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Controls for RNAi Experiments |
Proper RNAi controls are essential for successful RNAi experiments. We offer controls for both siRNA and miRNA experiments. Our siRNA controls, including negative and positive control siRNAs, help to determine non-specific cellular responses and optimize transfection conditions to enhance your gene silencing research. To enable clear results for miRNA experiments, positive and negative controls are available for both miRNA mimics and inhibitors.
For optimal results, it is advisable to use controls from the same product line as your experimental siRNA, such as Silencer Select siRNA. This helps ensure consistency and accounts for the effects of chemical modifications. If you are working with unmodified custom siRNA, Silencer siRNA controls should be used to maintain the integrity of your experiments.
Type of control | Recommended use |
---|---|
Negative siRNA controls | Non-targeting siRNAs control for non-specific effects related to siRNA delivery to help provide a baseline for target gene silencing. |
Positive siRNA controls | Verified siRNAs to achieve high levels of knockdown to help ensure optimal transfection conditions. They typically target a constitutively expressed gene for use in a wide range of cell types. |
Fluorescent transfection controls | Assess and monitor transfection efficiency with a fluorescently labeled siRNA control. |
Negative control siRNAs are most often a non-targeting siRNA—designed not to target any gene—for determining the non-specific effects of siRNA delivery and for offering a baseline to compare to siRNA-treated samples. Scrambled control siRNA is a sequence that has been randomly rearranged to have the same nucleotide composition as a target-specific siRNA, but also no known off-targets. Negative controls may also be a functional siRNA that is known to have no impact on your phenotype of interest, which should be determined empirically. We recommend using one or more negative controls in every RNAi experiment.
Positive controls help give you confidence in your RNAi experiments by confirming that experimental conditions were met to achieve robust silencing. Positive controls are verified siRNAs that are known to achieve high levels of knockdown (>70%), typically for a constitutively expressed or housekeeping gene. A positive control should be used to optimize siRNA delivery conditions and to reconfirm high levels of delivery in each RNAi experiment. When a positive control fails to produce the anticipated phenotype, carefully evaluate your experimental conditions and decide if some factors need to be adjusted.
To achieve the highest transfection efficiency possible, it is advised to first optimize transfection conditions for your cell lines. An siRNA or oligo with a fluorophore conjugate, such as FAM or Cy3, can be useful as a visual indicator of transfection success, especially during transfection optimization when conditions such as cell density and the amount of transfection reagent are being varied. It should be noted that intracellular fluorescence is not a substitute for quantitation of transfection efficiency as measured by knockdown from a verified positive control.
miRNA mimic and inhibitor controls are essential for verifying experimental results, helping ensure that observed effects are due to specific miRNA modulation rather than off-target or non-specific activity. To support your miRNA experiments, we offer positive and negative controls for both miRNA mimics and inhibitors.
For more optimal siRNA transfection, we have many cell type-specific transfection protocols for siRNA delivery using Lipofectamine RNAiMAX Transfection Reagent to help you get started.
Technical inquires:
Our Technical Application Scientists are available to help assist you at techsupport@thermofisher.com
Ordering & Order Status inquires:
If you have questions about pre-designed RNAi orders and order status, please contact us at genomicorders@thermofisher.com
If you have any questions about Custom RNAi orders and order status, please contact us at RNAiSupport@thermofisher.com
For Research Use Only. Not for use in diagnostic procedures.