Mag-Bind® Fit24™ cfDNA Kit

Supplier: Omega Bio-Tek
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Mag-Bind® Fit24™
OMEGB3298-10-48PFEA 790 GBP
OMEGB3298-10-48PF
Mag-Bind® Fit24™ cfDNA Kit
Nucleic Acid Reagents Nucleic Acid Purification Kits and Reagents
Pre-scripted solution for the purification of cfDNA from up to 4 ml plasma samples.

  • Ease-of-use, automation-ready cartridges pre-filled with reagents
  • Convenience, no reagent preparation and buffer dispensing
  • High-quality purification, Up to 4 ml samples lysed offline eluted in as little as 50 μl

Unlock the power of precision with the MB Fit24™ cfDNA Kit, a go-to solution for fast, dependable isolation of circulating DNA. Designed for use with the MagBinder® Fit24 Nucleic Acid Purification System, this kit revolutionizes workflows, allowing for the extraction of circulating DNA from up to 4 ml plasma/serum samples.

Experience the simplicity of the MB Fit24™ cfDNA Kit. This kit is automation-ready, featuring reagent cartridges pre-filled with industry-leading Mag-Bind® reagents along with validated scripts for the MagBinder® Fit24 instrument. Enjoy fast and consistent results, with a semi-automated extraction workflow capable of processing up to 24×4 ml samples in less than 55 minutes.

The MB Fit24™ cfDNA Kit streamlines processes by eliminating reagent preparation and buffer dispensing. Samples are lysed offline, and the lysate is transferred to the reagent well containing the binding buffer. This unique binding buffer allows for the processing of large sample volumes, up to 4 ml, in a semi-automated format without the need for sample splitting.

Benefit from the enhanced properties of Mag-Bind® Particles CH magnetic beads, ensuring fast and efficient separation during steps involving large volumes. The high-binding capacity reduces the volume of magnetic particles required, resulting in a decreased elution volume. Obtain DNA from up to 4 ml plasma or serum eluted in as little as 50 μl, with the kit optimized to extract smaller DNA fragments (150 to 400 bp) while minimising the binding of larger fragments.
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