| Field | Specification |
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| Storage | |
| Catalog no. (Mfr.) | |
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Product Overview
D407 is a human retinal pigment epithelial (RPE) cell line that laboratories commonly choose as an in vitro model for retinal biology, ocular diseases, gene regulation, and therapeutic gene delivery. Retinal pigment epithelial cells are critical to retinal homeostasis and photoreceptor function, so D407 gives researchers a valuable system for probing retinal physiology along with the molecular mechanisms behind retinal degeneration and other ocular disorders. Conditions in GenJet™ DNA In Vitro Transfection Reagent for D407 Cells are tuned to that line, so plasmid DNA transfection in D407 cells runs efficiently.
Specifications
| Transfection Type | DNA Transfection |
|---|---|
| Application Setting | In Vitro |
| Pre-Optimized | Yes — Pre-Optimized for Specific Cell Type |
| Optimized Cell Line | D407 |
| Storage | Store at 4°C. When maintained under the recommended storage conditions, the product remains stable for at least 24 months. |
Kit Contents
One milliliter of GenJet™ Reagent is sufficient for approximately 300–600 transfections in 24-well plates or 50–100 transfections in 6-well plates, depending on the culture format and amount of DNA used.
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
Can't Find What You're Looking For? We can help you source the best match or customize a transfection solution for your study. Options may include pre-optimized formulations for a cell line not listed here, matching transfection buffer supplied with the reagent, DNA, siRNA or in vivo formats within the same reagent family, and bulk or custom packaging. Click Talk to a Scientist to submit a request form, email us at support@biohippo.com, or explore our Research Services for additional support. Our team will be in contact with you shortly.
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