• Title/Summary/Keyword: Renal tubular

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Chronic Renal Failure in Russell-Silver Syndrome (Russell-Silver 증후군에서의 만성 신부전)

  • Ahn, Yo-Han;Lee, Se-Eun;Kang, Hee-Gyung;Ha, Il-Soo;Cheong, Hae-Il;Choi, Yong
    • Childhood Kidney Diseases
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    • v.13 no.2
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    • pp.256-260
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    • 2009
  • The Russell-Silver syndrome (RSS) is a disease characterized by intrauterine growth retardation with preserved head circumference, facial dysmorphism and short stature. Reported renal and urinary manifestations of RSS include horseshoe kidney, renal tubular acidosis, hydronephrosis, ureteropelvic obstruction and vesicoureteral reflux. Here we report a case of end-stage renal disease associated with RSS, which, to the best of our knowledge, has not been reported yet.

Effect of Renal Ischemia in Tetraethylammonium Transport in Rabbit Renal Coritcal Slices

  • Joo, Woo-Sik;Nam, Yun-Jeong;Jung, Jin-Sup;Kim, Yong-Keun
    • The Korean Journal of Physiology
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    • v.25 no.2
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    • pp.171-177
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    • 1991
  • This study was carried out to determine effect of acute renal ischemia on transport function of organic cation, tetraethylammonium (TEA), in rabbit kidney proximal tubule. Clamping of the renal artery for 30 and 60 min produced a polyuria which was accompanied by an increase in $Na^+$ excretion. The capacity of kidney cortical slices to accumulate TEA was increased after 30 and 60 min of ischemia. When blood flow was restored for 30 min after 30 and 60 min of ischemia, the augmented TEA uptake was recovered to the control values. Oxygen consumption of cortical slices was stimulated after 30 min of ischemia, whereas it was not altered by 60 min of ischemia. A 90-min ischemia produced a significant inhibition of TEA uptake and tissue oxygen consumption. These results suggest that the basolateral transport system for organic cation persists after ischemic periods of 60 min despite evidence that tubular reabsorptive mechanism of $Na^+$ and water is markedly impaired. This may indicate that the active secretory systems of proximal tubule are more resistant to ischemic injury than the reabsorptive systems.

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Beneficial Effect of Pentoxifylline on Hypoxia-Induced Cell Injury in Renal Proximal Tubular Cells

  • Jung Soon-Hee
    • Biomedical Science Letters
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    • v.10 no.4
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    • pp.341-346
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    • 2004
  • Tumor necrosis factor-α (TNF-α) or its mRNA expression are increased in acute nephrosis of various types including ischemia/reperfusion injury. This study was undertaken to determine whether pentoxifylline (PTX), an inhibitor of TNF-α production, provides a protective effect against hypoxia-induced cell injury in rabbit renal cortical slices. To induce hypoxia-induced cell injury, renal cortical slices were exposed to 100% N₂ atmosphere. Control slices were exposed to 100% O₂ atmosphere. The cell injury was estimated by measuring lactate dehydrogenase (LDH) release and p-aminohippurate (PAH) uptake. Exposure of slices to hypoxia increased the LDH release in a time-dependent manner. However, when slices were exposed to hypoxia in the presence of PTX, the LDH release was decreased. The protective effect of PTX was dose-dependent over the concentrations of 0.05∼1 mM. Hypoxia did not increase lipid peroxidation, whereas an organic hydroperoxide t-butylhydroperoxide (tBHP) resulted in a significant increase in lipid peroxidation. PTX did not affect tBHP-induced lipid peroxidation. Hypoxia decreased PAH uptake, which was significantly attenuated by PTX and glycine. tBHP-induced inhibition of PAH uptake was not altered by PTX, although it was prevented by antioxidant deferoxarnine. The PAH uptake by slices in rabbits with ischemic acute renal failure was prevented by PTX pretreatment. These results suggest that PTX may exert a protective effect against hypoxia-induced cell injury and its effect may due to inhibition of the TNF-α production, but not by its antioxidant action.

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Protective Effect of Water Extract of Fraxinus Rhynchophylla Leaves on Acetaminophen-induced Nephrotoxicity in Mice and Its Phenolic Compounds

  • Jeon, Jeong-Ryae;Choi, Joon-Hyuk
    • Food Science and Biotechnology
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    • v.16 no.6
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    • pp.988-993
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    • 2007
  • The protective effect of the water extract of Fraxinus rhynchophylla leaves (FLE) was determined using an animal model of acetaminophen (AAP)-induced nephrotoxicity. The BALB/c male mice used in this study were divided into 3 groups; the normal, AAP-administered, and FLE-pretreated AAP groups. A single dose of AAP induced necrosis of renal tubules and congestion along with edema to a remarkable degree as observed by hematoxylin and eosin stain, and also increased the numbers of terminal deoxynucleotidyl transferase-mediated deoxyuridine triphosphate nick end labeling (TUNEL)-positive renal tubular epithelial cells. Blood urea nitrogen and plasma creatinine levels were determined to be significantly higher in the AAP group than in the normal group. However, FLE pretreatment resulted in an attenuation of renal tubule necrosis. Regeneration and dilatation of renal tubules were noted, and the numbers of TUNEL-positive cells were reduced in the FLE-pretreated groups. In an effort to detect the bioactive compounds exerting protective effects in FLE, the analysis of phenolic compounds via gas chromatography/mass spectrometry (GC/MS) were performed, and identified esculetin and esculin. The present study indicates that these compounds may exert a protective effect against AAP-induced nephrotoxicity.

Renal Handling of Sodium and Potassium in Cadmium Exposed Rats

  • Kim, Yung-Kyu;Park, Yang-Saeng
    • The Korean Journal of Physiology and Pharmacology
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    • v.2 no.4
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    • pp.503-510
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    • 1998
  • Effects of cadmium exposure on renal $Na^+$ and $K^+$ transports were studied in rats. During the course of cadmium treatment (2 mg Cd/kg/day, s.c. injections for 3 weeks) renal tubular transports of $Na^+$ and $K^+$ were evaluated by lithium clearance technique. During the early phase (first week) of cadmium treatment, urinary $Na^+$ excretion decreased drastically and this was due to an increased $Na^+$ reabsorption both in the proximal and distal nephrons. During the late phase (third week) of cadmium treatment, filtered $Na^+$ load was decreased by reduction in GFR, but the renal $Na^+$ excretion returned to the control level due to impaired $Na^+$ transport in the proximal tubule. Urinary excretion of $K^+$ did not change during the early phase, but it rose markedly during the late phase of cadmium treatment. These results indicate that a light cadmium intoxication induces a $Na^+$ retention, and a heavy intoxication results in a $K^+$ loss. Possible mechanisms for these changes are discussed.

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Molecular Aspects of Organic Ion Transporters in the Kidney

  • Cha, Seok-Ho;Endou, Hitoshi
    • The Korean Journal of Physiology and Pharmacology
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    • v.5 no.2
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    • pp.107-122
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    • 2001
  • A function of the kidney is elimination of a variety of xenobiotics ingested and wasted endogenous compounds from the body. Organic anion and cation transport systems play important roles to protect the body from harmful substances. The renal proximal tubule is the primary site of carrier-mediated transport from blood into urine. During the last decade, molecular cloning has identified several families of multispecific organic anion and cation transporters, such as organic anion transporter (OAT), organic cation transporter (OCT), and organic anion-transporting polypeptide (oatp). Additional findings also suggested ATP-dependent organic ion transporters such as MDR1/P-glycoprotein and the multidrug resistance-associated protein (MRP) as efflux pump. The substrate specificity of these transporters is multispecific. These transporters also play an important role as drug transporters. Studies on their functional properties and localization provide information in renal handling of drugs. This review summarizes the latest knowledge on molecular properties and pharmacological significance of renal organic ion transporters.

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Primary Renal Cell Tumors in Four Nonhuman Primates (영장류의 신장종양 발생 4례)

  • Park, Jun-Won;Jung, Iruo;Jee, Hyang;Yoo, Mi-Jin;Kim, Dae-Yong;Shin, Nam-Shik
    • Journal of Veterinary Clinics
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    • v.26 no.5
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    • pp.508-510
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    • 2009
  • Primary renal cell tumors were described in four nonhuman primates (Erythrocebus patas, Macaca cyclopis, Mandrillus sphinx, and Macaca fascicularis) that have been kept for exhibition at Seoul Zoo. Histologically, all of them were renal adenoma. Each one was clear cell type and tubular type, respectively. The rest two were papillary type adenoma. Clear cell type adenoma was bilaterally affected.

New platinum-complex compounds with reduced nephrotoxicity discovered in long term histoculture of human renal cortex

  • Chang, S-G.;Jung, J.C.;Rho, Y.S.;Kwon, D.U.;Hoffman, R.M.
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1995.04a
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    • pp.124-124
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    • 1995
  • Cisplatinum is often effective in cancer treatment, but potent nephrotoxicity limits its clinical use. We have, therefore, developed new anticancer drugs that contain platinum. We have synthesized six new platinum compounds based on Figure 1. Drugs were initially administrated at 5${\times}$10$\^$-4/M with 48 hours exposure in monolayer cultures of primary rabbit proximal tubular cells and human renal cortical cells with the M.T.T. endpoint to measure toxicity. Drug concentrations of 10$\^$-3/M, 10$\^$-4/M, and 10$\^$-5/M with 72 hours exposure were used for human renal cortical tissues in 7 weeks histoculture with toxicity measured by the glucose-consumption endpoint. From these studies, we determined that the new platinum drugs have lower nephrotoxicity than cisplatinum. Drugs D, E, and H. have lower nephrotoxicity than the other new drugs. We are currently measuring the anticancer efficacy of drugs D, E, and H.

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Effect of Atrial Natriuretic Factor on the Renal Function and Renin Release in Unanesthetized Rabbit (무마취 가토 신장기능에 미치는 Atrial Natriuretic Factor의 영향)

  • Lee, June-K.;Cho, Kyung-W.
    • The Korean Journal of Physiology
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    • v.20 no.1
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    • pp.103-124
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    • 1986
  • Since it has been suggested that atrial receptor may be involved in the mechanism of extracellular volume regulation, it was shown that the granularity of atrial cardiocytes can be changed by water and salt depletion, and that an extract of cardiac atrial tissue, when injected intravenously into anesthetized rats, was shown to cause a large and rapid increase in renal excretion of sodium. Various natriuretic peptides were isolated and synthetized, and the effects were investigated by many workers. Most studies, however, have been carried out under anesthesia and there have teen some controversies over direct effect of the factor on the renal function. Therefore, it was attempted in this study to access the effects of an atrial extract and a synthetic natriuretic factor in unanesthetized rabbits. Intrarenal arterial infusion of atrial extract caused a rapid increase of urinary volume and excretion of sodium. Glomerular filtration rate and renal plasma flow were both increased with no change in filtration fraction. The ventricular extract produced no change in urinary excretion of electrolytes, nor in renal hemodynamics. Intrarenal infusion of synthetic atrial natriuretic factor caused increases of renal excretory rate of sodium, chloride and potassium, and $FE_{Na}$. Glomerular filtration rate, renal plasma flow increased. And free water clearance also increased. Accentuated excretory function correlated well with increased glomerular filtration rate and renal plasma flow during infusion and for 10 minutes following the cessation of the infusion. Renin secretion rate decreased during constant infusion of atrial natriuretic factor. However, no correlation was found with the changes in glomerular filtration rate, renal plasma flow, or urinary excretion of sodium. These results suggest that atrial extract or atrial natriuretic factor induces changes in renal hemodynamics, as in excretion of electrolytes either indirectly through hemodynamic changes or directly by inhibiting tubular reabsorption. At the same time, renin secretory function is affected by the factor possibly through an unknown mechanism.

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Changes of Kidney Injury Molecule-1 Expression and Renal Allograft Function in Protocol and for Cause Renal Allograft Biopsy (이식신 계획생검 및 재생검에서 Kidney Injury Molecule-1 표현과 이식신 기능 변화)

  • Kim, Yonhee;Lee, A-Lan;Kim, Myoung Soo;Joo, Dong Jin;Kim, Beom Seok;Huh, Kyu Ha;Kim, Soon Il;Kim, Yu Seun;Jeong, Hyeon Joo
    • Korean Journal of Transplantation
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    • v.28 no.3
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    • pp.135-143
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    • 2014
  • Background: Kidney injury molecule-1 (KIM-1) is known as a good ancillary marker of acute kidney injury (AKI) and its expression has also been observed in acute rejection and chronic graft dysfunction. We tested usefulness of KIM-1 as an indicator of acute and chronic renal graft injury by correlating KIM-1 expression with renal graft function and histology. Methods: A total of 133 zero-time biopsies and 42 follow-up biopsies obtained within 1 year posttransplantation were selected. Renal tubular KIM-1 staining was graded semiquantitatively from 0 to 3 and the extent of staining was expressed as the ratio of KIM-1 positive/CD10 positive proximal tubules using Image J program. Results: KIM-1 was positive in 39.8% of zero-time biopsies. KIM-1 positive cases were predominantly male and had received grafts from donors with older age, deceased donors, and poor renal function at the time of donation, compared with KIM-1 negative cases. KIM-1 expression showed correlation with delayed graft function and acute tubular necrosis. In comparison of KIM-1 expression between stable grafts (n=23) and grafts with dysfunction (n=19) at the time of repeated biopsy, the intensity/extent of KIM-1 staining and renal histology at zero-time did not differ significantly between the two groups. Histologically, KIM-1 expression was significantly increased with both acute and chronic changes of glomeruli, tubules and interstitium, peritubular capillaritis, and arteriolar hyalinosis. Conclusions: KIM-1 can be used as an ancillary marker of AKI and a nonspecific indicator of acute inflammation and tubulointerstitial fibrosis. However, KIM-1 expression at zero-time is not suitable for prediction of long-term graft dysfunction.