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Takara Lenti-X Packaging Single Shots (VSV-g) \16 Rxns
Lenti-X Packaging Single Shots (VSV-g) provide an extremely simple and consistent one-step method for producing high-titer lentivirus. No additional transfection reagent is needed because Lenti-X Packaging Single Shots (VSV-g) consist of pre-aliquoted, lyophilized, single tubes of XfectTransfection Reagent premixed with an optimized formulation of VSV-g pseudotyped Lenti-X lentiviral packaging plasmids. High-titer virus is produced by simply reconstituting this mixture with your lentiviral vector of choice in sterile water and adding it to 293T cells, e.g., Lenti-X 293T Cells (Cat. # 632180), in a 10 cm dish.
Consistent, high-efficiency transfections lead to high titers.A lentiviral vector containing the ZsGreen1 gene was packaged according to the Lenti-X single shots protocol in four independent experiments. Briefly, 7 µg of pLVX-ZsGreen1 plasmid was added to each of four Lenti-X single shots; the tubes were vortexed for 20 sec and incubated at room temperature for 10 min. Then, the mixture was added to cultured Lenti-X 293T cells that were approximately 80% confluent. 48 hours after transfection, the cells were imaged by fluorescence microscopy (Panel A, top) and light microscopy (Panel A, bottom). After images were taken, the supernatant was harvested and used infect HT1080 cells for titer determination (Panel B, IFU/mL).
High-titer virus was produced regardless of the lentiviral vector backbone with Lenti-X packaging single shots.A CMV ZsGreen1 expression cassette was cloned into several lentiviral vector backbones. These vectors were then packaged into lentivirus using the Lenti-X packaging single shots following the provided protocol. Briefly, 7 µg of pLVX-ZsGreen1 plasmid was added to each of four Lenti-X single shots, and the tubes were vortexed for 20 sec and incubated at room temperature for 10 min. Then, the mixture was added to cultured Lenti-X 293T cells that were approximately 80% confluent. After 48 hours, titer was determined using several methods. To determine infectivity, the supernatant was harvested and used to infect HT1080 cells (Flow Cytometry). Harvested viral supernatants were also analyzed by RT-PCR to quantify viral genome copies (qRT-PCR, Lenti-X qRT-PCR Titration Kit), ELISA to measure p24 (p24 ELISA, Lenti-X p24 Rapid Titer Kit), and by a rapid lentiviral detection method (Lenti-X GoStix).
A comparison of fourth- and third-generation lentiviral packaging systems .Our Lenti-X Packaging single shots utilize a packaging system that consists of five separate components (Panel A), mixed in proprietary proportions for optimized packaging activity. The separation of thegag,pol, andenvgenes effectively reduces the incidence of RCL (Wuet Al., 2000). High levels of expression of essential viral components are driven by the Tet-Off and Tat transactivators, which induce a cascade of expression that results in high titers of lentivirus. Thepolgene is fused tovprto ensure transport of the reverse transcriptase/integrase protein into the recombinant lentiviral particle. Not all vector elements are shown. Other 3rd generation lentiviral packaging systems (Panel B) generate lower titers, DO not contain separategagandpolsequences, and DO not use a transactivation cascade mechanism.
| SKU | TAKBGN-631275 |
|---|---|
| Supplier Part Number | 631275 |
| UM | EA |
| UNSPSC | 41106614 |
| Manufacturer | Takara Bio |
| MSDS URL | Click here |
| Temperature | -20C |
| CountryOfOrigin | United States |
| ProductLine | TAKBGN |
| Qty | 1 |
| MinOrderQty | 1 |
| Weight | 7.000000 |
| Lead Time | 5 |
| Hazardous | N |
| Energy Star | No |
| Green | No |
| Controlled | N |