GeneExpresso™ Max Transfection Reagent

GeneExpresso™ Max Transfection Reagent

Catalog #: EG-1086
Size
1000 µl
Catalog #:
$168.00
Size
100 µl
Catalog #:
$20.00
Size
10 ml
Catalog #:
$1380.00
Product Description
Product Name GeneExpresso™ MAX DNA In Vitro Transfection Reagent
Catalog Number EG-1086
Size 1 mL
Description GeneExpresso™ MAX DNA In Vitro Transfection Reagent, a proprietary cationic polymer formulation, delivers DNA with high transfection efficiency and low cytotoxicity to a wide range of mammalian cell lines, including HEK293, 293T, 293E, CHO, COS-1, HeLa, NIH 3T3, Sf9, Sf21, and primary cells, with 1 mL sufficient for 300–600 transfections in 24-well plates or 150–300 transfections in 6-well plates.
Advantages
  • High transfection efficiency for difficult-to-transfect cells
  • Compatible with a broad range of mammalian and insect cell lines
  • Low cytotoxicity
  • Effective in serum-containing media without interference
  • Compatible with Lipofectamine 2000 protocols
  • Simple, user-friendly protocol
  • Suitable for high-throughput applications
  • Transfection efficiency comparison graph

Figure 1. Comparison of GeneExpresso™ MAX transfection efficiency (#5, #6) with other transfection reagents (#1–#4, #7, #8) in HEK293 cells using 3 µL reagent and 1 µg DNA in a 12-well plate.

Protocol DNA Transfection Protocol
Quality Control
  • Functionally validated for high transfection efficiency in HEK293 and CHO cells
  • Confirmed low cytotoxicity in standard cell culture conditions
Storage Store at 4°C or -20°C; stable for 12 months or longer if stored properly
Shipping Ambient temperature
Discount
  • New customers: Use discount code 98Only for up to $100 off (1 mL)
  • Returning customers: Contact crm@excellgen.com for volume discounts or quotations
  • 100 µL trial sample available for new customers only
Free Sample Request a Free Sample
Notes For research use only
Product Documents
DatasheetEG-1086 Product Datasheet
Download PDF
Published References
  1. Shaltiel L, Paparizos C, Fenske S, Hassan S, Gruner C, Rötzer K, Biel M, Wahl-Schott CA. Complex Regulation of Voltage-dependent Activation and Inactivation Properties of Retinal Voltage-gated Cav1.4 L-type Ca2+ Channels by Ca2+-binding Protein 4 (CaBP4).” Journal of Biological Chemistry (2012). [PubMed] [DOI]
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