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104 results for Nukleotidy | Avantor

Nukleotidy

Reagencie nukleových kyselin tvoří základ genetické analýzy a molekulární biologie, hrají klíčovou roli od klonování po studium genové exprese. Prozkoumejte naši kolekci obsahující vysoce věrné enzymy pro end-point PCR, pokročilé reagencie pro izotermální amplifikaci a komplexní sady pro purifikaci nukleových kyselin. Pro přesnost v kvantitativních testech objevte náš výběr qPCR a RT-qPCR sad, navržených pro bezkonkurenční přesnost. Naše portfolio zahrnuje také reagencie pro sekvenování nové generace, nabízející špičková řešení pro genomové sekvenování a pokrok v personalizované medicíně.

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TriLink® N7-Methyl-3'-O-Methyl-Guanosine-5'-Triphosphate-5'-Guanosine

TriLink® N7-Methyl-3'-O-Methyl-Guanosine-5'-Triphosphate-5'-Guanosine

Supplier: TriLink BioTechnologies

TriLink® N7-Methyl-3'-O-Methyl-Guanosine-5'-Triphosphate-5'-Guanosine

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Digoxigenin-UTP, alkali-stable

Supplier: Enzo Life Sciences

Digoxigenin-labeled nucleotide suitable for non-radioactive labeling of RNA probes.

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Fluorescein-12-ddUTP dideoxynucleotide pack for 3’-oligonucleotide labeling

Supplier: Enzo Life Sciences

The procedure for labeling of DNA probes with a polynucleotide 'tail' containing hapten-labeled nucleotides was developed by Enzo. In such terminal labeling reactions, terminal transferase catalyzes the addition of nucleotides to any 3'-OH terminus in a template independent manner. This rapid and convenient nonradioactive labeling procedure is free of any sequence bias that is normally observed in random priming or nick translation reactions.

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Cyanine 5-UTP (enhanced)

Cyanine 5-UTP (enhanced)

Supplier: Enzo Life Sciences

Cyanine 5-UTP (Enhanced) can replace UTP as a substrate for T7 RNA polymerase in labeling systems that generate labeled probes through in vitro transcription. Probes generated by these methods are suitable for multicolor fluorescence analysis, specifically dual-color expression arrays in conjunction with cyanine 3-UTP.

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TriLink® Guanosine-5'-Triphosphate

TriLink® Guanosine-5'-Triphosphate

Supplier: TriLink BioTechnologies

This nucleotide consists of an unmodified base, a ribose, and a 5′ triphosphate group for synthesis of RNA molecules.

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TriLink® Sulf Cyanine5 Aminoallyluridine-5'-Triphosphate

TriLink® Sulf Cyanine5 Aminoallyluridine-5'-Triphosphate

Supplier: TriLink BioTechnologies

Cyanine 5-Aminoallyluridine-5'-Triphosphate is a substrate for T7 RNA polymerase, allowing the incorporation of cyanine 5 into RNA and mRNA during in vitro transcription. Cyanine 5 incorporation allows for fluorescent detection of RNA and mRNA independent of protein translation.

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TriLink® 2'-Fluoro-2'-deoxycytidine-5'-Triphosphate

TriLink® 2'-Fluoro-2'-deoxycytidine-5'-Triphosphate

Supplier: TriLink BioTechnologies

2'-Fluoro NTPs are being utilised in an increasing number of applications in research and new drug development. 2'-Fluoro-dCTP is incorporated in both DNA and RNA constructs to improve in vivo stability.

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TriLink® 2'-Deoxythymidine-5'-Triphosphate

TriLink® 2'-Deoxythymidine-5'-Triphosphate

Supplier: TriLink BioTechnologies

This nucleotide consists of an unmodified base, a deoxyribose, and a 5′ triphosphate group for synthesis of DNA molecules.

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dNTP mix

dNTP mix

Supplier: Biotium

Highly purified mix of dNTPs (>99% by HPLC) in 0,6 mM Tris-HCl (pH 7,5); each dNTP is at a concentration of 10 or 25 mm in the solution provided.

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TriLink® 5-Propargylamino-2'-deoxyuridine-5'-Triphosphate

TriLink® 5-Propargylamino-2'-deoxyuridine-5'-Triphosphate

Supplier: TriLink BioTechnologies

5-Propargylamino-2'-deoxyuridine can be enzymatically incorporated into DNA and cDNA to introduce primary amine groups. Primary amines can be labeled with NHS ester fluors and haptens for detection and immobilisation of the resulting DNA strand.

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TriLink® 2'-O-Methyl-N6-Methyladenosine-5'-Triphosphate

TriLink® 2'-O-Methyl-N6-Methyladenosine-5'-Triphosphate

Supplier: TriLink BioTechnologies

TriLink® 2'-O-Methyl-N6-Methyladenosine-5'-Triphosphate

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Bio-17-ATP

Bio-17-ATP

Supplier: Enzo Life Sciences

Bio-17-ATP (Biotin-17-adenosine-5’-triphosphate) can replace ATP for in vitro transcription reaction catalysed by T3, T7 or SP6 RNA polymerases.

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TriLink® 2'-Deoxyadenosine-5'-O-(1-Thiotriphosphate)

TriLink® 2'-Deoxyadenosine-5'-O-(1-Thiotriphosphate)

Supplier: TriLink BioTechnologies

TriLink® 2'-Deoxyadenosine-5'-O-(1-Thiotriphosphate)

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TriLink® 7-Deaza-7-Propargylamino-2'-deoxyguanosine-5'-Triphosphate

TriLink® 7-Deaza-7-Propargylamino-2'-deoxyguanosine-5'-Triphosphate

Supplier: TriLink BioTechnologies

TriLink® 7-Deaza-7-Propargylamino-2'-deoxyguanosine-5'-Triphosphate

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TriLink® 2'-Deoxycytidine-5'-O-(1-Thiotriphosphate)

TriLink® 2'-Deoxycytidine-5'-O-(1-Thiotriphosphate)

Supplier: TriLink BioTechnologies

TriLink® 2'-Deoxycytidine-5'-O-(1-Thiotriphosphate)

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TriLink® 2',3'-Dideoxyadenosine-5'-O-(1-Thiotriphosphate)

TriLink® 2',3'-Dideoxyadenosine-5'-O-(1-Thiotriphosphate)

Supplier: TriLink BioTechnologies

2',3'-Dideoxyadenosine-5'-O-(1-Thiotriphosphate) is a sugar modified nucleoside triphosphate where the 2' and 3' hydroxyl groups are absent, resulting in chain termination. This ddATP analog also contains a 1-Thiotriphosphate which results in a nuclease resistant phosphorothioate linkage. The inability of polymerases to extend from a dideoxy nucleotide causes chain termination and is useful in antiviral research and in a variety of biotechnology applications.

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