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Custom HD-CGH Microarray, 4x44K

Agilent Technologies

Agilent custom CGH and CGH+SNP microarrays are manufactured to order, using the same process as our catalog products. Our patented SurePrint technology generates oligonucleotides with high complexity and sequence fidelity. A simple Web interface, SureDesign, can be used to intuitively create custom CGH microarrays.

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Custom HD-CGH Microarray, 8x15K

Agilent Technologies

Agilent custom CGH and CGH+SNP microarrays are manufactured to order, using the same process as our catalog products. Our patented SurePrint technology generates oligonucleotides with high complexity and sequence fidelity. A simple Web interface, SureDesign, can be used to intuitively create custom CGH microarrays.

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Human Genome CGH Microarray 105A

Agilent Technologies

Human Genome CGH Microarray 105A is a dual-color HD array containing 60-mer high quality probes. The microarray is a non-targeted assay for genome-wide DNA copy number variation profiling without amplification or complexity reduction. It is designed with 22 Kb genome-wide median probe spacing and enhanced coverage on known genes (19Kb), promoters, miRNAs, PAR and telomeric regions.

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Human Genome CGH Microarray 244K

Agilent Technologies

Human Genome CGH Microarray 244K is a dual-color non targeted HD array containing 60-mer high quality probes. The microarray is a high-resolution tool for genome-wide DNA copy number variation profiling without amplification or complexity reduction. It is designed with 8.9 kb genome-wide median probe spacing and enhanced coverage on known genes, promoters, miRNAs, PAR and telomeric regions.  

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Human Genome CGH Microarray Kit, 4x44K

Agilent Technologies

Human Genome CGH Microarray 4x44K is a dual-color HD microarray containing 60-mer high-quality probes. The microarray is a nontargeted assay for genome-wide DNA copy number variation profiling without amplification or complexity reduction. It is designed with 43 KB genome-wide median probe spacing and enhanced coverage on known genes (24 KB), promoters, miRNAs, PAR, and telomeric regions.  

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Big Blue Lambda LIZ Shuttle Vector

Agilent Technologies

The Big Blue Lambda LIZ (LacI/Z) shuttle vector is the bacteriophage lambda vector used in the Big Blue transgenic rodent mutation assay. The utility of this vector is its ability to act as a target for mutations in vivo that can subsequently be shuttled to E.coli for analysis.  Ideal shuttle vector for any plaque assay  Suitable for standard CaPO4 transformations  Available to researchers for transfection of existing cel…

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InterPlay Adenoviral C-Terminal Vector

Agilent Technologies

InterPlay Adenoviral C-Terminal Vector, part of the InterPlay Adenoviral TAP System, combines Agilent’s unique tandem affinity purification system with our exclusive adenoviral gene delivery system for enhanced gene delivery to a broader range of mammalian cells, higher protein yields, and improved purification and analysis of endogenous interacting protein partners. 

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InterPlay Adenoviral N-Terminal TAP Vector

Agilent Technologies

InterPlay Adenoviral C-Terminal Vector, part of the InterPlay Adenoviral TAP System, combines Agilent’s unique tandem affinity purification system with our exclusive adenoviral gene delivery system for enhanced gene delivery to a broader range of mammalian cells, higher protein yields, and improved purification and analysis of endogenous interacting protein partners. 

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pBC KS(-) Phagemid

Agilent Technologies

The pBC vectors were derived from the pBluescript II phagemid. The ampicillin-resistance gene has been replaced with the chloramphenicol resistance gene. pBC phagemids (plasmids with a phage origin) are cloning vectors designed to simplify commonly used cloning and sequencing procedures, including the construction of nested deletions for DNA sequencing, generation of RNA transcripts in vitro and site-specific mutagenesis and g…

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pBC KS(+) Phagemid

Agilent Technologies

The pBC vectors were derived from the pBluescript II phagemid. The ampicillin-resistance gene has been replaced with the chloramphenicol resistance gene. pBC phagemids (plasmids with a phage origin) are cloning vectors designed to simplify commonly used cloning and sequencing procedures, including the construction of nested deletions for DNA sequencing, generation of RNA transcripts in vitro and site-specific mutagenesis and g…

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pBC SK(-) Phagemid

Agilent Technologies

The pBC vectors were derived from the pBluescript II phagemid. The ampicillin-resistance gene has been replaced with the chloramphenicol resistance gene. pBC phagemids (plasmids with a phage origin) are cloning vectors designed to simplify commonly used cloning and sequencing procedures, including the construction of nested deletions for DNA sequencing, generation of RNA transcripts in vitro and site-specific mutagenesis and g…

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pBC SK(+) Phagemid

Agilent Technologies

The pBC vectors were derived from the pBluescript II phagemid. The ampicillin-resistance gene has been replaced with the chloramphenicol resistance gene. pBC phagemids (plasmids with a phage origin) are cloning vectors designed to simplify commonly used cloning and sequencing procedures, including the construction of nested deletions for DNA sequencing, generation of RNA transcripts in vitro and site-specific mutagenesis and g…

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Vitality phrGFP Promoterless Vector

Agilent Technologies

The hrGFP and hrGFP II family of vectors allow for expressed genes to be easily visualized using fluorescence microscopy or fluorescence-activated cell sorting (FACS).  Subcellular localization vectors  HA or FLAG® fusions along with hrGFP from the same mRNA transcript  Promoterless vector for promoter and promoter/enhancer studies  Retroviral supernatant and vector with hrGFP construct  High-level green fluorescence…

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