-h3 gene expression and associated TGF-beta1 production, and this was associated with attenuated TIF in this model of chronic CsA-induced nephropathy.

Animals↗

Effect of FTY720 on chronic cyclosporine nephropathy in rats.

BACKGROUND: Long-term treatment with cyclosporine A (CsA) causes tubulointerstitial inflammation and fibrosis in the kidney. To define the role of lymphocytes in this process, the novel lymphocyte-specific inhibitor FTY720 was administered to rats with experimental model of chronic CsA nephropathy. METHODS: Sprague-Dawley rats were treated daily for 4 weeks with CsA (7.5 mg/kg), or both CsA and FTY720 (0.125 mg/kg). The effects of FTY720 on CsA-induced renal injury were evaluated using renal function tests and histopathology, and the expression of mediators of CsA-induced renal injury (osteopontin, transforming growth factor-beta1 [TGF-beta1], betaig-h3, and angiotensin II). RESULTS: FTY720 treatment significantly decreased T-lymphocyte accumulation in kidneys compared with CsA treatment alone. FTY720 treatment improved not only CsA-induced renal dysfunction but also renal histopathology, demonstrated by decreased macrophage infiltration and interstitial fibrosis. Increased osteopontin, TGF-beta1, betaig-h3, and angiotensin II expression in CsA-treated rat kidneys were decreased with FTY720 treatment. CONCLUSIONS: FTY720 treatment prevents CsA-induced renal injury.

Angiotensin II↗

Attenuation of interstitial inflammation and fibrosis by recombinant human erythropoietin in chronic cyclosporine nephropathy.

BACKGROUND: Evidence suggests that recombinant human erythropoietin (rHuEPO) protects neurons and cardiomyocytes from acute insults. We investigated the protective effect of rHuEPO on cyclosporine (CsA)-induced renal injury. METHODS: CsA (15 mg/kg/day) was given to rats for 1 or 4 weeks, and rHuEPO was concurrently administered at a dose of 100 units/kg (thrice weekly). Effects of rHuEPO on CsA-induced renal injury were evaluated with tubulointerstitial fibrosis (TIF) score, macrophage infiltration, expression of proinflammatory and profibrotic cytokines, and apoptotic cell death. RESULTS: Administration of rHuEPO decreased TIF score and the number of macrophages, which increased significantly in CsA-treated rat kidneys. At the molecular level, rHuEPO treatment decreased proinflammatory mediators (osteopontin and C-reactive protein) and profibrotic mediators (transforming growth factor-beta1 and transforming growth factor-beta1-inducible gene-h3). Increased apoptotic cell death in CsA-treated rat kidneys was significantly decreased with rHuEPO cotreatment, and apoptosis-related genes were regulated in favor of cell survival (increased Bcl-2 and suppressed caspase-3). CONCLUSION: rHuEPO has a renoprotective effect against chronic CsA-induced renal injury.

Animals↗

Protective effect of peroxisome proliferator activated receptor gamma agonists on diabetic and non-diabetic renal diseases.

Peroxisome proliferator activated receptor gamma (PPARgamma) agonist has not only antidiabetic effect but also a protective effect against various types of injury of the kidney. The protective effects of PPARgamma agonists are observed in diabetic nephropathy and non-diabetic renal diseases such as 5/6 ablation model of renal failure, experimental glomerulonephritis, ischemia-reperfusion injury, hypertensive nephropathy and cyclosporin-induced renal injury. The mechanism of renoprotection by PPARgamma agonist is multifactorial. Anti-fibrotic and anti-inflammatory effects, suppression of renin-angiotensin system, vascular protective effect and antiapoptotic effect were proposed.

Animals↗

Clinical significance of an early protocol biopsy in living-donor renal transplantation: ten-year experience at a single center.

We report here our 10-year experience of a biopsy performed at day 14 after transplantation in 304 patients with stable graft function. The factors that may have influenced subclinical rejection were analyzed according to histology. The incidence of subclinical rejection was 13.2%. Addition of mycophenolate mofetile (MMF) as a primary immunosuppressant significantly decreased the incidence of subclinical rejection compared with patients without such treatment (odds ratio, 0.23; p < 0.05). On the other hand, HLA-DR antigen mismatch (odds ratio, 2.39) and unrelated donor (odds ratio, 2.10) were also significantly associated with decreased subclinical rejection (p < 0.05). The incidence of acute rejection in patients with normal findings was lower than in those with borderline changes or subclinical rejection (0.23 +/- 0.05 vs. 0.48 +/- 0.07 and 0.60 +/- 0.11, respectively; p < 0.05). The graft survival rates in patients with subclinical rejection were lower than in patients with normal or borderline changes at 1 (88.4% vs. 97.9% and 99.1%; p < 0.05), 5 (77.8% vs. 96.2% and 95.9%; p < 0.05) and 10 (62.3% vs. 96.2% and 93.7%; p < 0.05) years. Thus, a protocol biopsy performed on day 14 after transplantation is useful for predicting graft survival. Triple therapy including MMF, related donor and HLA-DR antigen match are important factors for reducing subclinical rejection in living-donor renal transplantation.

Acute Disease↗

Blockade of angiotensin II with losartan attenuates transforming growth factor-beta1 inducible gene-h3 (betaig-h3) expression in a model of chronic cyclosporine nephrotoxicity.

BACKGROUND: We recently demonstrated that upregulation of the transforming growth factor (TGF)-beta1 inducible gene-h3 (betaig-h3) is associated with tubulointerstitial fibrosis (TIF) in a rat model of chronic cyclosporine A (CsA) nephrotoxicity. This study investigated the association between betaig-h3 expression and TIF during losartan treatment in this model. METHODS: Adult Sprague-Dawley rats kept on a salt-depleted diet (0.05% sodium) were treated daily for 4 weeks with vehicle (olive oil, 1 ml/kg), CsA (15 mg/kg) or both CsA and losartan (10 mg/kg in drinking water). The effect of losartan on betaig-h3 expression was evaluated using in situ hybridization, immunohistochemistry and immunoblotting. Histopathology, expressions of TGF-beta1 and intrarenal angiotensin II were compared across treatment groups. RESULTS: Concurrent administration of losartan significantly attenuated betaig-h3 mRNA and protein expression within the tubulointerstitium of CsA-treated kidneys. This was accompanied by the retardation of TIF (18 +/- 5 vs. 39 +/- 5%, p < 0.01 vs. CsA) and the expression of TGF-beta1 mRNA (336 +/- 49 vs. 685 +/- 63%, p < 0.01 vs. CsA) and the number of angiotensin II-positive glomeruli (18 +/- 5 vs. 38 +/- 6, p < 0.05 vs. CsA). CONCLUSION: Losartan is capable of abrogating the upregulation of TGF-beta1 and betaig-h3 expression, and this is associated with attenuated tubulointerstitial fibrosis in chronic CsA nephrotoxicity.

Angiotensin II Type 1 Receptor Blockers↗

Preconditioning with erythropoietin protects against subsequent ischemia-reperfusion injury in rat kidney.

Improving the ability of the kidney to tolerate ischemic injury has important implications. We investigated the effect of recombinant human erythropoietin (rHuEPO) treatment on subsequent ischemia/reperfusion (I/R) injury and evaluated the role of heat shock protein (HSP) 70 in rHuEPO-induced renal protection. rHuEPO (3000 U/kg) was administered 24 h before I/R injury, and rats were killed at 24, 48, and 72 h after I/R injury. Pretreatment of rHuEPO resulted in the following: i) decreased serum creatinine level; ii) decreased tubular cell apoptosis and necrosis, measured by DNA fragmentation analysis and TUNEL staining and histomorphological criteria; iii) decreased tubular cell proliferation as determined by proliferating cell nuclear antigen expression; iv) increased bcl-2 protein and decreased caspase 3 activity; and v) decreased JNK expression. rHuEPO treatment increased HSP70 expression in a dose-dependent manner in normal rat kidneys, and inhibition of HSP70 expression by quercetin eliminated the renoprotective effect of rHuEPO in ischemic kidneys. Our study demonstrates that rHuEPO has a protective effect on subsequent I/R injury and that this effect is associated with induction of HSP70. Our study provides a new avenue for therapy to prevent renal damage after I/R injury.

Animals↗

Preconditioning with cyclosporine A or FK506 differentially regulates mitogen-activated protein kinase expression in rat kidneys with ischemia/reperfusion injury.

BACKGROUND: The signaling pathways of mitogen-activated protein kinases (MAPKs) are important molecular components responsible for ischemia/reperfusion (I/R) injury in the kidneys. Preconditioning with cyclosporine A (CsA) or FK506 reduces subsequent I/R injury. We studied the effect of preconditioning with CsA or FK506 on MAPK expression in ischemic rat kidneys. METHODS: Two separate studies were performed using Sprague-Dawley rats. First, MAPK (extracellular signal-regulated kinase [ERK], jun N-terminal kinase [JNK], p38) expressions were observed at 0, 10, 20, 30, 60, 120, and 1,440 min after I/R injury. Second, the effects of preconditioning with CsA or FK506 on MAPK expressions were observed in rat kidneys with I/R injury. I/R injury was induced by clamping both renal arteries for 45 min. Rats were pretreated with intravenous (IV) CsA (3 mg/kg) or IV FK506 (0.3 mg/kg) 6 hr before I/R injury and killed 30 min later. Expression of MAPK was measured using immunoblot and immunohistochemistry. RESULTS: MAPK (ERK, JNK, p38) expressions were significantly increased in kidneys with I/R injury compared with sham-operated controls, and immunohistochemistry revealed increased MAPK immunoreactivity in renal tubules of the outer medulla. Kidneys preconditioned with low-dose CsA or FK506 showed significantly increased ERK expression compared with kidneys with I/R injury alone (CsA, 9.5- vs. 4.5-fold; FK506 10.4- vs. 4.5-fold: P<0.05) but showed decreased JNK (CsA, 3.8- vs. 5.3-fold; FK506, 3.4- vs. 5.3-fold: P<0.05) and p38 expression (CsA, 2.5- vs. 3.7-fold; FK506, 2.1- vs. 3.7-fold: P<0.05). CONCLUSIONS: Preconditioning with CsA or FK506 differentially regulates the expression of MAPK in rat kidneys with I/R injury, and this may explain the remarkable protective effects of these agents.

Animals↗

Severe renal tubular acidosis in a renal transplant recipient with repeated acute rejections and chronic allograft nephropathy.

Renal tubular acidosis in renal transplant recipients usually is asymptomatic and subclinical. The authors report a case of severe renal tubular acidosis manifested as muscle weakness in a renal transplant recipient. The patient received a renal transplant 30 months ago and had a history of successive episodes of acute rejection during the past 2 months. On admission, arterial blood (arterial blood pH, 7.11; pco(2), 12.8 mm Hg; and bicarbonate, 4 mEq/L [4 mmol/L]) and urine gas analysis were compatible with distal renal tubular acidosis. The graft biopsy findings showed superimposed acute rejection on chronic allograft nephropathy, and immunohistochemical staining and electron microscopic findings showed the reduced immunoactivity of H(+)ATPase pump and anion exchanger 1. The patient was treated successfully with intravenous bicarbonate and oral steroid pulse therapy. This finding suggests that rejection-related renal tubular acidosis should be considered a cause of severely affected metabolic acidosis in renal transplant recipients.

Acidosis, Renal Tubular↗

Cyclosporine withdrawal and mycophenolate mofetil treatment effects on the progression of chronic cyclosporine nephrotoxicity.

BACKGROUND: Recent clinical trials of mycophenolate mofetil (MMF) in chronic allograft nephropathy (CAN) demonstrated that the dose of cyclosporine A (CsA) is one of the critical factors in determining graft function in CAN, but the effect of MMF on chronic CsA nephropathy is undetermined. We undertook this study to evaluate the effect of MMF on CsA-induced nephrotoxicity in an animal model of chronic CsA nephropathy. METHODS: In the first experiment, Sprague-Dawley rats on a low-salt diet were treated with CsA (7.5 mg/kg per day) for 10 weeks, or were treated with CsA for five weeks and then MMF (20 mg/kg per day) was administered five weeks later. In the second experiment, rats were treated with CsA for five weeks, and CsA was then withdrawn for five weeks with or without MMF treatment. Renal function, histologic parameters (tubulointerstitial fibrosis, arteriolopathy, ED-1-positive cells, renin-positive glomeruli, TUNEL-positive cells) and the expression of osteopontin and transforming growth factor (TGF)-beta1 mRNA expressions were compared for different treatment groups. RESULTS: CsA-treated rats showed decreased renal function and increased histologic parameters compared with the vehicle (VH)-treated rats. The addition of MMF did not improve these parameters compared with the CsA-treated rats. With CsA withdrawal, renal function and histologic parameters were significantly improved compared with the CsA-treated rats, and MMF treatment after CsA withdrawal further improved the histologic parameters. At the molecular level, the addition of MMF did not decrease the expression of osteopontin and transforming growth factor-beta1 (TGF-beta1) mRNAs, which were increased in the CsA-treated rat kidney. With CsA withdrawal, the expression of both mRNAs was significantly decreased compared with the CsA group, and a further decrease was observed with MMF treatment after CsA was withdrawn. CONCLUSION: The combined treatment of CsA and MMF does not prevent the development of chronic CsA nephrotoxicity, but MMF treatment after CsA withdrawal does improve chronic CsA nephrotoxicity. This finding provides a rationale for MMF treatment in chronic CsA nephrotoxicity.

Animals↗

Cyclosporine or FK506 decrease mature epidermal growth factor protein expression and renal tubular regeneration in rat kidneys with ischemia/reperfusion injury.

BACKGROUND: Epidermal growth factor (EGF) plays an important role in tubular regeneration in kidneys with ischemia/reperfusion (I/R) injury. This study was undertaken to evaluate the influence of cyclosporine A (CsA) or FK506 on mature EGF expression and tubular regeneration in rat kidneys with I/R injury. METHODS: Two separate studies were performed. First, the expression of EGF and tubular regeneration was observed in rat kidneys with I/R injury on days 1, 2, 3, 5, and 7. Second, the dose-dependent response of EGF expression and tubular regeneration to CsA (5, 10, and 20 mg/kg) or FK506 (0.25, 0.5, and 1.0 mg/kg) was observed in rat kidneys with I/R injury. I/R injury was induced by clamping both renal arteries for 45 min, and CsA or FK506 was injected just after release of vascular clamps. Rats were sacrificed on day 1 for evaluation of EGF expression, and on day 2 for evaluation of BudU-positive cells. Renal function, tubular injury score, EGF expression assessed by immunoblotting, levels of CsA and FK506 in whole blood, and immunostaining for BrdU was studied. RESULTS: EGF expression was maximal on day 1 (cortex, 29-fold; medulla, 31-fold compared with sham-operated controls), and renal tubular regeneration measured with the number of BrdU-positive cells was maximal on days 2 and 3 in kidney with I/R injury, and thereafter the level of EGF and the number of BrdU-positive cells decreased progressively. CsA or FK506 treatment to ischemic rat kidneys reduced the expression of EGF and the number of BrdU-positive cells in a dose-dependent manner. CONCLUSIONS: CsA or FK506 treatment delays recovery from acute tubular necrosis, and this may be associated with decreased EGF expression by CsA or FK506.

Animals↗