Store the polymer pouch at 2-8°C until ready to us
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描述:
3500 Dx Series POP-6™ Polymer is a separation matrix for the 3500 Dx/3500xL Dx genetic analyzers. It is conveniently offered in easy-to-use pouch packages in either 960- or 384-sample size formats.
Easy to Use
POP polymers are pre-formulated in a single-use pouch, which not only saves time but also ensures reliability and consistency.
Radio Frequency Identification (RFID) Label
RFID labels encode easy-to-track information such as part/lot number, samples remaining, and expiration dates (displayed on software dashboard).
Robust Formulation
POP polymers are formulated for a wide range of applications.
Reproducible Results
POP™ polymers dynamically coat the capillary wall to control electro-osmotic flow. Their defined quality and uniform consistency eliminate guesswork and help to ensure reproducibility. POP polymers are specifically formulated to separate DNA fragments of a known size range at a desired resolution and run time.
Performance Optimized Polymer
This product is intended for in-vitro diagnostic use on the Applied Biosystems 3500 Dx Series Genetic Analyzers and is not validated for use with other systems or applications. The 3500 Dx Series Genetic Analyzer is to be used by trained operators in the analysis of human DNA or RNA, for the detection of genetic changes that may lead to disease presence or susceptibility. Off-label uses such as fragment analysis are for research use only. Refer to the Applied Biosystems® 3500 Dx/3500xL Dx Genetic Analyzer User Guide for further details.
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注意事项:
Store the polymer pouch at 2-8°C until ready to use.
Note that expired pouches cannot be used on the instrument.
On-instrument life⁄usage
3500 Dx (8 capillary) Genetic Analyzer: lesser of 7 days or 384 samples or 60 injections
3500xL Dx (24 capillary) Genetic Analyzer: lesser of 7 days or 384 samples or 20 injections
The pouch includes additional polymer volume to accommodate both installation and a reasonable number of post-installation wizard operations such as bubble removal without affecting the number of samples⁄injections available.