Comet Assay: A Method to Evaluate Genotoxicity of Nano-Drug Delivery System
Introduction: Drug delivery systems could induce cellular toxicity as side effect of nanomaterials. The mechanism of toxicity usually involves DNA damage. The comet assay or single cell gel electrophoresis (SCGE) is a sensitive method for detecting strand damages in the DNA of a cell with applicatio...
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Tabriz University of Medical Sciences
2011-08-01
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Online Access: | http://dx.doi.org/10.5681/bi.2011.012 |
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doaj-8d29059a891d4721b7c784d3114eddc02020-11-25T00:37:14ZengTabriz University of Medical SciencesBioImpacts2228-56522228-56602011-08-01128797Comet Assay: A Method to Evaluate Genotoxicity of Nano-Drug Delivery SystemMorteza EskandaniSomayeh VandghanooniIntroduction: Drug delivery systems could induce cellular toxicity as side effect of nanomaterials. The mechanism of toxicity usually involves DNA damage. The comet assay or single cell gel electrophoresis (SCGE) is a sensitive method for detecting strand damages in the DNA of a cell with applications in genotoxicity testing and molecular epidemiology as well as fundamental research in DNA damage and repair. Methods: In the current study, we reviewed recent drug delivery researches related to SCGE. Results: We found that one preference for choosing the assay is that comet images may result from apoptosis-mediated nuclear fragmentation. This method has been widely used over the last decade in several different areas. Overall cells, such as cultured cells are embedded in agarose on a microscope slide, lysed with detergent, and treated with high salt. Nucleoids are supercoiled DNA form. When the slide is faced to alkaline electrophoresis any breakages present in the DNA cause the supercoiling to relax locally and loops of DNA extend toward the anode as a ‘‘comet tail’’. Conclusion: This article provides a relatively comprehensive review upon potentiality of the comet assay for assessment of DNA damage and accordingly it can be used as an informative platform in genotoxicity studies of drug delivery systems. http://dx.doi.org/10.5681/bi.2011.012NanoparticleDrug DeliveryGenotoxicityComet AssaySingle Cell Gel ElectrophoresisDNA |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Morteza Eskandani Somayeh Vandghanooni |
spellingShingle |
Morteza Eskandani Somayeh Vandghanooni Comet Assay: A Method to Evaluate Genotoxicity of Nano-Drug Delivery System BioImpacts Nanoparticle Drug Delivery Genotoxicity Comet Assay Single Cell Gel Electrophoresis DNA |
author_facet |
Morteza Eskandani Somayeh Vandghanooni |
author_sort |
Morteza Eskandani |
title |
Comet Assay: A Method to Evaluate Genotoxicity of Nano-Drug Delivery System |
title_short |
Comet Assay: A Method to Evaluate Genotoxicity of Nano-Drug Delivery System |
title_full |
Comet Assay: A Method to Evaluate Genotoxicity of Nano-Drug Delivery System |
title_fullStr |
Comet Assay: A Method to Evaluate Genotoxicity of Nano-Drug Delivery System |
title_full_unstemmed |
Comet Assay: A Method to Evaluate Genotoxicity of Nano-Drug Delivery System |
title_sort |
comet assay: a method to evaluate genotoxicity of nano-drug delivery system |
publisher |
Tabriz University of Medical Sciences |
series |
BioImpacts |
issn |
2228-5652 2228-5660 |
publishDate |
2011-08-01 |
description |
Introduction: Drug delivery systems could induce cellular toxicity as side effect of nanomaterials. The mechanism of toxicity usually involves DNA damage. The comet assay or single cell gel electrophoresis (SCGE) is a sensitive method for detecting strand damages in the DNA of a cell with applications in genotoxicity testing and molecular epidemiology as well as fundamental research in DNA damage and repair. Methods: In the current study, we reviewed recent drug delivery researches related to SCGE. Results: We found that one preference for choosing the assay is that comet images may result from apoptosis-mediated nuclear fragmentation. This method has been widely used over the last decade in several different areas. Overall cells, such as cultured cells are embedded in agarose on a microscope slide, lysed with detergent, and treated with high salt. Nucleoids are supercoiled DNA form. When the slide is faced to alkaline electrophoresis any breakages present in the DNA cause the supercoiling to relax locally and loops of DNA extend toward the anode as a ‘‘comet tail’’. Conclusion: This article provides a relatively comprehensive review upon potentiality of the comet assay for assessment of DNA damage and accordingly it can be used as an informative platform in genotoxicity studies of drug delivery systems. |
topic |
Nanoparticle Drug Delivery Genotoxicity Comet Assay Single Cell Gel Electrophoresis DNA |
url |
http://dx.doi.org/10.5681/bi.2011.012 |
work_keys_str_mv |
AT mortezaeskandani cometassayamethodtoevaluategenotoxicityofnanodrugdeliverysystem AT somayehvandghanooni cometassayamethodtoevaluategenotoxicityofnanodrugdeliverysystem |
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1725301771849433088 |