QIAxcel RNA Kits

For automated quantitative and qualitative RNA analysis using QIAxcel instruments

S_1084_8_GEN_Kitrot

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QIAxcel RNA High Sensitivity Kit (1200)

Cat. No. / ID:   929112

QIAxcel RNA High Sensitivity Gel Cartridge, Buffers, Mineral Oil, QX Intensity Calibration Marker, QX RNA Alignment Marker, QX RNA Size Marker 200–6000 nt, QX RNA Denaturation Buffer, 12-Tube Strips
Cartridge type
High Sensitivity
RNA QC
Note: The QIAxcel High Sensitivity Kit only works with the QIAxcel Connect
QIAxcel RNA Kits are intended for molecular biology applications. These products are not intended for the diagnosis, prevention, or treatment of a disease.

✓ 24/7 automatic processing of online orders

✓ Knowledgeable and professional Product & Technical Support

✓ Fast and reliable (re)-ordering

Features

  • Objective RNA quality measurement with RNA Integrity Score (RIS)
  • Robust results using as little as 50 pg/μl of diluted total RNA
  • Safety and convenience with ready-to-use gel cartridges
  • Higher sensitivity and faster than agarose gel electrophoresis
  • Standardized processing with digital data collection

Product Details

QIAxcel RNA Kits provide fully automated quantitative and qualitative analysis of up to 96 RNA samples per run on QIAxcel instruments. Automated sample loading and analysis reduce manual handling of samples, minimizing the risk of RNA degradation and contamination. The system can detect as little as 50 pg/μl of diluted total RNA and 50 ng/µl of cRNA or single-stranded cDNA. When used together with the updated QIAxcel ScreenGel software, the new QIAGEN RNA Integrity Score (RIS) provides an objective quality measurement of eukaryotic RNA samples and allows easy interpretation of sample integrity.

The QIAxcel RNA High Sensitivity Kit only works with the QIAxcel Connect. The QIAxcel RNA QC Kit works with either the QIAxcel Connect or QIAxcel Advanced Instruments. QIAxcel RNA Accessories are compatible with both QIAxcel RNA Kits.

 

 

Performance

Fast, sensitive analysis of RNA

RNA quality is a critical factor for reliable results in gene expression studies and miRNA research, in which sensitive technologies such as real-time PCR or microarray analysis are used. Monitoring the integrity of the initial total RNA sample as well as products generated throughout the entire procedure is crucial, since their integrity strongly influences the predictive power of the detection method. Fully automated QIAxcel instruments enable fast and sensitive analysis of the integrity and quantity of total RNA and fragmented or intact cRNA (see figure  Streamlined RNA analysis using the QIAxcel system). Automated sample loading and analysis reduce manual handling of samples, minimizing the risk of RNA degradation and contamination. The degradation state of samples can be easily analyzed on QIAxcel instruments (see figures  Analysis of degraded RNA and  Analysis of plant RNA).
Objective quality values with the new RNA Integrity Score

The new QIAGEN RNA Integrity Score (RIS) provides an objective quality measurement for eukaryotic RNA samples and allows easy interpretation of sample integrity. The RIS is a value from 1 to 10 where a value of 10 indicates completely intact RNA (see figure  RIS indicates RNA integrity). The highly reproducible RIS eliminates the need for human interpretation and enables the implementation of rigorous quality control at appropriate breakpoints across workflows. This allows researchers to eliminate samples that do not meet the quality criteria required for downstream processes, reducing the risk of needing to repeat experiments and saving time and costs.
RNA analysis on QIAxcel instruments is highly reproducible and gives results comparable to the Agilent Bioanalyzer.
See figures

Principle

QIAxcel instruments use capillary gel electrophoresis to enable fast size-based separation of nucleic acids (see figure  Sample separation process). Unlike traditional agarose gel electrophoresis, separation is performed in a capillary of a ready-to-use gel cartridge. The samples are automatically loaded into an individual capillary and voltage is applied. The negatively charged nucleic acid molecules migrate through the capillary to the positively charged terminus. As with agarose gel electrophoresis, low-molecular-weight molecules migrate faster than high-molecular-weight molecules. As the molecules migrate through the capillary, they pass a detector which detects and measures the fluorescent signal. A photomultiplier converts the fluorescent signal into electronic data, which are then transferred to the computer for further processing using QIAxcel ScreenGel software. After processing, the data are displayed as an electropherogram or gel image.
See figures

Procedure

QIAxcel RNA Kits simplify separation and analysis of RNA, and provide increased user safety. Just a few simple steps are required: load the gel cartridge, fill and load the buffer tray, load the samples in 96-well plates or in PCR tubes or strips, select the process profile to be used — and go! Tedious gel preparation and extensive user training are eliminated, streamlining the workflow and facilitating integration of the system into the daily lab routine. Within minutes of starting a run, the first results appear in real time on the computer screen.

Applications

QIAxcel RNA Kits provide fast and sensitive analysis of the integrity and quantity of total RNA and cRNA (fragmented or intact).

Supporting data and figures

Resources

Brochures & Guides (3)
A protocol for evaluating quality of RNA samples using the QIAxcel Advanced Instrument and ScreenGel software version 1.3 or higher
Safety Data Sheets (1)
Download Safety Data Sheets for QIAGEN product components.
Kit Handbooks (3)
QIAxcel システムを用いてRNAの定量/定性自動解析
For automated quantitative and qualitative RNA analysis using the QIAxcel and QIAxcel Advanced instruments
Quick-Start Protocols (1)
For quality control of RNA samples using the QIAxcel Connect system
Instrument User Manuals (1)
For use with QIAxcel Advanced instruments and QIAxcel ScreenGel Software version 1.6
Certificates of Analysis (1)