993 resultados para RENAL TUBULAR CELLS


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A leptospirose é a zoonose mais importante do mundo. Os pacientes são tipicamente homens jovens. Vários fatores estão envolvidos na insuficiência renal aguda (IRA) na leptospirose, incluindo ação nefrotóxica direta da leptospira, hiperbilirrubinemia, rabdomiólise e hipovolemia. Os principais achados histológicos são nefrite intersticial aguda e necrose tubular aguda. A IRA na leptospirose é geralmente não oligúrica e hipocalêmica. Alterações da função tubular precedem a queda na taxa de filtração glomerular, o que poderia explicar a alta frequência de hipocalemia. O tratamento antibiótico é eficaz nas fases precoces e tardias e/ou graves. Para pacientes críticos com IRA na leptospirose, as seguintes condutas são recomendadas: hemodiálise precoce e diária; baixa infusão de volume (devido ao risco de hemorragia pulmonar), e estratégias de proteção pulmonar. A mortalidade na IRA associada à leptospirose está em torno de 22%.

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A glicosúria como achado acidental implica um estudo etiológico. Apresentam-se os casos de duas adolescentes do sexo feminino, assintomáticas, referenciadas por glicosúria detectada em análise de rotina. Negavam infecções, traumatismos e ingestão de fármacos ou tóxicos. O estudo efetuado confirmou glicosúria na ausência de outras alterações. O estudo genético revelou a presença de mutações do gene SCL5A2, confirmando o diagnóstico de glicosúria renal. A glicosúria renal familiar caracteriza-se por glicosúria isolada persistente na ausência de hiperglicemia e de disfunção tubular renal generalizada. É, geralmente, assintomática e o prognóstico é favorável. Alerta-se para esta rara entidade, pois pode ser motivo de referenciação para consulta de pediatria, salientando-se a importância do diagnóstico diferencial com afecções mais graves que necessitam de tratamento adequado.

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INTRODUÇÃO: O vírus Influenza A (H1N1) foi primeiramente descrito em abril de 2009 e, desde então, diversos estudos relataram as características pertinentes à apresentação clínica e ao acometimento pulmonar da doença. Contudo, informações precisas referentes à insuficiência renal aguda (IRA) e às alterações histopatológicas renais nesses pacientes ainda são escassas. OBJETIVO: O objetivo deste estudo é descrever os achados histopatológicos renais de seis pacientes comprovadamente infectados pelo H1N1, que desenvolveram IRA e realizaram biópsia renal, correlacionando-os com os aspectos clínicos. MÉTODOS: Avaliamos seis pacientes do Hospital de Clínicas da UFPR com diagnóstico de H1N1 por PCR viral em 2009 que evoluíram com IRA e que foram submetidos à biópsia renal. Foram revisados os seus prontuários e das lâminas da biópsia renal. RESULTADOS: Todos os casos estudados apresentaram dados clínicos e/ou laboratoriais de IRA, sendo que somente um não apresentou oligúria. À biópsia renal, dois pacientes apresentaram alterações glomerulares: um deles, portador de lupus eritematoso sistêmico, apresentou lesões compatíveis com nefrite lúpica classe III A-C da ISN/RPS 2003 e microangiopatia trombótica focal; outro paciente apresentou glomerulosclerose nodular intercapilar, porém, sem comemorativos clínicos ou laboratoriais de diabetes. Todos os pacientes mostraram graus variáveis de alterações degenerativas vacuolares dos túbulos, com focos de oxalose em dois casos. Dois pacientes possuíam arteriosclerose em grau discreto a moderado. CONCLUSÃO: Em nosso estudo, todos os pacientes apresentarem graus variáveis de alteração degenerativa vacuolar, contudo, não foram encontrados sinais evidentes de necrose tubular aguda, parecendo existir um componente pré-renal como a causa principal de IRA nestes pacientes.

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Resveratrol (RESV) is a polyphenolic compound found in various plants, including grapes, berries and peanuts, and its processed foods as red wine. RESV possesses a variety of bioactivities, including antioxidant, anti-inflammatory, cardioprotective, antidiabetic, anticancer, chemopreventive, neuroprotective, renal lipotoxicity preventative, and renal protective effects. Numerous studies have demonstrated that polyphenols promote cardiovascular health. Furthermore, RESV can ameliorate several types of renal injury in animal models, including diabetic nephropathy, hyperuricemic, drug-induced injury, aldosterone-induced injury, ischemia-reperfusion injury, sepsis-related injury, and endothelial dysfunction. In addition, RESV can prevent the increase in vasoconstrictors, such as angiotensin II (AII) and endothelin-1 (ET-1), as well as intracellular calcium, in mesangial cells. Together, these findings suggest a potential role for RESV as a supplemental therapy for the prevention of renal injury.

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ResumoIntroduçãoA terapêutica com varfarina pode provocar hematúria grave e lesão renal aguda pela formação de cilindros eritrocitários oclusivos. Estas alterações são sugestivas de uma doença recentemente conhecida como nefropatia relacionada pela varfarina.Caso Clínico:Apresentamos um doente de 74 anos de idade com doença renal crônica estádio 3 A, que progrediu com declínio na taxa de filtração glomerular (TFG) após o início de terapêutica com varfarina devido a um quadro fibrilação atrial. O diagnóstico foi confirmado pela histologia renal, que demonstrou a presença de oclusão tubular por cilindros eritrocitários, achados consistentes com este diagnóstico. O paciente não recuperou a TFG, tendo iniciado terapêutica substitutiva da função renal.Discussão:O objetivo da descrição deste caso clínico é alertar para a complicação associada a este fármaco e reforçar a necessidade de monitorização cuidada da função renal e dos parâmetros de coagulação em doentes tratados com a varfarina. A patogênese e o prognóstico desta entidade também serão discutidos.

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While high levels of Pkd1 expression are detected in tissues of patients with autosomal dominant polycystic kidney disease (ADPKD), it is unclear whether enhanced expression could be a pathogenetic mechanism for this systemic disorder. Three transgenic mouse lines were generated from a Pkd1-BAC modified by introducing a silent tag via homologous recombination to target a sustained wild type genomic Pkd1 expression within the native tissue and temporal regulation. These mice specifically overexpressed the Pkd1 transgene in extrarenal and renal tissues from approximately 2- to 15-fold over Pkd1 endogenous levels in a copy-dependent manner. All transgenic mice reproducibly developed tubular and glomerular cysts leading to renal insufficiency. Interestingly, Pkd1(TAG) mice also exhibited renal fibrosis and calcium deposits in papilla reminiscent of nephrolithiasis as frequently observed in ADPKD. Similar to human ADPKD, these mice consistently displayed hepatic fibrosis and approximately 15% intrahepatic cysts of the bile ducts affecting females preferentially. Moreover, a significant proportion of mice developed cardiac anomalies with severe left ventricular hypertrophy, marked aortic arch distention and/or valvular stenosis and calcification that had profound functional impact. Of significance, Pkd1(TAG) mice displayed occasional cerebral lesions with evidence of ruptured and unruptured cerebral aneurysms. This Pkd1(TAG) mouse model demonstrates that overexpression of wildtype Pkd1 can trigger the typical adult renal and extrarenal phenotypes resembling human ADPKD.

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Objetivos: determinar los cambios anatómicos del ejercicio en el envejecimiento renal. Metodología: estudio longitudinal experimental durante 54 semanas. Se tomaron 120 ratones machos cepa Suizo, los cuales según su actividad se dividieron en 3 grupos: sedentarios, normales y activos. El ejercicio se moduló con el espacio habitacional y el acceso al alimento. Se sacrificaron 3 animales por grupo desde la 9ª semana de edad cada 9 semanas. Se consideraron animales jóvenes aquellos menores de 27 semanas y viejos los mayores de 36. Los ratones y sus riñones se pesaron, y se estableción la relación peso riñones/peso ratón. Del riñón izquierdo de cada animal se midió la corteza y se realizó el estudio histológico con las coloraciones clásicas. Los cortes fueron analizados por 2 patólogos que no conocían el propósito del estudio; describieron cambios glomerulares y túbulo intersticiales, los cuales se clasificaron de nulos a severos. Se midieron áreas glomerulares y la relación luz/pared arterial. Resultados: El máximo crecimiento renal se observó a las 18 semanas. En la semana 54, los sedentarios tuvieron menor espesor cortical (2288,65 ± 552,75) que los normales (2502,7 ± 163,81) y los activos (2609,46 ± 273,28), con n=3 para todos los grupos. El área glomerular fue significativamente menor (P= 0,035) en sedentarios (8657,33 ± 1954,38), comparativamente con los activos (10318,64 ± 2425,14), pero entre los normales (9791,52 ± 2211,63) y los otros dos grupos no existieron diferencias significativas: n=18 para cada grupo. La atrofia tubular en animales viejos fue del 55,5% en los sedentarios, mayor que en normales y activos, en los cuales fue del 44,4% no significativo. La nefritis intersticial fue menor en normales (55,5%), en comparación con los sedentarios y activos (77,7%) no significativo. Conclusión: el grupo sedentario presentó mayor compromiso estructural en el envejecimiento renal. Aunque el ejercicio moderado puede limitar la severidad de estos cambios, el ejercicio intenso puede aumentar la nefritis intersticial. Es importante resaltar la naturaleza activa de los roedores; según nuestra clasificación, el grupo activo correspondería a un humano hiperejercitado; el grupo normal, a personas con ejercicio físico frecuente; y el sedentario, a su igual.

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Polarized epithelial cells are responsible for the vectorial transport of solutes and have a key role in maintaining body fluid and electrolyte homeostasis. Such cells contain structurally and functionally distinct plasma membrane domains. Brush border and basolateral membranes of renal and intestinal epithelial cells can be separated using a number of different separation techniques, which allow their different transport functions and receptor expressions to be studied. In this communication, we report a proteomic analysis of these two membrane segments, apical and basolateral, obtained from the rat renal cortex isolated by two different methods: differential centrifugation and free-flow electrophoresis. The study was aimed at assessing the nature of the major proteins isolated by these two separation techniques. Two analytical strategies were used: separation by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) at the protein level or by cation-exchange high-performance liquid chromatography (HPLC) after proteolysis (i.e., at the peptide level). Proteolytic peptides derived from the proteins present in gel pieces or from HPLC fractions after proteolysis were sequenced by on-line liquid chromatography-tandem mass spectrometry (LC-MS/MS). Several hundred proteins were identified in each membrane section. In addition to proteins known to be located at the apical and basolateral membranes, several novel proteins were also identified. In particular, a number of proteins with putative roles in signal transduction were identified in both membranes. To our knowledge, this is the first reported study to try and characterize the membrane proteome of polarized epithelial cells and to provide a data set of the most abundant proteins present in renal proximal tubule cell membranes.

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The development of normal and abnormal glandular structures in the prostate is controlled at the endocrine and paracrine levels by reciprocal interactions between epithelium and stroma. To study these processes it is useful to have an efficient method of tissue acquisition for reproducible isolation of cells from defined histologies. Here we assessed the utility of a standardized system for acquisition and growth of prostatic cells from different regions of the prostate with different pathologies, and we compared the abilities of stromal cells from normal peripheral zone (PZ-S), benign prostatic hyperplasia (BPH-S), and cancer (CA-S) to induce the growth of a human prostatic epithelial cell line (BPH-1) in vivo. Using the tissue recombination method, we showed that grafting stromal cells (from any histology) alone, or BPH-1 epithelial cells alone produced no visible grafts. Recombining PZ-S with BPH-1 cells also produced no visible grafts (n = 15). Recombining BPH-S with BPH-1 cells generated small, well-organized and sharply demarcated grafts approximately 3-4 mm in diameter (n = 9), demonstrating a moderate inductive ability of BPH-S. Recombining CA-S with BPH-1 cells generated highly disorganized grafts that completely surrounded the host kidney and invaded into adjacent renal tissue, demonstrating induction of an aggressive phenotype. We conclude that acquisition of tissue from toluidine blue dye stained specimens is an efficient method to generate high quality epithelial and/or stromal cultures. Stromal cells derived by this method from areas of BPH and cancer induce epithelial cell growth in vivo which mimics the natural history of these diseases.

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Polarized epithelial cells are responsible for the vectorial transport of solutes and have a key role in maintaining body fluid and electrolyte homeostasis. Such cells contain structurally and functionally distinct plasma membrane domains. Brush border and basolateral membranes of renal and intestinal epithelial cells can be separated using a number of different separation techniques, which allow their different transport functions and receptor expressions to be studied. In this communication, we report a proteomic analysis of these two membrane segments, apical and basolateral, obtained from the rat renal cortex isolated by two different methods: differential centrifugation and free-flow electrophoresis. The study was aimed at assessing the nature of the major proteins isolated by these two separation techniques. Two analytical strategies were used: separation by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) at the protein level or by cation-exchange high-performance liquid chromatography (HPLC) after proteolysis (i.e., at the peptide level). Proteolytic peptides derived from the proteins present in gel pieces or from HPLC fractions after proteolysis were sequenced by on-line liquid chromatography-tandem mass spectrometry (LC-MS/MS). Several hundred proteins were identified in each membrane section. In addition to proteins known to be located at the apical and basolateral membranes, several novel proteins were also identified. In particular, a number of proteins with putative roles in signal transduction were identified in both membranes. To our knowledge, this is the first reported study to try and characterize the membrane proteome of polarized epithelial cells and to provide a data set of the most abundant proteins present in renal proximal tubule cell membranes.

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Background. Obstructive nephropathy decreases renal blood flow (RBF) and glomerular filtration rate (GFR), causing tubular abnormalities, such as urinary concentrating defect, as well as increasing oxidative stress. This study aimed to evaluate the effects of N-acetylcysteine (NAC) on renal function, as well as on the protein expression of aquaporin 2 (AQP2) and endothelial nitric oxide synthase (eNOS), after the relief of bilateral ureteral obstruction (BUO). Methods. Adult male Wistar rats were divided into four groups: sham (sham operated); sham operated + 440 mg/kg body weight (BW) of NAC daily in drinking water, started 2 days before and maintained until 48 h after the surgery; BUO (24-h BUO only); BUO + NAC-pre (24-h BUO plus 440 mg/kg BW of NAC daily in drinking water started 2 days before BUO); and BUO + NAC-post (24-h BUO plus 440 mg/kg BW of NAC daily in drinking water started on the day of BUO relief). Experiments were conducted 48 h after BUO relief. Results. Serum levels of thiobarbituric reactive substances, which are markers of lipid peroxidation, were significantly lower in NAC-treated rats than in the BUO group rats. The administration of NAC provided significant protection against post-BUO GFR drops and reductions in RBF. Renal cortices and BUO rats presented decreased eNOS protein expression of eNOS in the renal cortex of BUO group rats, whereas it was partially recovered in BUO + NAC-pre group rats. Urine osmolality was significantly lower in BUO rats than in sham group rats or NAC-treated rats, the last also presenting less interstitial fibrosis. Post-BUO downregulation of AQP2 protein expression was averted in the BUO + NAC-pre group rats. Conclusions. This study demonstrates that NAC administration ameliorates the renal function impairment observed 48 h after the relief of 24-h BUO. Oxidative stress is important for the suppression of GFR, RBF, tissue AQP2 and eNOS in the polyuric phase after the release of BUO.

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In the microvillar microdomain of the kidney brush border, sodium hydrogen exchanger type 3 (NHE3) exists in physical complexes with the serine protease dipeptidyl peptidase IV (DPPIV). The purpose of this study was to explore the functional relationship between NHE3 and DPPIV in the intact proximal tubule in vivo. To this end, male Wistar rats were treated with an injection of the reversible DPPIV inhibitor Lys [Z(NO(2))]-pyrrolidide (I40; 60 mg center dot kg(-1)center dot day(-1) ip) for 7 days. Rats injected with equal amounts of the noninhibitory compound Lys[ Z(NO(2))]-OH served as controls. Na(+) -H(+) exchange activity in isolated microvillar membrane vesicles was 45 +/- 5% decreased in rats treated with I40. Membrane fractionation studies using isopycnic centrifugation revealed that I40 provoked redistribution of NHE3 along with a small fraction of DPPIV from the apical enriched microvillar membranes to the intermicrovillar microdomain of the brush border. I40 significantly increased urine output ( 67 +/- 9%; P < 0.01), fractional sodium excretion ( 63 +/- 7%; P < 0.01), as well as lithium clearance ( 81 +/- 9%; P < 0.01), an index of end-proximal tubule delivery. Although not significant, a tendency toward decreased blood pressure and plasma pH/HCO(3)(-) was noted in I40-treated rats. These findings indicate that inhibition of DPPIV catalytic activity is associated with inhibition of NHE3-mediated NaHCO(3) reabsorption in rat renal proximal tubule. Inhibition of apical Na(+) -H(+) exchange is due to reduced abundance of NHE3 protein in the microvillar microdomain of the kidney brush border. Moreover, this study demonstrates a physiologically significant interaction between NHE3 and DPPIV in the intact proximal tubule in vivo.

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Background/Objective: Renal ischemia-hypoxia is a leading cause of acute kidney injury (AKI). Ischemia causes extracellular matrix breakdown of the tubular basement membrane. Endostatin (ES) is the C-terminal fragment of collagen XVIII generated by proteolytic cleavage. Recent studies have demonstrated that ES expression is upregulated in ischemic kidneys. The present study aimed to characterize ES from ischemic kidneys. Methods: Ischemic renal failure was induced via 45 min of occlusion of the left renal artery and vein. After the ischemic period, blood was collected. Kidneys were harvested and used for immunohistochemical testing and protein extraction. Three-step purification was used. Soluble and immobilized purified ES were tested in cell viability and adhesion assays. Results: The soluble KES28kDa inhibited endothelial cell proliferation: 25 versus 12.5 mu g (p < 0.05); 12.5 versus 3.15 mu g (p < 0.05). Immobilization of KES28kDa supports endothelial cell survival over the control p = 0.021). Human umbilical vein endothelial cells plated on immobilized KES28kDa showed an increase in membrane ruffles and stress fibers. Conclusion: These data demonstrate the local synthesis of a 28-kDa ES-related fragment following AKI and suggest its role in endothelium survival. Copyright (C) 2010 S. Karger AG, Basel

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Ischemia and reperfusion injury (IRI) are mainly caused by leukocyte activation, endothelial dysfunction and production of reactive oxygen species. Moreover, IRI can lead to a systemic response affecting distant organs, such as the lungs. The objective was to study the pulmonary inflammatory systemic response after renal IRI. Male C57Bl/6 mice were subjected to 45 min of bilateral renal ischemia, followed by 4, 6, 12, 24 and 48 h of reperfusion. Blood was collected to measure serum creatinine and cytokine concentrations. Bronchoalveolar lavage fluid (BALF) was collected to determine the number of cells and PGE(2) concentration. Expressions of iNOS and COX-2 in lung were determined by Western blot. Gene analyses were quantified by real time PCR. Serum creatinine increased in the IRI group compared to sham mainly at 24 h after IRI (2.57 +/- A 0.16 vs. 0.43 +/- A 0.07, p < 0.01). The total number of cells in BAL fluid was higher in the IRI group in comparison with sham, 12 h (100 x 10(4) +/- A 15.63 vs. 18.1x10(4) +/- A 10.5, p < 0.05) 24 h (124 x 10(4) +/- A 8.94 vs. 23.2x10(4) +/- A 3.5, p < 0.05) and 48 h (79 x 10(4) +/- A 15.72 vs. 22.2 x 10(4) +/- A 4.2, p < 0.05), mainly by mononuclear cells and neutrophils. Pulmonary COX-2 and iNOS were up-regulated in the IRI group. TNF-alpha, IL-1 beta, MCP-1, KC and IL-6 mRNA expression were up-regulated in kidney and lungs 24 h after renal IRI. ICAM-1 mRNA was up-regulated in lungs 24 h after renal IRI. Serum TNF-alpha, IL-1 beta and MCP-1 and BALF PGE(2) concentrations were increased 24 h after renal IRI. Renal IRI induces an increase of cellular infiltration, up-regulation of COX-2, iNOS and ICAM-1, enhanced chemokine expression and a Th1 cytokine profile in lung demonstrating that the inflammatory response is indeed systemic, possibly leading to an amplification of renal injury.

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One of the early phases that lead to fibrosis progression is inflammation. Once this stage is resolved, fibrosis might be prevented. Bone marrow mononuclear cells (BMMCs) are emerging as a new therapy for several pathologies, including autoimmune diseases, because they enact immunosuppression. In this study we aimed to evaluate the role of BMMC administration in a model of kidney fibrosis induced by an acute injury. C57Bl6 mice were subjected to unilateral severe ischemia by clamping the left renal pedicle for 1 h. BMMCs were isolated from femurs and tibia, and after 6 h of reperfusion, 1 x 10(6) cells were administrated intraperitoneally. At 24 h after surgery, treated animals showed a significant decrease in creatinine and urea levels when compared with untreated animals. Different administration routes were tested. Moreover, interferon (IFN) receptor knockout BMMCs were used, as this receptor is necessary for BMMC activation. Labeled BMMCs were found in ischemic kidney on FACS analysis. This improved outcome was associated with modulation of inflammation in the kidney and systemic modulation, as determined by cytokine expression profiling. Despite non-amelioration of functional parameters, kidney mRNA expression of interleukin (IL)-6 at 6 weeks was lower in BMMC-treated animals, as were levels of collagen 1, connective tissue growth factor (CTGF), transforming growth factor-beta (TGF-beta) and vimentin. Protective molecules, such as IL-10, heme oxygenase 1 (HO-1) and bone morphogenetic 7 (BMP-7), were increased in treated animals after 6 weeks. Moreover, Masson and Picrosirius red staining analyses showed less fibrotic areas in the kidneys of treated animals. Thus, early modulation of inflammation by BMMCs after an ischemic injury leads to reduced fibrosis through modulation of early inflammation.