Oligonucleotides
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Filtered Search Results
Applied Biosystems™ Random Hexamers (50 μM)
Random Hexamers are short oligodeoxyribonucleotides of random sequence [d(N)6] that anneal to random complementary sites on a target DNA or RNA to serve as primers for DNA synthesis by a DNA polymerase or reverse transcriptase.
Non-distribution item offered as a customer accommodation; additional freight charges may apply.
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Thermo Scientific™ Random Hexamer Primer
Thermo Scientific Random Hexamer Primer is a mixture of single-stranded random hexanucleotides with 5'- and 3'-hydroxyl ends.
Invitrogen™ Oligo (dT) Primer (50 μM)
These are the same Invitrogen primers that are currently included in the SuperScript IV Kit (Cat. No. 18091050).
Non-distribution item offered as a customer accommodation; additional freight charges may apply.
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Thermo Scientific™ Oligo(dT)18 Primer
Thermo Scientific Oligo(dT)18 Primer is a synthetic single-stranded 18-mer oligonucleotide with 5'- and 3'-hydroxyl ends.
| Shipping Condition | Dry Ice |
|---|---|
| Primer Length | 18-mer |
| Form | Liquid |
| Product Type | Primer |
| Primer | Oligo dT |
| Concentration | 0.5 μg/μL |
| For Use With (Application) | cDNA Synthesis |
Invitrogen™ Anchored Oligo(dT)20 Primer
Anchored Oligo(dT)20 Primer is a primer mixture consisting of a string of 20 deoxythymidylic acid residues followed by dV (dG, dA, or dC) and then by dN (dA, dT, dG, or dC).
Non-distribution item offered as a customer accommodation; additional freight charges may apply.
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Thermo Scientific™ M13/pUC Reverse Sequencing Primer (-46), 24-mer
Thermo Scientific M13/pUC Reverse Sequencing Primer (-46), 24-mer is a synthetic single-stranded 24-mer oligonucleotide with free 5'- and 3'-hydroxyl ends.
Applied Biosystems™ M13 Human, Forward Primer, Desalted
M13 Human, Forward Primer, Desalted
Non-distribution item offered as a customer accommodation; additional freight charges may apply.
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Invitrogen™ Template Switching Reverse Transcription Oligonucleotides
Use this set of oligonucleotides for template switching cDNA synthesis and preamplification. Template Switching Oligonucleotide and Capturing Oligo (dT) are used to incorporate adaptor sequences to full-length cDNA. Preamplification primer enables PCR amplification of obtained cDNA.
Non-distribution item offered as a customer accommodation; additional freight charges may apply.
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| Color | Colorless |
|---|---|
| Label or Dye | No |
| Quantity | 48 Reactions |
Thermo Scientific™ M13/pUC Sequencing Primer (-40), 17-mer
Thermo Scientific M13/pUC Sequencing Primer (-40), 17-mer is a synthetic single-stranded 17-mer oligonucleotide with free 5'- and 3'-hydroxyl ends.
Applied Biosystems™ Oligo d(T)16 (50 μM)
Invitrogen Oligo(dT)16 Primer is a homo-oligomeric deoxyribonucleotide poly(dT) that is non-phosphorylated and chemically synthesized.
Non-distribution item offered as a customer accommodation; additional freight charges may apply.
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Invitrogen™ Bio-11-UTP (10 mM)
Ambion Bio-11-UTP 10 mM (Biotinylated UTP) is intended for use as substrate in in vitro transcription reactions.
Non-distribution item offered as a customer accommodation; additional freight charges may apply.
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Invitrogen™ Bio-16-UTP (10 mM)
Ambion Bio-16-UTP 10 mM (Biotinylated UTP) is intended for use as substrate in in vitro transcription reactions.
Non-distribution item offered as a customer accommodation; additional freight charges may apply.
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Invitrogen™ M13 Reverse Primer
Oligonucleotides complementary to a DNA template are necessary to prime DNA synthesis for sequencing reactions.
Non-distribution item offered as a customer accommodation; additional freight charges may apply.
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Invitrogen™ T7 Promoter Primer
Thermo Fisher Scientific offers primers for PCR amplification that complement many of the vectors currently available.
Non-distribution item offered as a customer accommodation; additional freight charges may apply.
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Thermo Scientific™ Exo-Resistant Random Primer
Thermo Scientific Exonuclease-Resistant Random Primer is a mixture of single-stranded random oligonucleotides used for highly efficient random priming of various DNA synthesis reactions.