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eGFP mRNA (2'-O-ethyl-Cap1, m1Ψ)

eGFP mRNA encodes enhanced green fluorescent protein from Aequorea victoria. Features 2′-O-ethyl-Cap1, m1Ψ modification, and 100A tail. Ideal for fluorescence reporting, transfection optimization, and mRNA delivery validation.
¥1500
RP-A00072-0.2

Description

The eGFP mRNA encodes an enhanced green fluorescent protein (eGFP), with the open reading frame sequence originally derived from the jellyfish Aequorea victoria. eGFP mRNA serves as a widely used fluorescence reporter in mRNA therapeutics, transfection optimization, and delivery system validation. The expressed eGFP protein fluoresces bright green with an excitation wavelength of 488 nm and emission at 507 nm.  
 
This mRNA features: 
- A modified 2′-O-ethyl-Cap1 structure with high capping efficiency for enhanced translation 
- 100% substitution with N1-methyl-pseudouridine (m1Ψ) to improve protein expression and reduce innate immune activation 
- A 100A poly(A) tail to mimic mature mRNA 
 
This eGFP mRNA provides strong and reliable fluorescent expression, making it ideal for transfection efficiency studies, biodistribution analysis, and LNP delivery validation.

Form Liquid
Concentration 1mg/mL
Full mRNA length 980nt
Full mRNA Molecular Weight 319792 Da
Storage buffer 1mM Sodium citrate, pH 6.5
Storage condition Store at -20°C for short term (<3 months), store at -80°C for long term.
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Appearance Clear and free of foreign particles
RNA Length Expected size band detected
RNA Content Target ± 5%
Integrity ≥ 75%
OD260/OD280 1.70 ~ 2.30
Capping Efficiency ≥ 90%
Endotoxin < 10 EU/mg
pH Target ± 0.5
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100 ng of mRNA was transfected into 10,000 A549 cells seeded in a 96-well plate using Lipofectamine™ MessengerMAX™ (or an equivalent reagent). The cells were incubated, and expression level was measured at 24, 48, and 72 hours post-transfection using a fluorescent plate reader.
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EGFP MRNA (2'-O-ethyl-Cap1, M1Ψ)

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EGFP MRNA (2'-O-ethyl-Cap1, M1Ψ)

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For laboratory research use only. Direct human use, including taking orally and injection and clinical use are forbidden.