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1.
DNA Repair (Amst) ; 9(1): 11-22, 2010 Jan 02.
Artigo em Inglês | MEDLINE | ID: mdl-19896421

RESUMO

Werner syndrome (WS) is a human autosomal recessive genetic instability and cancer predisposition syndrome with features of premature aging. Several genetically determined mouse models of WS have been generated, however, none develops features of premature aging or an elevated risk of neoplasia unless additional genetic perturbations are introduced. In order to determine whether differences in cellular phenotype could explain the discrepant phenotypes of Wrn-/- mice and WRN-deficient humans, we compared the cellular phenotype of newly derived Wrn-/- mouse primary fibroblasts with previous analyses of primary and transformed fibroblasts from WS patients and with newly derived, WRN-depleted human primary fibroblasts. These analyses confirmed previously reported cellular phenotypes of WRN-mutant and WRN-deficient human fibroblasts, and demonstrated that the human WRN-deficient cellular phenotype can be detected in cells grown in 5% or in 20% oxygen. In contrast, we did not identify prominent cellular phenotypes present in WRN-deficient human cells in Wrn-/- mouse fibroblasts. Our results indicate that human and mouse fibroblasts have different functional requirements for WRN protein, and that the absence of a strong cellular phenotype may in part explain the failure of Wrn-/- mice to develop an organismal phenotype resembling Werner syndrome.


Assuntos
Exodesoxirribonucleases/metabolismo , RecQ Helicases/metabolismo , Síndrome de Werner/enzimologia , Animais , Proliferação de Células , Células Cultivadas , Dano ao DNA , Exodesoxirribonucleases/deficiência , Histonas/metabolismo , Humanos , Longevidade , Camundongos , Camundongos Knockout , Neoplasias/enzimologia , Neoplasias/genética , Oxigênio/metabolismo , Fenótipo , RecQ Helicases/deficiência , Síndrome de Werner/genética , Síndrome de Werner/patologia , Helicase da Síndrome de Werner
2.
IEEE Trans Autom Sci Eng ; 5(1): 32-42, 2008 Jan 01.
Artigo em Inglês | MEDLINE | ID: mdl-21057593

RESUMO

A novel system that has enabled the measurement of single-cell oxygen consumption rates is presented. The experimental apparatus includes a temperature controlled environmental chamber, an array of microwells etched in glass, and a lid actuator used to seal cells in the microwells. Each microwell contains an oxygen sensitive platinum phosphor sensor used to monitor the cellular metabolic rates. Custom automation software controls the digital image data collection for oxygen sensor measurements, which are analyzed using an image-processing program to yield the oxygen concentration within each microwell versus time. Two proof-of-concept experiments produced oxygen consumption rate measurements for A549 human epithelial lung cancer cells of 5.39 and 5.27 fmol/min/cell, closely matching published oxygen consumption rates for bulk A549 populations.

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