SHP002
CRISPR & MISSION® Lentiviral Packaging Mix
Synonym(e):
Lentiviral Packaging Mix
About This Item
Empfohlene Produkte
Konzentration
100 ng/μL (in Tris-EDTA)
Qualitätsniveau
Anwendung(en)
CRISPR
Versandbedingung
dry ice
Lagertemp.
−20°C
Allgemeine Beschreibung
Lentiviral particles are generated from three main components:
- The packaging vector, which contains the minimal set of lentiviral genes required to generate the virion structural proteins and packaging functions.
- The vesicular stomatitis virus G-protein envelope vector, which provides the heterologous envelope for pseudotyping and allows these lentiviral particles to efficiently deliver the transfer sequence of interest to a wide variety of cell types, including primary and non-dividing cells
- The lentiviral transfer vector, which contains the sequence of interest as well as the cis acting sequences necessary for packaging.
The Lentiviral Packaging Mix contains the first two components; it is designed to be co-transfected along with a compatible lentiviral transfer vector in order to create high-titer pseudo-typed lentiviral particles used for downstream transduction applications. This product is recommended for packaging Lenti CRISPR, Lenti ORF, and Lenti shRNA vectors.
Anwendung
Rechtliche Hinweise
Lagerklassenschlüssel
12 - Non Combustible Liquids
WGK
WGK 2
Flammpunkt (°F)
Not applicable
Flammpunkt (°C)
Not applicable
Analysenzertifikate (COA)
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Artikel
Our lentiviral vector systems are developed with enhanced safety features. Numerous precautions are in place in the design of our lentiviruses to prevent replication. Good handling practices are a must.
Successful targeting relies on optimizing key sensitive steps in the process, including lentiviral transduction. Below are some helpful handling and titration tips from our R&D lentiviral experts.
Protokolle
You are not alone designing successful CRISPR, RNAi, and ORF experiments. Sigma-Aldrich was the first company to commercially offer lentivirus versions of targeted genome modification technologies and has the expertise and commitment to support new generations of scientists.
FACS (Fluorescence-Activated Cell Sorting) provides a method for sorting a mixed population of cells into two or more groups, one cell at a time, based on the specific light scattering and fluorescence of each cell. This method provides fast, objective, and quantitative recording of fluorescent signals from individual cells.
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