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Measuring DNA modifications with the comet assay: a compendium of protocols.


ABSTRACT: The comet assay is a versatile method to detect nuclear DNA damage in individual eukaryotic cells, from yeast to human. The types of damage detected encompass DNA strand breaks and alkali-labile sites (e.g., apurinic/apyrimidinic sites), alkylated and oxidized nucleobases, DNA-DNA crosslinks, UV-induced cyclobutane pyrimidine dimers and some chemically induced DNA adducts. Depending on the specimen type, there are important modifications to the comet assay protocol to avoid the formation of additional DNA damage during the processing of samples and to ensure sufficient sensitivity to detect differences in damage levels between sample groups. Various applications of the comet assay have been validated by research groups in academia, industry and regulatory agencies, and its strengths are highlighted by the adoption of the comet assay as an in vivo test for genotoxicity in animal organs by the Organisation for Economic Co-operation and Development. The present document includes a series of consensus protocols that describe the application of the comet assay to a wide variety of cell types, species and types of DNA damage, thereby demonstrating its versatility.

SUBMITTER: Collins A 

PROVIDER: S-EPMC10281087 | biostudies-literature | 2023 Mar

REPOSITORIES: biostudies-literature

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Measuring DNA modifications with the comet assay: a compendium of protocols.

Collins Andrew A   Møller Peter P   Gajski Goran G   Vodenková Soňa S   Abdulwahed Abdulhadi A   Anderson Diana D   Bankoglu Ezgi Eyluel EE   Bonassi Stefano S   Boutet-Robinet Elisa E   Brunborg Gunnar G   Chao Christy C   Cooke Marcus S MS   Costa Carla C   Costa Solange S   Dhawan Alok A   de Lapuente Joaquin J   Bo' Cristian Del CD   Dubus Julien J   Dusinska Maria M   Duthie Susan J SJ   Yamani Naouale El NE   Engelward Bevin B   Gaivão Isabel I   Giovannelli Lisa L   Godschalk Roger R   Guilherme Sofia S   Gutzkow Kristine B KB   Habas Khaled K   Hernández Alba A   Herrero Oscar O   Isidori Marina M   Jha Awadhesh N AN   Knasmüller Siegfried S   Kooter Ingeborg M IM   Koppen Gudrun G   Kruszewski Marcin M   Ladeira Carina C   Laffon Blanca B   Larramendy Marcelo M   Hégarat Ludovic Le LL   Lewies Angélique A   Lewinska Anna A   Liwszyc Guillermo E GE   de Cerain Adela López AL   Manjanatha Mugimane M   Marcos Ricard R   Milić Mirta M   de Andrade Vanessa Moraes VM   Moretti Massimo M   Muruzabal Damian D   Novak Matjaž M   Oliveira Rui R   Olsen Ann-Karin AK   Owiti Norah N   Pacheco Mário M   Pandey Alok K AK   Pfuhler Stefan S   Pourrut Bertrand B   Reisinger Kerstin K   Rojas Emilio E   Rundén-Pran Elise E   Sanz-Serrano Julen J   Shaposhnikov Sergey S   Sipinen Ville V   Smeets Karen K   Stopper Helga H   Teixeira João Paulo JP   Valdiglesias Vanessa V   Valverde Mahara M   van Acker Frederique F   van Schooten Frederik-Jan FJ   Vasquez Marie M   Wentzel Johannes F JF   Wnuk Maciej M   Wouters Annelies A   Žegura Bojana B   Zikmund Tomas T   Langie Sabine A S SAS   Azqueta Amaya A  

Nature protocols 20230127 3


The comet assay is a versatile method to detect nuclear DNA damage in individual eukaryotic cells, from yeast to human. The types of damage detected encompass DNA strand breaks and alkali-labile sites (e.g., apurinic/apyrimidinic sites), alkylated and oxidized nucleobases, DNA-DNA crosslinks, UV-induced cyclobutane pyrimidine dimers and some chemically induced DNA adducts. Depending on the specimen type, there are important modifications to the comet assay protocol to avoid the formation of addi  ...[more]

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