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ThermoScientific
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Amidites for fluorescent labeling - DyLight* Phosphoramidites

Thermo Scientific* DyLight Fluorescent Labeled Phosphoramidites feature absorption and emission spectra suitable for a broad range of applications and can be used in research applications without the constraints of licensing and royalty fees.
 
 
 
 
 
  • Introduce a fluorescent tag at the 5'-position of an oligonucleotide
  • Easily incorporated into the oligo using standard synthesis and deprotection procedures
Process and Supply Chain Control:

  • A controlled raw material supply chain and established vendor partnerships ensure consistency and security of supply
  • Processes are strictly controlled and monitored from material procurement through final QC and product release under ISO9001 standards, providing batch-to-batch reproducibility
  • All phosphoramidites are supplied with lot-specific quality control data
DY547, DY647 and DY677:

  • DyLight DY547, DY647 and DY677 phosphoramidites have absorbance and emission spectra comparable to Cy*3, Cy5 and Cy 5.5 respectively
  • DyLight labeled oligonucleotides are stable from pH 3-9 and have photostability comparable to or exceeding oligos labeled with Cy dyes
  • Payment of licensing fees is not required for use of DyLight dyes in research applications

FAM-6 and Fluorescein:

  • FAM-6 and fluorescein labeled oligonucleotides are used in sequencing and PCR applications
  • These phosphoramidites may be used on all automated DNA synthesizers using standard synthesis procedures
  • FAM-6 is further purified to remove the 5-isomer and leaves ≥95% of the 6-isomer; the higher purity of the single isomer is ideal in applications requiring higher sensitivity

Flexible Packaging:

  • Common pack sizes fit most commercially available synthesizers and are in stock for immediate delivery
  • Custom and bulk packaging, including multikilogram lots, are available

Compatible with: Use of these products with Thermo Scientific Fast Deprotection Phosphoramidites during synthesis is recommended to allow for mild deprotection protocols and minimize fluorescent label degradation.

 
 
 
 
 
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