Reporter genes are attached to a regulatory sequence of a gene of interest. When expressed by the host organism, they generate measurable, easily identifiable characteristics that can be used as an indication of whether a gene has been taken up or expressed.
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Combines the advantages of traditional RNAi vectors (stable expression and the ability to use viral delivery) with capabilities for tissue-specific expression and multiple target knockdown from the same transcript
Combines Invitrogen's BLOCK-iT Pol II miR RNAi and ViraPower™ Lentiviral technologies to facilitate creation of a replication-incompetent lentivirus that delivers a microRNA (miRNA) sequence of interest to dividing or non-dividing mammalian cells for RNA interference (RNAi) analysis
The pLenti6/BLOCK-iT-DEST expression vector provided in the BLOCK-iT Lentiviral RNAi Expression System can be used to efficiently introduce and stably express short hairpin RNA (shRNA) in vivo from a lentiviral vector
Provides a pLenti6/BLOCK-iT-DEST expression vector to efficiently introduce and stably express short hairpin RNA (shRNA) in vivo from a lentiviral vector
The CytoTune™ EmGFP Sendai Fluorescence Reporter helps you determine whether the Sendai particles that are used in all CytoTune™-iPS Sendai reprogramming kits can transduce into a given cell type before you advance to one of these kits.
Rapid, ultrasensitive detection of β-galactosidase in reporter gene assays. Thermo Scientific Galacto-Light Plus β-Galactosidase Reporter Gene Assay System is designed for luminometers without injectors.
The Galacto-Star™ One-Step β-Galactosidase Reporter Gene Assay System chemiluminescent reporter gene assay system enables rapid, sensitive detection of β-galactosidase in mammalian cell lysates. SensitiveThe chemiluminescent assay exhibits over three o
Combines Invitrogen's BLOCK-iT Pol II miR RNAi and ViraPower™ Lentiviral technologies to facilitate creation of a replication-incompetent lentivirus that delivers a microRNA (miRNA) sequence of interest to dividing or non-dividing mammalian cells for RNA interference (RNAi) analysis