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Fam dye labeled probes

Manufactured by Thermo Fisher Scientific

FAM dye labeled probes are fluorescent oligonucleotides used in quantitative PCR (qPCR) and other nucleic acid detection applications. The FAM dye, which emits green fluorescence, is covalently attached to the probe sequence, allowing for the detection and quantification of target DNA or RNA molecules.

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2 protocols using fam dye labeled probes

1

Gene Expression Analysis by qPCR

Check if the same lab product or an alternative is used in the 5 most similar protocols
Total RNA was extracted using a RNeasy kit (QIAGEN) and reverse-transcription was done using the High Capacity RNA-to-cDNA kit (Thermo Fisher). Real-time quantitative PCR was done on a QuantStudio 6 Flex (Thermo Fisher) using TaqMan PCR (Applied Biosciences). FAM dye labeled probes (Thermo Fisher) were used against KRAS, CHEK1, MYC, and RIF1 and a VIC dye labeled probe was against ACTB, as a house-keeping control. Delta-delta CT was calculated for each sample. All samples were run as technical duplicates which were then standardized to their respective NS or vehicle treated controls. Means and standard deviations were calculated from the standardized values of three to four biological replicates.
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2

Gene Expression Analysis by qPCR

Check if the same lab product or an alternative is used in the 5 most similar protocols
Total RNA was extracted using a RNeasy kit (QIAGEN) and reverse-transcription was done using the High Capacity RNA-to-cDNA kit (Thermo Fisher). Real-time quantitative PCR was done on a QuantStudio 6 Flex (Thermo Fisher) using TaqMan PCR (Applied Biosciences). FAM dye labeled probes (Thermo Fisher) were used against KRAS, CHEK1, MYC, and RIF1 and a VIC dye labeled probe was against ACTB, as a house-keeping control. Delta-delta CT was calculated for each sample. All samples were run as technical duplicates which were then standardized to their respective NS or vehicle treated controls. Means and standard deviations were calculated from the standardized values of three to four biological replicates.
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