Storage | Store at 4°C |
Description | This product utilizes the lipid nanoparticle (LNP) technology platform for simple and efficient delivery of RBD mRNA to a variety of mammalian cells, including cell cultures which may typically be prone to difficulties in expressing desired proteins. The lipid nanoparticles used are formulated with, SM-102, DSPC, cholesterol, and DMG-PEG2000 at optimal molar concentration for a high rate of encapsulation and efficient mRNA delivery. RBD (receptor binding domain) has been identified as the key viral element allowing the virus docking to the target cells the SARS-CoV-2 viral sequence used is from the Wuhan-Hu-1 (D614) isolate. The Sequence of RBD used is available upon request. mRNA isolated in sodium citrate, sodium acetate, lipid mix in ethanol, and PBS. |
Lipid composition | SM-102/DSPC/cholesterol/DMG-PEG2000 |
Technical Notes | Work with mRNA-LNP on ice. It is important to minimize the time that the product spends at room temperature; after handling product during experiments, return immediately to ice. Upon receiving product, briefly pulse spin before opening to ensure product is at bottom of container; it is important not to spin for too long as this may rupture mRNA-LNP’s. Do not vortex. mRNA-LNP products should only be handled with certified RNAase-free reagents and consumables; use of filtered pipette tips is highly recommended. |
Usage | 1. Prior to transfection, in a 12 well culture plate, plate your cells at [0.5E6 cells/mL] in a total of 1ml per well. Ensure the cells you are using are viable and healthy. Try not to let your cells sit for longer than 5 minutes prior to transfection; cell clumping at the time of transfection may reduce transfection efficiency. 2. Briefly pipette mRNA-LNP mix up and down to resuspend. Add 20 uL of the mRNA-LNP mix dropwise directly to your 1 mL culture. Gently tilt the plate back and forth to mix (not necessary if you are using cells which will be immediately placed back into a shaker) Place your transfected cells back into their original culture conditions. 3. Check cell expression by FACS at 24hr intervals after transfection but the highest expression tends to be around 48 hours post-transfection. *Note: This is a generalized protocol for transfection using mammalian cells. Transfection volume may be scaled down/up proportionately |
Encoding mRNA | COVID-19 RBD protein |
In Vitro QC (Cell Types) | HEK293S |
Technology Applications | Vaccine development |
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×Product Name | Catalog | Lipid composition | Liposome Size | Price |
---|---|---|---|---|
Clipos™ COVID-19 RBD Protein mRNA Lipid Nanoparticles | CDMB02 | INQUIRY | ||
Clipos™ COVID-19 RBD Protein mRNA Lipid Nanoparticles | CDL23-052-L | SM-102/DSPC/Cholesterol/DMG-PEG2000 | $1695 | |
Clipos™ COVID-19 RBD Protein mRNA Lipid Nanoparticles | CDL23-083-L | SM-102/DSPC/Cholesterol/DMG-PEG2000 | $1595 | |
Clipos™ COVID-19 RBD Protein mRNA Lipid Nanoparticles | CDPM11 | SM-102/DSPC/cholesterol/DMG-PEG2000 | INQUIRY | |
Clipos™ COVID-19 RBD Protein mRNA Lipid Nanoparticles | CDL23-022-L | SM-102/DSPC/Cholesterol/DMG-PEG2000 | $1595 | |
Clipos™ COVID-19 RBD Protein mRNA Lipid Nanoparticles | CDL23-090-L | SM-102/DSPC/Cholesterol/DMG-PEG2000 | $1980 | |
Clipos™ COVID-19 RBD Protein mRNA Lipid Nanoparticles | CDL23-068-L | SM-102/DSPC/Cholesterol/DMG-PEG2000 | $1328 | |
Clipos™ COVID-19 RBD Protein mRNA Lipid Nanoparticles | CDL23-093-L | SM-102/DSPC/Cholesterol/DMG-PEG2000 | $1595 |
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