FlashTag™ Biotin HSR RNA Labeling Kits
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Applied Biosystems™

FlashTag™ Biotin HSR RNA Labeling Kits

FlashTag™ Biotin HSR RNA Labeling Kits are high-sensitivity labeling reagents designed to prepare target from RNA samples for GeneChip™ miRNARead more
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Catalog NumberNo. of Reactions
90191010 Reactions
90191130 Reactions
Catalog number 901910
Price (USD)
-
No. of Reactions:
10 Reactions
FlashTag™ Biotin HSR RNA Labeling Kits are high-sensitivity labeling reagents designed to prepare target from RNA samples for GeneChip™ miRNA Arrays.

Features and benefits
Easy-to-use: 45-minute assay—from RNA sample to labeled target—without amplification or purification steps
Low sample input: Requires as little as 130 ng total RNA
Variety of samples: Works with any intact, degraded, or FFPE RNA sample
Built-in controls: Contains RNA spike control oligos for GeneChip miRNA Arrays
Superior performance:
    - Reproducibility: Inter-and intra-lot signal correlation is typically R >0.95
    - Sensitivity: Detects 94% of miRNA transcripts at 1.0 attomole
    - Dynamic range: >3 logs
    - Specificity: 1 nucleotide discrimination

The combination of GeneChip miRNA Arrays and FlashTag Biotin HSR Reagents offers a complete solution for accurate and validated miRNA analysis.

Related Links
FlashTag™ Biotin HSR RNA Labeling Kits
GeneChip™ miRNA 4.1 24-Array Plate and Trays
GeneChip™ miRNA 4.1 96-Array Plate and Trays
GeneChip™ miRNA 3.1 24-Array Plate and Trays
GeneChip™ miRNA 3.1 96-Array Plate and Trays
For Research Use Only. Not for use in diagnostic procedures.
Specifications
Detection MethodBiotin-based
Format24-array Plate, 96-array Plate
Label or DyeBiotin
Final Product TypeRNA (Labeled)
Sample TypeRNA
Labeling TargetRNA (General)
No. of Reactions10 Reactions
Product TypeBiotin HSR RNA Labeling Kit
Quantity10 reactions
Unit SizeEach

Frequently asked questions (FAQs)

For GeneChip miRNA arrays, are External RNA Controls Consortium (ERCC) controls tiled on the array?

The ERCC controls are not tiled onto GeneChip miRNA arrays because they would not work with the miRNA array/assay system. The FlashTag Biotin HSR RNA Labeling Kits used to label miRNAs is optimized for shortRNAs. Even though longer mRNAs like the ERCC controls will be labeled, the HWS (hyb/wash/stain) conditions are not optimal and consequently, the longer mRNAs typically do not get detected.

Find additional tips, troubleshooting help, and resources within our Microarray Analysis Support Center.

Does having multiple copies of the same probe across species impact hybridization in miRNA arrays?

Due to certain miRNAs being conserved across species, there may be multiple copies of the same probe across the miRNA arrays. However, sample processing with the FlashTag Biotin HSR RNA Labeling Kits ensures that there is excess target compared to the probes on the array. Consequently, there is enough sample available to hybridize onto all the replicate probes.

Find additional tips, troubleshooting help, and resources within our Microarray Analysis Support Center.

How do I extract/isolate RNA for miRNA?

In order to perform RNA isolation, any of our kits for purification of total RNA or LMW RNA will be compatible with the FlashTag Biotin HSR RNA Labeling Kits.We also recommend that you elute or resuspend the RNA in nuclease-free water to ensure that the purification method retains low mole.

Can I use the FlashTag Biotin HSR RNA Labeling Kit to label and hybridize amplified or reverse transcribed miRNA to a GeneChip miRNA Array?

Reverse transcribed miRNA would not work because it would be the wrong sense (antisense, while our probes interrogate sense RNA). Amplified miRNA should work, but the miRNAs are very short. Therefore, adapters may need to be ligated to them or tailing may be needed to get enough runway to complete amplification. It is unknown if any extra sequence may interfere with the hybridization.

What are the total RNA input requirements for GeneChip miRNA 3.1 Array Strip?

If you are using a FlashTag Biotin HSR RNA Labeling Kit for the GeneChip miRNA 3.1 Array Strip, we recommend staying within the range of 130-1000 ng input total RNA.

Find additional tips, troubleshooting help, and resources within our Microarray Analysis Support Center.

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