(To pay with a purchase order, please send your purchase order to sales@messenger.bio.)
We are excited to release mFlame™️ mRNA, a precisely engineered mRNA that is brighter than mCherry and can be visualised and implemented for in vivo studies.
We developed mFlame™️ mRNA by fine tuning the key determinants of RFP (red fluorescent protein) mRNA expression, including the 5’ and 3’ UTRs as well as the protein-coding region itself.
mFlame™️ mRNA includes a Cap1 structure (biologically superior to Cap0), a highly expressing 5’ UTR and highly stable 3’ UTR, a 100-nt poly(A) tail, and a codon-optimized open reading frame. Choose from unmodified or modified (N1-methylpseudouridine or 5-methoxyuridine) bases. Both types of modified bases have been shown to enhance protein expression in vitro and in vivo.
Our robust purification process removes dsRNA contaminants and other reaction components, generating highly pure mRNA that is capable of inducing very high levels of protein expression in diverse cell types, while causing minimal cellular innate immune activation (virtually undetectable).
As with all our mRNAs, this mFlame™️ mRNA comes ready-to-use in a 1 mM sodium citrate buffer (pH 6.5), which is ideal for preserving RNA stability and extending shelf-life. Just complex with your favorite transfection reagent and you’re ready to go. Alternatively, speak to us about our ready-to-transfect LNP formulations.
If you would like to request a different amount of mRNA than what is listed on our website, or a different type of modified base, or any more information about our mFlame™️ mRNA, send us an email at hello@messenger.bio and we’ll be happy to help.
For Research Use Only. See Terms of Sale for more.
Also available as mRNA-LNP
(To pay with a purchase order, please send your purchase order to sales@messenger.bio.)
We are excited to release mFlame™️ mRNA, a precisely engineered mRNA that is brighter than mCherry and can be visualised and implemented for in vivo studies.
We developed mFlame™️ mRNA by fine tuning the key determinants of RFP (red fluorescent protein) mRNA expression, including the 5’ and 3’ UTRs as well as the protein-coding region itself.
mFlame™️ mRNA includes a Cap1 structure (biologically superior to Cap0), a highly expressing 5’ UTR and highly stable 3’ UTR, a 100-nt poly(A) tail, and a codon-optimized open reading frame. Choose from unmodified or modified (N1-methylpseudouridine or 5-methoxyuridine) bases. Both types of modified bases have been shown to enhance protein expression in vitro and in vivo.
Our robust purification process removes dsRNA contaminants and other reaction components, generating highly pure mRNA that is capable of inducing very high levels of protein expression in diverse cell types, while causing minimal cellular innate immune activation (virtually undetectable).
As with all our mRNAs, this mFlame™️ mRNA comes ready-to-use in a 1 mM sodium citrate buffer (pH 6.5), which is ideal for preserving RNA stability and extending shelf-life. Just complex with your favorite transfection reagent and you’re ready to go. Alternatively, speak to us about our ready-to-transfect LNP formulations.
If you would like to request a different amount of mRNA than what is listed on our website, or a different type of modified base, or any more information about our mFlame™️ mRNA, send us an email at hello@messenger.bio and we’ll be happy to help.
For Research Use Only. See Terms of Sale for more.
Quality Control Specifications
Parameter
QC Method
Benchmark
mRNA Length
Agarose Gel Electrophoresis
Expected band size only
mRNA Integrity
Capillary Electrophoresis
>80%
Purity
dsRNA
Dot-blot (J2 antibody)
Purity
Endotoxin
< 10 EU/mg
Purity
UV Spectrophotometry
1.70 : 2.30 (A 260/280)
LNP Encapsulation Efficiency
RiboGreen Assay
>90%
LNP Size Distribution
Dynamic Light Scattering
Formulation dependent
LNP Size Distribution
Dynamic Light Scattering
PolyDispersity Index < 0.2
LNP Surface Charge
Dynamic Light Scattering
Zeta potential characterisation
For any additional information regarding QC, please contact hello@messenger.bio for more details