Vitality pFB-hrGFP Retroviral Vector
Agilent TechnologiesThe ViraPort retroviral gene expression system is a comprehensive line of gene delivery products providing transduction efficiencies approaching 100% in a wide range of mitotic cells.
Molecular cloning is a set of techniques that utilizes vectors to transfer recombinant DNA into host cells and is an essential tool for investigating the expression of genes and proteins in bacterial or mammalian cells. A variety of vectors optimized for gene cloning and expression in a range of host organisms are available, alongside competent cells for genetic replication. Here, you can explore a range of molecular tools, high-quality genomic and cDNA libraries, premade clones, transformation and transfection reagents and mutagenesis or gene expression detection assays and expression arrays. Find the best gene expression and molecular cloning products in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.
The ViraPort retroviral gene expression system is a comprehensive line of gene delivery products providing transduction efficiencies approaching 100% in a wide range of mitotic cells.
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…
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…
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…
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…
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…
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…
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…
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…
The Vitality hrGFP (humanized, Renilla reniformis green fluorescent protein) products are optimal for mammalian expression protein studies that examine gene expression, transfection efficiency, and protein localization. Since hrGFP is derived from a different organism than EGFP, the hrGFP antibody does not cross react with the Aequorea victoria GFP variant-derived EGFP.