| Field | Specification |
|---|---|
| Storage | |
| Catalog no. (Mfr.) | |
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Product Overview
GenJet™ In Vitro DNA Transfection Reagent (Ver. II) upgrades the original GenJet™ In Vitro DNA Transfection Reagent through a reformulated chemistry. That chemistry liberates DNA-condensing groups at 100%, where the earlier version reached 80%, and transfection efficiency climbs 3–4 fold as a result, with cell viability left intact.
Coverage per 1.0 mL vial of GenJet™ (Ver. II) Reagent runs to about 667 transfections at 24-well scale, or 333 at 6-well scale.
Specifications
| Transfection Type | DNA Transfection |
|---|---|
| Application Setting | In Vitro |
| Pre-Optimized | No — General-Purpose Formulation |
| Storage | Store at 4 °C. When stored under recommended conditions, the product remains stable for 12 months or longer. |
Features
- 3–4 fold higher transfection efficiency, depending on cell type
- Preferred option for hard-to-transfect cells
- Improved transfection efficiency with serum and antibiotics present, for most cell types
- Supports exceptionally high levels of recombinant protein expression
Performance Data




Applications
This DNA transfection reagent supports a range of molecular biology applications including transient and stable transfection, reporter assays, protein expression studies, and gene function analysis in mammalian cell systems.
Safety & Handling
- General Protocol for Transfecting Mammalian Cells (PDF)
- Short Protocol (PDF)
- Protocol for Lentivirus Packaging in HEK293T Cells (PDF)
- Protocol for AAV Packaging in HEK293T Cells (PDF)
- Protocol for Adenovirus Packaging in HEK293A Cells (PDF)
- General Protocol for Transfecting HEK293 and CHO Cells in Suspension (PDF)
- Technical Note & Transfection Tips (PDF)
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Du J, Liao W, Wang H, et al.. MDIG-mediated H3K9me3 demethylation upregulates Myc by activating OTX2 and facilitates liver regeneration. Signal Transduct Target Ther (2023) 8(1), 351-351.. 10.1038/s41392-023-01575-5
Zhang X, McGinnis C, Yu G, et al.. Erythropoietin receptor on cDC1s dictates immune tolerance. Nature (2025). 10.1038/s41586-025-09824-z
Lee M, Siddoway B, Kaeser G, et al.. Somatic APP gene recombination in Alzheimer's disease and normal neurons. Nature (2018) 563(7733), 639-645.. 10.1038/s41586-018-0718-6
Konermann S, Brigham M, Trevino A, et al.. Optical control of mammalian endogenous transcription and epigenetic states. Nature (2013) 500(7463), 472-476.. 10.1038/nature12466