UserName
RNAi Type | siRNA |
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Product Type | Silencerâ„¢ Select validated siRNA |
Final Product Type | Silencerâ„¢ Select validated siRNA |
Purity | Standard purity |
For Use With (Application) | RNAi, epigenetics and non-coding RNA research, RNAi, siRNA |
Product Line | Silencerâ„¢ Select, Ambionâ„¢ |
RNAi Type | siRNA |
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Final Product Type | Silencer Pre-Designed siRNA |
Purity | Standard |
Product Line | Silencerâ„¢, Ambionâ„¢ |
RNAi Type | siRNA |
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Content And Storage | Silencerâ„¢ Select siRNAs are the result of recent improvements in siRNA design combined with novel chemical modifications yielding unrivaled knockdown efficiency and specificity. Our best performing siRNA for cell culture work. Silencerâ„¢ siRNAs are unmodified 21 nucleotide siRNAs that have been designed with an older, yet rigorously tested design algorithm. A lower cost alternative to Silencerâ„¢ Select siRNAs, but without some of the performance enhancements. |
Format | 96-well Plate,384-well Plate |
Product Type | Silencer Pre-Designed siRNA STD |
Final Product Type | Silencer Pre-Designed siRNA STD |
Sample Type | mRNA |
Product Line | Silencerâ„¢, Ambionâ„¢ |
Silencerâ„¢ Select siRNAs are classic 21-mers which incorporate the latest improvements in siRNA design, off-target effect prediction algorithms, and chemistry.
RNAi Type | siRNA |
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Description | Silencerâ„¢ Validated siRNA |
Product Line | Silencerâ„¢ |
Silencerâ„¢ Cyâ„¢3-labeled GAPDH siRNA (human, mouse, rat)
Silencerâ„¢ FAM-labeled GAPDH siRNA (human, mouse, rat)
Stealth RNAiâ„¢ siRNA GAPDH Positive Control (human)
Stealth RNAiâ„¢ siRNA Reporter Controls are ideal for use in RNA interference (RNAi) experiments to help you optimize your transfection conditions in any vertebrate cell line.
Ambionâ„¢ Silencerâ„¢ SelectGAPDH Positive Control siRNA, In Vivo Ready is extensively validated and an ideal control for many aspects of an siRNA experiment.
For the first time, you can obtain the benefits of Ambionâ„¢Silencerâ„¢ Select siRNAs in a convenient pre-plated, library format.
These siRNA collections enable medium and high throughput analysis of phenotypes resulting from inhibition of large sets of targets from specific functional classes.