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1.
Stem Cell Reports ; 4(4): 569-77, 2015 Apr 14.
Artigo em Inglês | MEDLINE | ID: mdl-25772471

RESUMO

Recently developed reprogramming and genome editing technologies make possible the derivation of corrected patient-specific pluripotent stem cell sources-potentially useful for the development of new therapeutic approaches. Starting with skin fibroblasts from patients diagnosed with cystic fibrosis, we derived and characterized induced pluripotent stem cell (iPSC) lines. We then utilized zinc-finger nucleases (ZFNs), designed to target the endogenous CFTR gene, to mediate correction of the inherited genetic mutation in these patient-derived lines via homology-directed repair (HDR). We observed an exquisitely sensitive, homology-dependent preference for targeting one CFTR allele versus the other. The corrected cystic fibrosis iPSCs, when induced to differentiate in vitro, expressed the corrected CFTR gene; importantly, CFTR correction resulted in restored expression of the mature CFTR glycoprotein and restoration of CFTR chloride channel function in iPSC-derived epithelial cells.


Assuntos
Regulador de Condutância Transmembrana em Fibrose Cística/genética , Regulador de Condutância Transmembrana em Fibrose Cística/metabolismo , Fibrose Cística/genética , Fibrose Cística/metabolismo , Marcação de Genes , Células-Tronco Pluripotentes Induzidas/metabolismo , Alelos , Diferenciação Celular/genética , Linhagem Celular , Células Cultivadas , Endonucleases/genética , Endonucleases/metabolismo , Expressão Gênica , Marcação de Genes/métodos , Vetores Genéticos/genética , Genótipo , Recombinação Homóloga , Humanos , Células-Tronco Pluripotentes Induzidas/citologia , Mutação , Reparo de DNA por Recombinação , Análise de Sequência de DNA , Dedos de Zinco/genética
2.
J Neurosci ; 25(31): 7101-10, 2005 Aug 03.
Artigo em Inglês | MEDLINE | ID: mdl-16079392

RESUMO

Glial cells play an important role in sequestering neuronally released glutamate via Na+-dependent transporters. Surprisingly, these transporters are not operational in glial-derived tumors (gliomas). Instead, gliomas release glutamate, causing excitotoxic death of neurons in the vicinity of the tumor. We now show that glutamate release from glioma cells is an obligatory by-product of cellular cystine uptake via system xc-, an electroneutral cystine-glutamate exchanger. Cystine is an essential precursor for the biosynthesis of glutathione, a major redox regulatory molecule that protects cells from endogenously produced reactive oxygen species (ROS). Glioma cells, but not neurons or astrocytes, rely primarily on cystine uptake via system xc- for their glutathione synthesis. Inhibition of system xc- causes a rapid depletion of glutathione, and the resulting loss of ROS defense causes caspase-mediated apoptosis. Glioma cells can be rescued if glutathione status is experimentally restored or if glutathione is substituted by alternate cellular antioxidants, confirming that ROS are indeed mediators of cell death. We describe two potent drugs that permit pharmacological inhibition of system xc-. One of these drugs, sulfasalazine, is clinically used to treat inflammatory bowel disease and rheumatoid arthritis. Sulfasalazine was able to reduce glutathione levels in tumor tissue and slow tumor growth in vivo in a commonly used intracranial xenograft animal model for human gliomas when administered by intraperitoneal injection. These data suggest that inhibition of cystine uptake into glioma cells through the pharmacological inhibition of system xc- may be a viable therapeutic strategy with a Food and Drug Administration-approved drug already in hand.


Assuntos
Sistemas de Transporte de Aminoácidos/antagonistas & inibidores , Neoplasias Encefálicas/metabolismo , Neoplasias Encefálicas/patologia , Cistina/antagonistas & inibidores , Sistemas de Transporte de Aminoácidos/metabolismo , Animais , Apoptose , Benzoatos/farmacologia , Neoplasias Encefálicas/fisiopatologia , Caspases/metabolismo , Divisão Celular/efeitos dos fármacos , DNA de Neoplasias/antagonistas & inibidores , Glutationa/antagonistas & inibidores , Glicina/análogos & derivados , Glicina/farmacologia , Humanos , Ratos , Ratos Sprague-Dawley , Sulfassalazina/farmacologia , Fatores de Tempo , Células Tumorais Cultivadas
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