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680 results for Činidla pro nukleové kyseliny

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Činidla pro nukleové kyseliny

Nucleic acid reagents form the foundation of genetic analysis and molecular biology, playing a pivotal role from cloning to gene expression studies. Delve into our collection featuring high-fidelity enzymes for end-point PCR, advanced reagents for isothermal amplification, and comprehensive kits for nucleic acid purification. For precision in quantitative assays, explore our selection of qPCR and RT-qPCR kits, primed for unparalleled accuracy. Our portfolio also includes next-generation sequencing reagents, offering cutting-edge solutions for genomic sequencing and personalized medicine advancements.

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dNTP

dNTP

Supplier: VWR Chemicals

dNTP mixy a dNTP sady v kvalitě pro molekulární biologii vhodné k okamžitému použití. dNTP mix je připraven pro úsporu času stráveného manuálním zpracováváním a redukuje pravděpodobnost kontaminace omezením pipetování. Roztoky dNTP jsou též dostupné v sadách po čtyřech jednotlivých 100 mm dNTP. Oboje jsou vhodné pro použití pro PCR, značení DNA a sekvenační procesy.

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Peqlab peqGOLD, Deoxynucleotide Triphosphate (Solution)

Peqlab peqGOLD, Deoxynucleotide Triphosphate (Solution)

Supplier: VWR Peqlab

Individually packaged deoxynucleotide triphosphates manufactured to the highest quality levels.

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VWR®, dTTP solution

VWR®, dTTP solution

Supplier: VWR Chemicals

Deoxyribonucleotides are the foundation of DNA and it takes thousands of these nucleotides to make up DNA.

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Fragment selection kits, Axygen® AxyPrep™ FragmentSelect-I Kit

Fragment selection kits, Axygen® AxyPrep™ FragmentSelect-I Kit

Supplier: Corning

The AxyPrep™ FragmentSelect Kits utilise a paramagnetic bead technology for quick high throughput optimised DNA size selection suitable for various next generation sequencing platforms. The AxyPrep™ FragmentSelect-I kit is optimised for Illumina next generation sequencing platforms and Life Technologies (SOLiD™) fragment size selection needs simplifying the library construction workflow.

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TriLink® N1-Methyl-Pseudouridine-5'-Triphosphate

TriLink® N1-Methyl-Pseudouridine-5'-Triphosphate

Supplier: TriLink BioTechnologies

N1-Methyl-Pseudouridine-5'-Triphosphate is widely used in mRNA synthesis for therapeutic and vaccine development to improve mRNA functionality. This nucleotide consists of a modified base, a ribose, and a 5′ triphosphate group.

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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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SLK Human siRNA Oligo Duplex (Locus ID 9748)

Supplier: OriGene

This SLK Human siRNA Oligo Duplex mediates apoptosis and actin stress fiber dissolution.

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

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

Supplier: TriLink BioTechnologies

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

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

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

Supplier: TriLink BioTechnologies

This deoxyguanosine analog lacks the N7 nitrogen found in the natural guanine nucleobase. Replacement of this nitrogen atom with a carbon atom results in diminished structure of the major groove in DNA and may disrupt base stacking, but does not interfere with Watson-Crick base pairing. This is desirable for applications such as amplification and sequencing of GC-rich nucleic acid sequences.

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TriLink® N6-Methyladenosine-5'-Triphosphate

TriLink® N6-Methyladenosine-5'-Triphosphate

Supplier: TriLink BioTechnologies

N6-methyl adenosine (N6-methyl ATP) is a base modified analog of adenosine and is found as a minor nucleoside in natural RNAs (Meyer et al.). N6-methyl ATP can substitute for ATP in some biological systems, and is a potent agonist for P2Y-purinoceptors in the guinea pig, taenia coli (Burnstock et al.).

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

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

Supplier: TriLink BioTechnologies

2',3'-Dideoxyguanosine-5'-O-(1-Thiotriphosphate) is a sugar modified nucleoside triphosphate where the 2' and 3' hydroxyl groups are absent, resulting in chain termination. This ddGTP 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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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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TriLink® 2',3'-Dideoxythymidine-5'-O-(1-Thiotriphosphate)

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

Supplier: TriLink BioTechnologies

2',3'-Dideoxythymidine-5'-O-(1-Thiotriphosphate) is a sugar modified nucleoside triphosphate where the 2' and 3' hydroxyl groups are absent, resulting in chain termination. This ddTTP 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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TriLink® Uridine-5'-Triphosphate

TriLink® Uridine-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® N1-Propylpseudouridine-5'-Triphosphate

TriLink® N1-Propylpseudouridine-5'-Triphosphate

Supplier: TriLink BioTechnologies

TriLink® N1-Propylpseudouridine-5'-Triphosphate

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

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

Supplier: TriLink BioTechnologies

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

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

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

Supplier: TriLink BioTechnologies

2',3'-Dideoxycytidine-5'-O-(1-Thiotriphosphate) is a sugar modified nucleoside triphosphate where the 2' and 3' hydroxyl groups are absent, resulting in chain termination. This ddCTP 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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TriLink® Pseudouridine-5'-Triphosphate

TriLink® Pseudouridine-5'-Triphosphate

Supplier: TriLink BioTechnologies

This nucleotide consists of a modified base, a ribose, and a 5′ triphosphate group.

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

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

Supplier: TriLink BioTechnologies

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

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TriLink® 2'-Deoxy-P-nucleoside-5'-Triphosphate

TriLink® 2'-Deoxy-P-nucleoside-5'-Triphosphate

Supplier: TriLink BioTechnologies

2'-Deoxy-P-nucleoside is a degenerate base which behaves as a universal pyrimidine and therefore base pairs with both adenine and guanine. This feature makes it a powerful tool in mutagenesis studies.

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TriLink® 2'-O-Methylcytidine-5'-Triphosphate

TriLink® 2'-O-Methylcytidine-5'-Triphosphate

Supplier: TriLink BioTechnologies

TriLink® 2'-O-Methylcytidine-5'-Triphosphate

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Bio-16-UTP

Bio-16-UTP

Supplier: ENZO LIFE SCIENCES

Bio-16-UTP (Biotin-16-uridine-5’-triphosphate) can replace UTP for in vitro transcription reaction catalysed by T3, T7 or SP6 RNA polymerases.

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Bio-11-CTP

Bio-11-CTP

Supplier: ENZO LIFE SCIENCES

Bio-11-CTP (Biotin-11-cytidine-5’-triphosphate) can replace CTP for in vitro transcription reaction catalysed by T3, T7 or SP6 RNA polymerases.

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TriLink® Adenosine-5'-Triphosphate

TriLink® Adenosine-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® 5-Methoxyuridine-5'-Triphosphate

TriLink® 5-Methoxyuridine-5'-Triphosphate

Supplier: TriLink BioTechnologies

This nucleotide consists of a modified base, a ribose, and a 5′ triphosphate group.

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TriLink® Cytidine-5'-Triphosphate

TriLink® Cytidine-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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Digoxigenin-dUTP, alkali-stable

Digoxigenin-dUTP, alkali-stable

Supplier: ENZO LIFE SCIENCES

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

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TriLink® Cytidine-5'-O-(1-Thiotriphosphate)

TriLink® Cytidine-5'-O-(1-Thiotriphosphate)

Supplier: TriLink BioTechnologies

TriLink® Cytidine-5'-O-(1-Thiotriphosphate)

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