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Microfluidic-aided genotyping of zebrafish in the first 48 h with 100% viability.


ABSTRACT: This paper introduces an innovative method for genotyping 1-2 days old zebrafish embryos, without sacrificing the life/health of the embryos. The method utilizes microfluidic technology to extract and collect a small amount of genetic material from the chorionic fluid or fin tissue of the embryo. Then, using conventional DNA extraction, PCR amplification, and high resolution melt analysis with fluorescent DNA detection techniques, the embryo is genotyped. The chorionic fluid approach was successful 78% of the time while the fin clipping method was successful 100% of the time. Chorionic fluid was shown to only contain DNA from the embryo and not from the mother. These results suggest a novel method to genotype zebrafish embryos that can facilitate high-throughput screening, while maintaining 100% viability of the embryo.

SUBMITTER: Samuel R 

PROVIDER: S-EPMC4615577 | biostudies-literature | 2015 Apr

REPOSITORIES: biostudies-literature

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Microfluidic-aided genotyping of zebrafish in the first 48 h with 100% viability.

Samuel Raheel R   Stephenson Regan R   Roy Paula P   Pryor Rob R   Zhou Luming L   Bonkowsky Joshua L JL   Gale Bruce K BK  

Biomedical microdevices 20150401 2


This paper introduces an innovative method for genotyping 1-2 days old zebrafish embryos, without sacrificing the life/health of the embryos. The method utilizes microfluidic technology to extract and collect a small amount of genetic material from the chorionic fluid or fin tissue of the embryo. Then, using conventional DNA extraction, PCR amplification, and high resolution melt analysis with fluorescent DNA detection techniques, the embryo is genotyped. The chorionic fluid approach was success  ...[more]

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