Min-Immune™ Gold dsRNA Removal Kit

  • Easy and scalable enzymatic double-stranded RNA (dsRNA) removal from IVT RNA samples.
  • Reduces sample dsRNA to <0.005% (LLOQ) to minimize immunogenicity in cells.
  • Circumvents the need for chromatographic methods like HPLC.
  • Retains single-stranded RNA (ssRNA) yields.
  • Combine with modified nucleoside transcription for maximum reduction of immunogenicity.

Product is for research use only (RUO)

Uses and Label Licenses for Specific Products: Purchaser receives a limited non-exclusive, non-transferable, non-sublicensable right to use the purchased Product solely for its own internal laboratory research use. See the Label License tab for more information.

Min-Immune™ Gold dsRNA Removal Kit
Catalog #
Size
Price
Quantity
Catalog #: MGDR250125
Size: 25 reactions
Price: $600.00

Product Description:

The Min-Immune™ Gold dsRNA Removal Kit provides a novel enzymatic solution for the removal of double-stranded RNA (dsRNA) contamination present in RNA samples produced by in vitro transcription (IVT). dsRNA can be reduced to <0.005% (LLOQ) of the sample, lower than what can be achieved using engineered mutant T7 RNA polymerases. Each 25-reaction kit will treat 1,500 μg of IVT RNA or mRNA and is suitable for most samples regardless of length, end modifications or NTP content.

The removal of dsRNA from mRNA preparations has been shown to be essential for reducing the innate immunogenic response to the mRNA in cells. Alternative dsRNA removal methods, such as reverse-phase HPLC, hydroxyapatite chromatography and cellulose chromatography, are associated with high capital costs as well as reduced final product yields. The Min-Immune™ Gold dsRNA Removal Kit provides an easy to use, scalable method for removing the dsRNA content of IVT RNA or mRNA preps without a reduction of the single-stranded RNA yield. Use of Min-Immune™ Gold in combination with incorporation of modified nucleosides into in vitro transcribed mRNA can serve as a highly efficient workflow for maximum reduction of immunogenicity for downstream applications, such as cell and gene therapy research and mRNA vaccine development.

Product Performance:

dsRNA reduction to <0.005% (LLOQ)

A Min-Immune™ Gold dsRNA Removal Kit treated 1.4 kb pseudouridine-containing RNA sample was compared to an untreated sample (Figure 1, right panel) and dsRNA Standards (Figure 1, left panel). Triplicates of each sample and standard were immobilized on a charged nitrocellulose membrane, then immunoblotted with a primary dsRNA-specific antibody and a secondary antibody conjugated to horseradish peroxidase (HRP). Signal was detected using enhanced chemiluminescence on a Syngene® G:Box. A regression equation was generated using the dsRNA standard curve on the left and is used to calculate the percent dsRNA present in both the treated and untreated samples seen on the right side of the blot. Results show a reduction of dsRNA content in the treated sample replicates to levels below the lower limit of quantification (0.005%) of this assay after treatment with the Min-Immune™ Gold dsRNA Removal Kit.

Figure 1. Immunoblot of Min-Immune™ Gold dsRNA Removal Kit treated RNA. dsRNA is reduced below the lower limit of quantification after treatment.

 

Treatment of RNA with inherent stable dsRNA regions

The Min-Immune™ Gold dsRNA Removal Kit is designed to remove contaminating dsRNA generated during transcription from IVT RNA and mRNA preparations. However, some RNAs naturally contain dsRNA regions or structures within them. The lengths of these dsRNA regions dictate their sensitivity to Min-Immune™ Gold RNase III cleavage as well as to recognition by intracellular dsRNA specific pattern recognition receptors. In general, Min-Immune™ Gold RNase III will recognize hairpin structures starting at 17 bp for uridine-containing RNA and 22 bp for pseudouridine-containing RNA. Digestion efficiency will increase with longer hairpin lengths (Figure 2). Because of this, it is recommended to characterize Min-Immune™ Gold treatment of all new RNA samples with a 1X or smaller reaction prior to treatment of larger amounts of the same RNA.

Figure 2. Seven constructs were designed to contain inherent dsRNA regions of 12-26 bp long hairpins in the secondary structure of the resultant RNAs. Following transcription with canonical nucleosides (GAUC, left panel) or including the modified nucleoside pseudouridine (GAΨC, right panel), the RNA samples were treated with the Min-Immune™ Gold dsRNA Removal Kit and visualized on a formaldehyde-denaturing 1% agarose gel. Duplexes of 15-bp dsRNA or shorter were not recognized by Min-Immune™ Gold RNase III within GAUC-RNA, while duplexes of 19-bp dsRNA and shorter were not recognized within GAΨC-RNA.

 

Treatment of RNA with transient dsRNA regions

Some RNA samples can form transient dsRNA regions (molecular breathing) during the reaction which are substrates for Min-Immune™ Gold RNase III cleavage. These will appear as faint, less than full length background bands when visualized on a gel (Figure 3). This clipping does not affect the bulk functionality of the treated RNA. If minor clipping occurs, subsequent samples of the RNA can be treated more gently by reducing the incubation time or amount of Min-Immune™ Gold RNase III used.

Figure 3. A pseudouridine-containing mRNA sample (Ψ-mRNA) was treated using the Min-Immune™ Gold dsRNA Removal Kit and visualized on a formaldehyde-denaturing 1% agarose gel. Faint background bands from clipping of transient dsRNA sites can be seen when the image is purposefully overexposed. This clipping does not affect the bulk functionality of the treated RNA.


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