ViralEntry™ Transduction Enhancer (100X)

Cat. No.
G515
Unit
1.0 ml
Price
$190.00
Cat. No. G515
Name ViralEntry™ Transduction Enhancer (100X)
Unit 1.0 ml
Description

Boost transduction by over 10X in a variety of cell types!

As an industry leader in recombinant viral vectors, abm has 15+ years of experience in how to enhance virus vector transduction efficiency. Over the years, we have developed multiple formulations of viral enhancing agents useful for this purpose. A remarkable breakthrough by our top scientists in 2020 is the development of the most efficient viral enhancing agent, ViralEntry™, that is not only effective in enhancing lentivirus transduction efficiency significantly, but also increases transduction efficiency in diverse cell types including primary T lymphocytes by over 10X. This is superior to any similar product on the market.

With this incredible reagent, you will be able to transduce any cell types you have. We guarantee that this is the most effective viral transduction reagent in the industry and will gladly refund you if you find better transduction enhancers than our ViralEntry™ formulation. Use it and you will enjoy it!

Product Features

  • Boosts Viral Transduction up to 10X in a variety of cell types
  • Designed for Lenti expression systems
  • Works with difficult cell types (e.g. T and B cells)
  • Easy-to-use: Add directly to media

Bundle up, save more!  These cost-saving bundles combine our best-selling Transduction Enhancer with reagents for virus packaging and titration!

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Storage Condition

Store at 4°C.

Material Citation If use of this material results in a scientific publication, please cite the material in the following manner: Applied Biological Materials Inc, Cat. No. G515
Datasheet
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MSDS
  • Joladarashi, D., Thej, C., Mallaredy, V., Magadum, A., Cimini, M., Gonzalez, C., Truongcao, M., Nigro, J. T., Sethi, M. K., Gibb, A. A., Benedict, C., Koch, W. J., & Kishore, R. (2024). GPC3-mediated metabolic rewiring of diabetic mesenchymal stromal cells enhances their cardioprotective functions via PKM2 activation. IScience, 27(10), 111021. https://doi.org/10.1016/j.isci.2024.111021
  • Bento, R., Scheller, J., & Parekkadan, B. (2024). Intratumoral Delivery of Genetically Engineered Anti-IL-6 Trans-signaling Therapeutics. Molecular Biotechnology. https://doi.org/10.1007/s12033-024-01230-6 
  • Nayak, T. K., Bajpai, A., Patwa, V., Carter, R. L., Enjamuri, N., Gao, E., Xiang, Y. K., & Tilley, D. G. (2023). Loss of Myeloid Cell-Specific β2-Adrenergic Receptor Expression Ameliorates Cardiac Function and Remodeling after Acute Ischemia. https://doi.org/10.1101/2023.11.27.568873
  • Tang, R., Shuldiner, E. G., Kelly, M., Murray, C. W., Hebert, J. D., Andrejka, L., Tsai, M. K., Hughes, N. W., Parker, M. I., Cai, H., Li, Y.-C., Wahl, G. M., Dunbrack, R. L., Jackson, P. K., Petrov, D. A., & Winslow, M. M. (2023). Multiplexed screens identify RAS paralogues HRAS and NRAS as suppressors of KRAS-driven lung cancer growth. Nature Cell Biology, 25(1), 159–169. https://doi.org/10.1038/s41556-022-01049-w
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