• Title/Summary/Keyword: renal-fibrosis

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Expression of Tubular Intercellular Adhesion Molecule-1 (ICAM -1) as a Marker of Renal Injury in Children with IgA Nephropathy (소아 특발성 IgA 신병증에서 신 손상의 예후 인자로서 신세뇨관 ICAM-1의 발현)

  • Son Young-Ho;Kang Mi-Seon;Chung Woo-Yeong
    • Childhood Kidney Diseases
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    • v.8 no.2
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    • pp.149-158
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    • 2004
  • Purpose : In order to evaluate the value of the renal expression of ICAM-1 as a marker of renal injury, we analyzed the relationship between abnormal tubular expression of ICAM-1 and histopathological features and clinical manifestations in children with IgA nephropathy (IgAN). Methods: The clinical data from 43 patients with IgAN were analyzed retrospectively and compared to the histopathologic subclassification proposed by Haas. ICAM-1 in tubular epithelium was assessed using the LSAB(Labeled streptavidine biotin) kit on the renal biopsy specimens. Results: In 43 patients with primary IgAN, 28 males and 15 females aged $12.2{\pm}2.2$ years were studied. There were no differences of renal tubular expression of ICAM-1 between patients with gross hematuria and without gross hematuria. But renal tubular expression of ICAM-1 in patients with proteinuria was significantly higher than that of in patients without proteinuria($78.2{\pm}14.19%\;vs\;55.8{\pm}32.20%,\;P<0.05$). Renal tubular expression of ICAM-1 was also associated with the severity of histopathological degree using Haas classification method. In subclass I, renal tubular expression of ICAM-1 was significantly lower than those of other subclasses. A significant correlation was found between the tubular expression of ICAM-1 and the total amount of protein in 24 hour collected urine$(r_s=0.47236,\;p<0.05)$. But there were no significant correlations between the renal tubular expression of ICAM-1 and interstitial cellular infiltration, tubular atrophy, and interstitial fibrosis respectively(F=0.89, P>0.05; F=0.31, p>0.05; F=0.21, p>0.05). Conclusion: Renal tubular expression of ICAM-1 can be a useful marker of renal injury in children with IgAN. (J Korean Soc Pediatr Nephrol 2004;8:149-158)

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Comparative Study of Gingival Changes in Cyclosporine-Induced Nephrotoxicity with Normal and Low Salt Diet (저염식으로 유도한 Cyclosporine 신독성 백서에서의 치은 변화)

  • Lim, Jae-Gye;Kim, Yong-Jin;Park, Yong-Hoon
    • Journal of Periodontal and Implant Science
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    • v.30 no.2
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    • pp.359-374
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    • 2000
  • Cyclosporine A(CsA) is a widely used immunosuppressant for transplant patients and is also used for the treatment of a wide variety of systemic diseases with immunologic disorders. However, its use is frequently limited because of complications such as nephrotoxicity or gingival hyperplasia. Although several hypotheses have been postulated for CsA-induced gingival hyperplasia, i.e. various cytokine effects of inflammatory cells, existence of plaque or CsA itself, but its pathogenesis is still unclear. For experimental chronic CsA toxicity, salt depletion has been shown to increased susceptibility of rodents to the effects of CsA, and this maneuver facilitates production of arteriolopathy and interstitial fibrosis in kidney that mimic the changes found in human. The purpose of this study was to evaluate pathogenesis of CsA-induced gingival hyperplasia by comparing changes between CsA administration groups of normal standard diet and those of low salt diet group. Specific pathogen-free, 20 to 25 days old(120 to 150 g), male Fisher-344 rats(KIST, Korea), 120 to 150g of body weight, were assigned to four groups of six animals each after one week of adaptation period for powder food. Group 1 received olive oil($300{\mu}l/g\;of\;diet$) with normal standard diet(0.4% of sodium)(NSD). Group 2 received CsA(Cypol-N, Jonggundang, Korea; $300{\mu}g/g\;of\;diet$) with normal standard diet(NSD+CsA). Group 3 received same amount of olive oil with low salt diet(0.05 % of sodium, Teklad Premier, U.S.A.)(LSD). Group 4 received same dose of CsA with low salt diet(LSD+CsA). Rats were pair fed and were sacrificed after six weeks. Renal histologic lesions associated with CsA, consisted of cortical interstitial fibrosis, tubular atrophy and hyalinization of arterioles and the impairment of renal function including increase of serum creatinine and decrease of glomerular filtration rate was more severe in low salt diet group. These were proved as the results of activated of renin-angiotensin system in the kidney by low salt condition. Meanwhile the degree of gingival hyperplasia at incisor and molar tooth was less severe in low salt diet group compared with normal sodium diet group. Hyperplastic gingiva showed mild epithelial hyperplasia and expanded underlyng stroma which consisted of matrix increasement, capillary proliferation and dilatation. While the number and the activation of fibroblasts were increased, inflammatory cells were rare in the stroma. The immunohistochemistry for TGF-${\beta}_1$ in the kidney and gingiva revealed stronger positive in LSD+CsA in kidney but in gingiva of NSD+CsA. These results suggested followings; Gingival hyperplasia can be developed without inflammatory cells infiltration and seemed not induced by CsA by itself. The major role for gingival hyperplasia by CsA would be the secondary effect of TGF-${\beta}$, which maybe upregulated by CsA administration. Low salt diet can attenuate this hyperplasia perhaps by decreasing the activation of $TGF-{\beta}$.

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Diverse Mechanisms of Relaxin's Action in the Regulation of Smooth Muscles and Extracellular Matrix of Vasculature and Fibrosis (혈관과 섬유증의 평활근 및 세포외기질 조절에 대한 릴랙신의 다양한 작용기전)

  • Min, Gyesik
    • Journal of Life Science
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    • v.32 no.2
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    • pp.175-188
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    • 2022
  • Relaxin has been demonstrated to have regulatory functions on both the smooth muscle and extracellular matrix (ECM) of blood vessels and fibrotic organs. The diverse mechanisms by which relaxin acts on small resistance arteries and fibrotic organs, including the bladder, are reviewed here. Relaxin induces vasodilation by inhibiting the contractility of vascular smooth muscles and by increasing the passive compliance of vessel walls through the reduction of ECM components, such as collagen. The primary cellular mechanism whereby relaxin induces arterial vasodilation is mediated by the endothelium-dependent production of nitric oxide (NO) through the activation of RXFP1/PI3K, Akt phosphorylation, and eNOS. In addition, relaxin triggers different alternative pathways to enhance the vasodilation of renal and mesenteric arteries. In small renal arteries, relaxin stimulates the activation of the endothelial MMPs and EtB receptors and the production of VEGF and PlGF to inhibit myogenic contractility and collagen deposition, thereby bringing about vasodilation. Conversely, in small mesenteric arteries, relaxin augments bradykinin (BK)-evoked relaxation in a time-dependent manner. Whereas the rapid enhancement of the BK-mediated relaxation is dependent on IKCa channels and subsequent EDH induction, the sustained relaxation due to BK depends on COX activation and PGI2. The anti-fibrotic effects of relaxin are mediated by inhibiting the invasion of inflammatory immune cells, the endothelial-to-mesenchymal transition (EndMT), and the differentiation and activation of myofibroblasts. Relaxin also activates the NOS/NO/cGMP/PKG-1 pathways in myofibroblasts to suppress the TGF-β1-induced activation of ERK1/2 and Smad2/3 signaling and deposition of ECM collagen.

Diabetic Nephropathy in Childhood and Adolescence (II) ; Pathology and Pathophysiology (소아청소년기 당뇨병성 신병증 (II) ; 병리 소견 및 병태생리를 중심으로)

  • Ha, Tae-Sun
    • Childhood Kidney Diseases
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    • v.13 no.2
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    • pp.99-117
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    • 2009
  • Diabetic nephropathy is a major cause of chronic renal failure in developing countries, and the prevalence rate has markedly increased during the past decade. Diabetic nephropathy shows various specific histological changes not only in the glomeruli but also in the tubulointerstitial region. In the early stage, the effacement of podocyte foot processes and thickened glomerular basement membrane (GBM) is noticed even at the stage of microalbuminuria. Nodular, diffuse, and exudative lesions, so-called diabetic glomerulosclerosis, are well known as glomerular lesions. Interstitial lesions also exhibit fibrosis, edema, and thickened tubular basement membrane. Diabetic nephropathy is considered to be multifactorial in origin with increasing evidence that one of the major pathways involved in the development and progression of diabetic nephropathy as a result of hyperglycemia. Hyperglycemia induces renal damage directly or through hemodynamic alterations, such as, glomerular hyperfiltration, shear stress, and microalbuminuria. Chronic hyperglycemia also induces nonhemodynamic dysregulations, such as, increased production of advanced glycosylation endproducts, oxidative stress, activation of signal pathway, and subsequent various cytokines. Those pathogenic mechanisms resulted in extracellular matrix deposition including mesangial expansion and GBM thickening, glomerular hypertrophy, inflammation, and proteinuria. In this review, recent opinions on the histopathologic changes and pathophysiologic mechanisms leading to initiation and progression of diabetic nephropathy will be introduced.

Studies on the Reproductive and Developmental Toxicity of Herbal Medicine Containing Aristolochic Acids

  • Sohn, K-H;Rhee, G-S;Kim, S-S;Kim, S-H;Kwack, S-J;Chae, S-Y;Park, C-H;Kim, B-H;Kil, K-S;Choi, K-S;Park, K-L
    • Proceedings of the Korean Society of Embryo Transfer Conference
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    • 2002.11a
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    • pp.110-110
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    • 2002
  • Rapidly progressive interstitial renal fibrosis has recently been reported in young women who have been on a slimming regimen including chinese herbs. Aristolochic acid, suspected as the causal factor of this renal disease, is a well known carcinogen. It has been known that Madouling (Aristolochiae fructus) contains aristolochic acid. The objective of this study was to investigate the effects of Madouling, Madouling-tang, which are the extract mixture from 10 different chinese herbs including Madouling, and aristolochic acid on reproductive and developmental toxicity. Female rats were administered orally with the extracts of Madouling, madouling-tang, and aristolochic acid from 14 days before mating to day 17 of gestation. Madouling (8mg/kg) decreased fertility in the 8mg/kg group, but Madouling-tang and aristolochic acids did not. Significant decrease of mean fetal body weights were observed in the 16mg/kg group of aristolochic acids. External, visceral and skeletal malformation of fetuses were not observed with treatment. Histopathological examination showed the discrete damage of kidney in the 8mg/kg group of Madouling and 16mg/kg groups of aristolochic acid. In whole embryo culture, Madouling and Madouling-tang caused the retardation of growth and development of embryo in the dose of 1 $\mu$g/ml and 0.02 $\mu\textrm{g}$/kg, respectively while aristolochic acids showed the similar effect in the dose of 300 $\mu\textrm{g}$/kg. These results indicate that Madouling, up to 0.05mg/kg (prescription dose to human) has no adverse effects on the fertility, reproduction and development of Sprague-Dawley rats.

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Veiled Paraquat Poisoning - A Focus on Clinical Characteristics (베일에 가린 파라쿼트 중독 - 임상적 특징을 중심으로)

  • Song, Ye-Wan;Choi, Sang-Cheon;You, Young-Yeol;Shin, Yeoun-Ho;Park, Eun-Jung;Ahn, Jung-Hwan;Min, Young-Gi;Jung, Yoon-Seok
    • Journal of The Korean Society of Clinical Toxicology
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    • v.9 no.1
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    • pp.14-19
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    • 2011
  • Purpose: Most paraquat poisonings are easily diagnosed by history taking on physical examination, however, some are failed to be diagnosed initially if the poisoning was veiled. The purpose of this study was to explore the clinical characteristics of veiled paraquat poisoning. Methods: We retrospectively reviewed the medical records of patients whose discharge diagnosis was paraquat poisoning in one university teaching hospital between 1 Jan, 2001 and 31 Dec, 2010. Veiled paraquat poisoning was determined when there was a positive urine paraquat kit in patients who did not mention paraquat poisoning in an initial physical examination or had unknown cause of pulmonary fibrosis, acute renal failure, or multi-organ failure. Results: Of the 117 patients with paraquat poisoning during the study period, 6 patients (5.1%) had veiled paraquat poisoning. The clinical characteristics were 1) proteinuria - 6 (100%), 2) increased creatinine - 4 (66.7%), 3) green skin stains - 2 (33.3%), 4) mucosal ulcer - 3 (50%). Blood chemistry results were variable. Conclusion: We should suspect veiled paraquat poisoning for patients who have proteinuria, increased creatinine, green skin stain, mucosal ulcer and vomiting, or if they have rapidly progressing acute renal failure or multi-organ failure with unknown cause, even if patients didn't mention about paraquat poisoning upon the initial physical examination. In cases with the above clinical conditions, a thorough repeated physical examination including history taking and use of urine paraquat kits should be performed.

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Function of NADPH Oxidases in Diabetic Nephropathy and Development of Nox Inhibitors

  • Lee, Sae Rom;An, Eun Jung;Kim, Jaesang;Bae, Yun Soo
    • Biomolecules & Therapeutics
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    • v.28 no.1
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    • pp.25-33
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    • 2020
  • Several recent studies have reported that reactive oxygen species (ROS), superoxide anion and hydrogen peroxide (H2O2), play important roles in various cellular signaling networks. NADPH oxidase (Nox) isozymes have been shown to mediate receptor-mediated ROS generation for physiological signaling processes involved in cell growth, differentiation, apoptosis, and fibrosis. Detectable intracellular levels of ROS can be induced by the electron leakage from mitochondrial respiratory chain as well as by activation of cytochrome p450, glucose oxidase and xanthine oxidase, leading to oxidative stress. The up-regulation and the hyper-activation of NADPH oxidases (Nox) also likely contribute to oxidative stress in pathophysiologic stages. Elevation of the renal ROS level through hyperglycemia-mediated Nox activation results in the oxidative stress which induces a damage to kidney tissues, causing to diabetic nephropathy (DN). Nox inhibitors are currently being developed as the therapeutics of DN. In this review, we summarize Nox-mediated ROS generation and development of Nox inhibitors for therapeutics of DN treatment.

A Case of Alagille Syndrome (Alagille 증후군 1례)

  • Kim, Eun-Soo;Lee, Dong-Woo;Chung, Ki-Sup;Kim, Soon-Il;Park, Young-Nyun
    • Pediatric Gastroenterology, Hepatology & Nutrition
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    • v.5 no.2
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    • pp.192-198
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    • 2002
  • Alagille syndrome is characterized by paucity of interlobular bile ducts, chronic cholestasis, characteristic facial abnormalities, cardiovascular abnormalities, posterior embryotoxon, vertebral arch defects, skeletal abnormalities, and glomerular renal involvement. We experienced a case of Alagille syndrome in a 10 month-old male presenting with jaundice. He had chronic cholestasis, characteristic face, cardiovascular abnormalities (aortic stenosis, dextrocardia, double chamber of left ventricle), and situs inversus. Histological examination of liver biopsy specimen revealed paucity of interlobular bile ducts with septal fibrosis, cirrhotic transformation and severe cholestasis. He underwent liver transplantation, but died of cardiopulmonary arrest associated with cardiac anomaly.

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In vivo Imaging Biodistribution Profile of a New Macrocyclic Gadolinium Chelate as a Highly Stable Multifunctional MRI Contrast Agent

  • Sung, Bo Kyung;Jo, Yeong Woo;Chang, Yongmin
    • Investigative Magnetic Resonance Imaging
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    • v.23 no.1
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    • pp.34-37
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    • 2019
  • Gadolinium contrast agents (CAs) are integral components of clinical magnetic resonance imaging (MRI). However, safety concerns have arisen regarding the use of gadolinium CAs, due to their association with nephrogenic systemic fibrosis (NSF). Furthermore, recently the long-term retention of $Gd^{3+}-based$ CAs in brains patients with normal renal function raised another possible safety issue. The safety concerns of $Gd^{3+}-based$ CAs have been based on the ligand structure of $Gd^{3+}-based$ CAs, and findings that $Gd^{3+}-based$ CAs with linear ligand structures showed much higher incidences of NSF and brain retention of CAs than $Gd^{3+}-based$ CAs with macrocyclic ligand structure. In the current study, we report the in vivo biodistribution profile of a new highly stable multifunctional $Gd^{3+}-based$ CA, with macrocyclic ligand structure (HNP-2006). MR imaging using HNP-2006 demonstrated a significant contrast enhancement in many different organs. Furthermore, the contrast enhanced tumor imaging using HNP-2006 confirmed that this new macrocyclic CA can be used for detecting tumor in the central nervous system. Therefore, this new multifunctional HNP-2006 with macrocyclic ligand structure shows great promise for whole-body clinical application.

Transcriptome Profiling of Kidney Tissue from FGS/kist Mice, the Korean Animal Model of Focal Segmental Glomerulosclerosis (국소성 분절성 사구체 신병증의 동물 모델 (FGS/kist 생쥐) 신 조직의 유전자 발현 양상)

  • Kang, Hee-Gyung;Lee, Byong-Sop;Lee, Chul-Ho;Ha, Il-Soo;Cheong, Hae-Il;Choi, Yong
    • Childhood Kidney Diseases
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    • v.15 no.1
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    • pp.38-48
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    • 2011
  • Purpose: Focal segmental glomerulosclerosis (FSGS) is the most common glomerulopathy causing pediatric renal failure. Since specific treatment targeting the etiology and pathophysiology of primary FSGS is yet elusive, the authors explored the pathophysiology of FSGS by transcriptome analysis of the disease using an animal model. Methods: FGS/kist strain, a mouse model of primary FSGS, and RFM/kist strain, as control and the parent strain of FGS/kist, were used. Kidney tissues were harvested and isolated renal cortex was used to extract mRNA, which was run on AB 1700 mouse microarray chip after reverse transcription to get the transcriptome profile. Results: Sixty two genes were differentially expressed in FGS/kist kidney tissue compared to the control. Those genes were related to cell cycle/cell death, immune reaction, and lipid metabolism/vasculopathy, and the key molecules of their networks were TNF, IL-6/4, IFN${\gamma}$, TP53, and PPAR${\gamma}$. Conclusion: This study confirmed that renal cell death, immune system activation with subsequent fibrosis, and lipid metabolism-related early vasculopathy were involved in the pathophysiology of FSGS. In addition, the relevance of methodology used in this study, namely transcriptome profiling, and Korean animal model of FGS/kist was validated. Further study would reveal novel pathophysiology of FSGS for new therapeutic targets.