| Field | Specification |
|---|---|
| Alternative names | LV-EF1a-tdTOMATO-IRES-Puro | LV-EF1α-tdTOMATO-IRES-Puro | LV-EF1A-tdTOMATO-Puro | EF1α-tdTOMATO-Puro Lentivirus | EF1A-tdTOMATO-Puro Lentivirus |
| Applications | |
| Purity | |
| Titer | |
| Promoter | |
| Reporter/Tag | |
| Expression regulation | |
| Selection marker | Puromycin |
| Biosafety level | |
| Storage buffer | |
| Catalog no. (Mfr.) | |
| Main SKU |
Vector Overview
LV-EF1a-tdTomato-IRES-Puro is a pre-made lentiviral vector that drives robust expression of tdTomato under the constitutive EF1a promoter, with simultaneous puromycin resistance mediated via an internal ribosome entry site (IRES) for efficient selection of transduced cells. tdTomato is a tandem dimeric (pseudo-monomeric) derivative of DsRed and is one of the brightest red fluorescent proteins available, exhibiting approximately six-fold greater brightness than EGFP. Due to the covalent linkage of its two subunits, tdTomato functions effectively as a monomer and is well-suited for both N- and C-terminal fusion applications. It demonstrates minimal aggregation, excellent photostability, and a rapid maturation half-time of approximately one hour at 37 °C. Its strong red fluorescence and high signal intensity make it particularly suitable for a wide range of in vitro and in vivo imaging applications.
Technical Details
| Catalog No. | SL100323 |
|---|---|
| Promoter | EF1a |
| Reporter / Tag | tdTomato |
| Expression Regulation | Constitutive |
| Selection Marker | Puromycin |
| Titer | >1E+9 TU/mL |
| Storage Buffer | PBS |
| Purity / Grade | In vivo grade and OK for both in vitro tissue culture infection and in vivo injection * Concentrated via PEG precipitation followed by ultra-centrifugation at 25000 rpm |
| Biosafety Level | BSL-2 |
| Sizes | 25 uL; 25 uL x 2 |
Applications
- Lentiviral Transduction: stable delivery of the cassette into dividing and non-dividing cells for long-term expression.
Biosafety
LV-EF1a-tdTOMATO-IRES-Puro is a pre-packaged lentiviral vector classified as BSL-2. Handle in a certified biosafety cabinet under institutional BSL-2 practices, decontaminate all contact surfaces and waste, and follow local regulations for viral vector work.
Safety & Handling
Store at -80°C; avoid repeated freeze-thaw cycles. Ships on dry ice. Supplied in PBS. For research use only; not for diagnostic or therapeutic use.
Can't find the lentiviral construct you need, or want to adjust key design elements? Contact us to discuss custom LV design and optional add-ons.
Common customization requests
- Insert / payload: replace the gene/sequence, swap to a different isoform, add mutations, or optimize cloning features.
- Expression design: change promoter (e.g., CMV/EF1α/PGK), add enhancers, or adjust regulatory elements.
- Reporters: add/swap GFP/RFP/mCherry/luciferase (single or dual reporters where applicable).
- Selection markers: add/swap puromycin/blasticidin/neomycin or fluorescent selection options.
- Vector format: switch between OE, shRNA, CRISPR (sgRNA/Cas systems), or control vectors (where supported).
Add-ons you can request
- Control viruses: empty vector, non-targeting shRNA, reporter-only controls, or matched backbone controls.
- Packaging / format: concentration options, aliquoting, or custom fill volume for screening workflows.
- Documentation: construct map/sequence confirmation package (as available) and batch documentation.
What to include in your request
- Target cell type/model (cell line or primary cells) and intended readout (reporter, knockdown, OE, etc.)
- Insert sequence (FASTA) or reference ID, plus any required tags/mutations
- Promoter, reporter, and selection marker preferences
- Desired scale and preferred format (aliquots / concentration requests)
Email us at support@biohippo.com or use the Talk to a Scientist request form.
Williams AL, Scorzo AV, Strawbridge RR, Davis SC, Niedre M (2024) Two-color diffuse in vivo flow cytometer. J Biomed Opt, 29(6), 065003. 10.1117/1.JBO.29.6.065003
Williams A, Niedre M (2023) Detection of Circulating Tumor Cells and Clusters Using a 2-Fluorophore Diffuse in Vivo Flow Cytometer. Biophotonics Congress: Optics in the Life Sciences, OM4E.4-OM4E.4. 10.1364/omp.2023.om4e.4