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1.
AAPS J ; 20(5): 86, 2018 07 23.
Artigo em Inglês | MEDLINE | ID: mdl-30039346

RESUMO

Drug-induced kidney injury is often observed in the clinics and can lead to long-term organ failure. In this work, we evaluated a novel in vitro system that aims at detecting whether compounds can cause renal proximal tubule damage in man. For this, we implemented organotypic cultures of human conditionally immortalized proximal tubule epithelial cells overexpressing the organic anion transporter 1 (ciPTEC-OAT1) in a three-channel OrganoPlate under microfluidic conditions. Cells were exposed to four known nephrotoxicants (cisplatin, tenofovir, cyclosporine A, and tobramycin). The effect on cell viability and NAG release into the medium was determined. A novel panel of four miRNAs (mir-21, mir-29a, mir-34a, and mir-192) was selected as potential biomarkers of proximal tubule damage. After nephrotoxicant treatment, miRNA levels in culture medium were earlier indicators than cell viability (WST-8 assay) and outperformed NAG for proximal tubule damage. In particular, mir-29a, mir-34a, and mir-192 were highly reproducible between experiments and across compounds, whereas mir-21 showed more variability. Moreover, similar data were obtained in two different laboratories, underlining the reproducibility and technical transferability of the results, a key requirement for the implementation of novel biomarkers. In conclusion, the selected miRNAs behaved like sensitive biomarkers of damage to tubular epithelial cells caused by several nephrotoxicity mechanisms. This biomarker panel, in combination with the 3D cultures of ciPTEC-OAT1 in the OrganoPlate, represents a novel tool for in vitro nephrotoxicity detection. These results pave the way for the application of miRNAs in longitudinal, time-course in vitro toxicity studies.


Assuntos
Células Epiteliais/efeitos dos fármacos , Nefropatias/induzido quimicamente , Túbulos Renais Proximais/efeitos dos fármacos , MicroRNAs/genética , Técnicas Analíticas Microfluídicas , Linhagem Celular Transformada , Sobrevivência Celular/efeitos dos fármacos , Relação Dose-Resposta a Droga , Células Epiteliais/metabolismo , Células Epiteliais/patologia , Marcadores Genéticos , Humanos , Nefropatias/genética , Nefropatias/metabolismo , Nefropatias/patologia , Túbulos Renais Proximais/metabolismo , Túbulos Renais Proximais/patologia , MicroRNAs/metabolismo , Estudo de Prova de Conceito , Reprodutibilidade dos Testes , Medição de Risco , Fatores de Tempo
2.
Sci Rep ; 6: 26715, 2016 05 31.
Artigo em Inglês | MEDLINE | ID: mdl-27242131

RESUMO

The development of a biotechnological platform for the removal of waste products (e.g. uremic toxins), often bound to proteins in plasma, is a prerequisite to improve current treatment modalities for patients suffering from end stage renal disease (ESRD). Here, we present a newly designed bioengineered renal tubule capable of active uremic toxin secretion through the concerted action of essential renal transporters, viz. organic anion transporter-1 (OAT1), breast cancer resistance protein (BCRP) and multidrug resistance protein-4 (MRP4). Three-dimensional cell monolayer formation of human conditionally immortalized proximal tubule epithelial cells (ciPTEC) on biofunctionalized hollow fibers with maintained barrier function was demonstrated. Using a tailor made flow system, the secretory clearance of human serum albumin-bound uremic toxins, indoxyl sulfate and kynurenic acid, as well as albumin reabsorption across the renal tubule was confirmed. These functional bioengineered renal tubules are promising entities in renal replacement therapies and regenerative medicine, as well as in drug development programs.


Assuntos
Membro 2 da Subfamília G de Transportadores de Cassetes de Ligação de ATP/metabolismo , Túbulos Renais Proximais/metabolismo , Proteínas Associadas à Resistência a Múltiplos Medicamentos/metabolismo , Proteínas de Neoplasias/metabolismo , Proteína 1 Transportadora de Ânions Orgânicos/metabolismo , Engenharia Tecidual , Membro 2 da Subfamília G de Transportadores de Cassetes de Ligação de ATP/genética , Linhagem Celular , Humanos , Falência Renal Crônica/genética , Falência Renal Crônica/metabolismo , Falência Renal Crônica/patologia , Túbulos Renais Proximais/patologia , Proteínas Associadas à Resistência a Múltiplos Medicamentos/genética , Proteínas de Neoplasias/genética , Proteína 1 Transportadora de Ânions Orgânicos/genética
3.
Sci Rep ; 5: 16702, 2015 Nov 16.
Artigo em Inglês | MEDLINE | ID: mdl-26567716

RESUMO

The bioartificial kidney (BAK) aims at improving dialysis by developing 'living membranes' for cells-aided removal of uremic metabolites. Here, unique human conditionally immortalized proximal tubule epithelial cell (ciPTEC) monolayers were cultured on biofunctionalized MicroPES (polyethersulfone) hollow fiber membranes (HFM) and functionally tested using microfluidics. Tight monolayer formation was demonstrated by abundant zonula occludens-1 (ZO-1) protein expression along the tight junctions of matured ciPTEC on HFM. A clear barrier function of the monolayer was confirmed by limited diffusion of FITC-inulin. The activity of the organic cation transporter 2 (OCT2) in ciPTEC was evaluated in real-time using a perfusion system by confocal microscopy using 4-(4-(dimethylamino)styryl)-N-methylpyridinium iodide (ASP(+)) as a fluorescent substrate. Initial ASP(+) uptake was inhibited by a cationic uremic metabolites mixture and by the histamine H2-receptor antagonist, cimetidine. In conclusion, a 'living membrane' of renal epithelial cells on MicroPES HFM with demonstrated active organic cation transport was successfully established as a first step in BAK engineering.


Assuntos
Membranas Artificiais , Proteínas de Transporte de Cátions Orgânicos/metabolismo , Cátions/metabolismo , Adesão Celular/efeitos dos fármacos , Linhagem Celular , Cimetidina/farmacologia , Células Epiteliais/citologia , Células Epiteliais/metabolismo , Antagonistas dos Receptores H2 da Histamina/farmacologia , Humanos , Imuno-Histoquímica , Transporte de Íons/efeitos dos fármacos , Túbulos Renais Proximais/citologia , Metilaminas/química , Metilaminas/metabolismo , Transportador 2 de Cátion Orgânico , Permeabilidade/efeitos dos fármacos , Compostos de Piridínio/química , Compostos de Piridínio/metabolismo , Junções Íntimas/metabolismo , Proteína da Zônula de Oclusão-1/metabolismo
4.
Br J Pharmacol ; 172(20): 4932-45, 2015 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-26222228

RESUMO

BACKGROUND AND PURPOSE: Recently, two phase-II trials demonstrated improved renal function in critically ill patients with sepsis-associated acute kidney injury treated with the enzyme alkaline phosphatase. Here, we elucidated the dual active effect on renal protection of alkaline phosphatase. EXPERIMENTAL APPROACH: The effect of human recombinant alkaline phosphatase (recAP) on LPS-induced renal injury was studied in Sprague-Dawley rats. Renal function was assessed by transcutaneous measurement of FITC-sinistrin elimination in freely moving, awake rats. The mechanism of action of recAP was further investigated in vitro using conditionally immortalized human proximal tubular epithelial cells (ciPTEC). KEY RESULTS: In vivo, LPS administration significantly prolonged FITC-sinistrin half-life and increased fractional urea excretion, which was prevented by recAP co-administration. Moreover, recAP prevented LPS-induced increase in proximal tubule injury marker, kidney injury molecule-1 expression and excretion. In vitro, LPS-induced production of TNF-α, IL-6 and IL-8 was significantly attenuated by recAP. This effect was linked to dephosphorylation, as enzymatically inactive recAP had no effect on LPS-induced cytokine production. RecAP-mediated protection resulted in increased adenosine levels through dephosphorylation of LPS-induced extracellular ADP and ATP. Also, recAP attenuated LPS-induced increased expression of adenosine A2A receptor. However, the A2A receptor antagonist ZM-241385 did not diminish the effects of recAP. CONCLUSIONS AND IMPLICATIONS: These results indicate that the ability of recAP to reduce renal inflammation may account for the beneficial effect observed in septic acute kidney injury patients, and that dephosphorylation of ATP and LPS are responsible for this protective effect.


Assuntos
Injúria Renal Aguda/metabolismo , Fosfatase Alcalina/farmacologia , Substâncias Protetoras/farmacologia , Injúria Renal Aguda/induzido quimicamente , Injúria Renal Aguda/tratamento farmacológico , Injúria Renal Aguda/patologia , Antagonistas de Receptores Adrenérgicos alfa 2/farmacologia , Fosfatase Alcalina/uso terapêutico , Animais , Células Cultivadas , Citocinas/metabolismo , Células Epiteliais/efeitos dos fármacos , Células Epiteliais/metabolismo , Fluoresceínas/metabolismo , Regulação da Expressão Gênica/efeitos dos fármacos , Humanos , Inflamação/induzido quimicamente , Inflamação/tratamento farmacológico , Inflamação/metabolismo , Inflamação/patologia , Rim/efeitos dos fármacos , Rim/metabolismo , Rim/patologia , Lipopolissacarídeos , Masculino , Oligossacarídeos/metabolismo , Substâncias Protetoras/uso terapêutico , Purinas/urina , Ratos Sprague-Dawley , Proteínas Recombinantes/farmacologia , Triazinas/farmacologia , Triazóis/farmacologia
5.
Biotechnol Adv ; 32(7): 1317-1327, 2014 Nov 15.
Artigo em Inglês | MEDLINE | ID: mdl-25135479

RESUMO

With the world-wide increase of patients with renal failure, the development of functional renal replacement therapies have gained significant interest and novel technologies are rapidly evolving. Currently used renal replacement therapies insufficiently remove accumulating waste products, resulting in the uremic syndrome. A more preferred treatment option is kidney transplantation, but the shortage of donor organs and the increasing number of patients waiting for a transplant warrant the development of novel technologies. The bioartificial kidney (BAK) is such promising biotechnological approach to replace essential renal functions together with the active secretion of waste products. The development of the BAK requires a multidisciplinary approach and evolves at the intersection of regenerative medicine and renal replacement therapy. Here we provide a concise review embracing a compact historical overview of bioartificial kidney development and highlighting the current state-of-the-art, including implementation of living-membranes and the relevance of extracellular matrices. We focus further on the choice of relevant renal epithelial cell lines versus the use of stem cells and co-cultures that need to be implemented in a suitable device. Moreover, the future of the BAK in regenerative nephrology is discussed.


Assuntos
Bioprótese , Biotecnologia/métodos , Técnicas de Cocultura/métodos , Rins Artificiais , Engenharia Tecidual/métodos , Animais , Linhagem Celular , Células Epiteliais , Matriz Extracelular , Humanos , Camundongos , Modelos Biológicos , Células-Tronco , Suínos
6.
Exp Cell Res ; 323(1): 87-99, 2014 Apr 15.
Artigo em Inglês | MEDLINE | ID: mdl-24560744

RESUMO

Promising renal replacement therapies include the development of a bioartificial kidney using functional human kidney cell models. In this study, human conditionally immortalized proximal tubular epithelial cell (ciPTEC) lines originating from kidney tissue (ciPTEC-T1 and ciPTEC-T2) were compared to ciPTEC previously isolated from urine (ciPTEC-U). Subclones of all ciPTEC isolates formed tight cell layers on Transwell inserts as determined by transepithelial resistance, inulin diffusion, E-cadherin expression and immunocytochemisty. Extracellular matrix genes collagen I and -IV α1 were highly present in both kidney tissue derived matured cell lines (p<0.001) compared to matured ciPTEC-U, whereas matured ciPTEC-U showed a more pronounced fibronectin I and laminin 5 gene expression (p<0.01 and p<0.05, respectively). Expression of the influx carrier Organic Cation Transporter 2 (OCT-2), and the efflux pumps P-glycoprotein (P-gp), Multidrug Resistance Protein 4 (MRP4) and Breast Cancer Resistance Protein (BCRP) were confirmed in the three cell lines using real-time PCR and Western blotting. The activities of OCT-2 and P-gp were sensitive to specific inhibition in all models (p<0.001). The highest activity of MRP4 and BCRP was demonstrated in ciPTEC-U (p<0.05). Finally, active albumin reabsorption was highest in ciPTEC-T2 (p<0.001), while Na(+)-dependent phosphate reabsorption was most abundant in ciPTEC-U (p<0.01). In conclusion, ciPTEC established from human urine or kidney tissue display comparable functional PTEC specific transporters and physiological characteristics, providing ideal human tools for bioartificial kidney development.


Assuntos
Órgãos Bioartificiais , Túbulos Renais Proximais/citologia , Rins Artificiais , Urina/citologia , Membro 1 da Subfamília B de Cassetes de Ligação de ATP/antagonistas & inibidores , Membro 1 da Subfamília B de Cassetes de Ligação de ATP/biossíntese , Membro 1 da Subfamília B de Cassetes de Ligação de ATP/metabolismo , Membro 2 da Subfamília G de Transportadores de Cassetes de Ligação de ATP , Transportadores de Cassetes de Ligação de ATP/biossíntese , Transportadores de Cassetes de Ligação de ATP/metabolismo , Caderinas/biossíntese , Moléculas de Adesão Celular/biossíntese , Técnicas de Cultura de Células , Linhagem Celular , Colágeno Tipo I/biossíntese , Colágeno Tipo I/metabolismo , Fibronectinas/biossíntese , Humanos , Inulina/metabolismo , Proteínas Associadas à Resistência a Múltiplos Medicamentos/biossíntese , Proteínas Associadas à Resistência a Múltiplos Medicamentos/metabolismo , Proteínas de Neoplasias/biossíntese , Proteínas de Neoplasias/metabolismo , Fator 2 de Transcrição de Octâmero/antagonistas & inibidores , Fator 2 de Transcrição de Octâmero/biossíntese , Fator 2 de Transcrição de Octâmero/metabolismo , Engenharia Tecidual , Migração Transendotelial e Transepitelial/fisiologia , Calinina
7.
Biochim Biophys Acta ; 1832(1): 142-50, 2013 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-23017367

RESUMO

During chronic kidney disease (CKD), drug metabolism is affected leading to changes in drug disposition. Furthermore, there is a progressive accumulation of uremic retention solutes due to impaired renal clearance. Here, we investigated whether uremic toxins can influence the metabolic functionality of human conditionally immortalized renal proximal tubule epithelial cells (ciPTEC) with the focus on UDP-glucuronosyltransferases (UGTs) and mitochondrial activity. Our results showed that ciPTEC express a wide variety of metabolic enzymes, including UGTs. These enzymes were functionally active as demonstrated by the glucuronidation of 7-hydroxycoumarin (7-OHC; K(m) of 12±2µM and a V(max) of 76±3pmol/min/mg) and p-cresol (K(m) of 33±13µM and a V(max) of 266±25pmol/min/mg). Furthermore, a wide variety of uremic toxins, including indole-3-acetic acid, indoxyl sulfate, phenylacetic acid and kynurenic acid, reduced 7-OHC glucuronidation with more than 30% as compared with controls (p<0.05), whereas UGT1A and UGT2B protein expressions remained unaltered. In addition, our results showed that several uremic toxins inhibited mitochondrial succinate dehydrogenase (i.e. complex II) activity with more than 20% as compared with controls (p<0.05). Moreover, indole-3-acetic acid decreased the reserve capacity of the electron transport system with 18% (p<0.03). In conclusion, this study shows that multiple uremic toxins inhibit UGT activity and mitochondrial activity in ciPTEC, thereby affecting the metabolic capacity of the kidney during CKD. This may have a significant impact on drug and uremic retention solute disposition in CKD patients.


Assuntos
Efeitos Colaterais e Reações Adversas Relacionados a Medicamentos/metabolismo , Rim/metabolismo , Mitocôndrias/metabolismo , Uremia/metabolismo , Linhagem Celular , Cresóis/metabolismo , Efeitos Colaterais e Reações Adversas Relacionados a Medicamentos/enzimologia , Efeitos Colaterais e Reações Adversas Relacionados a Medicamentos/genética , Transporte de Elétrons , Glucuronosiltransferase/genética , Glucuronosiltransferase/metabolismo , Humanos , Rim/enzimologia , Mitocôndrias/enzimologia , Mitocôndrias/genética , Preparações Farmacêuticas/metabolismo , Succinato Desidrogenase/genética , Succinato Desidrogenase/metabolismo , Umbeliferonas/metabolismo , Uremia/enzimologia , Uremia/genética
8.
Kidney Int ; 72(10): 1233-41, 2007 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-17851469

RESUMO

The multidrug resistance gene 1 product, P-glycoprotein (P-gp), is expressed in several excretory organs, including the apical membrane of proximal tubules. After inducing acute renal failure, P-gp expression is upregulated and this might be a protective function by pumping out toxicants and harmful products of oxidative stress. We characterized renal function of P-gp knockout mice and studied its consequences in renal ischemic damage. Compared with wild-type mice, knockout mice have a lower glomerular filtration rate and renal plasma flow. An augmented urinary excretion of sodium, numerous amino acids, calcium, glucose, and low molecular weight proteins was observed along with an increased diuresis. A higher lithium plasma clearance in the knockout mice suggested proximal tubular dysfunction. Electron microscopy showed mitochondrial abnormalities in proximal tubular cells that could account for decreased adenosine triphosphate levels in the cortex. After inducing ischemia, wild-type mice showed a decrease in creatinine clearance and severe proximal tubular necrosis. In contrast, knockout mice had no signs of tubular damage. Our data indicate that P-gp knockout mice have impaired renal function but are protected against ischemic renal injury.


Assuntos
Membro 1 da Subfamília B de Cassetes de Ligação de ATP/deficiência , Isquemia/prevenção & controle , Túbulos Renais Proximais/fisiopatologia , Injúria Renal Aguda/fisiopatologia , Aminoácidos/urina , Animais , Cálcio/urina , Diurese , Imunofluorescência , Taxa de Filtração Glomerular/genética , Glicosúria , Imuno-Histoquímica , Isquemia/etiologia , Túbulos Renais Proximais/ultraestrutura , Masculino , Camundongos , Camundongos Endogâmicos , Camundongos Knockout , Mitocôndrias/patologia , Mitocôndrias/ultraestrutura , Proteinúria , Circulação Renal/genética , Sódio/urina
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