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Transform your nucleic acid extraction with automated solutions

Are you struggling with these critical laboratory challenges?

If you're working in genomics, clinical diagnostics, or biobanking, you've likely encountered the frustrating reality of modern DNA extraction workflows. Traditional column-based methods are hitting their limits, delivering fragmented DNA that's inadequate for today's advanced sequencing technologies. The shift toward whole genome sequencing and platforms like Oxford Nanopore requires high molecular weight DNA exceeding 100K base pairs, yet current protocols systematically destroy these valuable long fragments through harsh processing conditions.

Automation presents additional complexity. Many facilities have invested in individual instruments but struggle to create cohesive workflows that connect multiple systems effectively. They often end up with isolated automated components rather than the integrated, high-throughput workflows that modern genomics demands.

Proven solutions transforming laboratory operations

This webinar showcases Revvity's chemagic™ Technology and Explorer G3 automation platforms that leading laboratories use to overcome these challenges. You will learn how the chemagic magnetic bead separation technology consistently produces DNA fragments exceeding 100K base pairs through gentle rotation methods that eliminate mechanical shearing forces.

What you'll discover

  • Extract 100K+ base pair DNA fragments vs. competitors' 30-50K
  • Achieve 20-50 μg DNA yield from just 1mL blood
  • Gentle rotation technology prevents DNA shearing
  • Process up to 10,000 samples per day with integrated workflows
  • 96-sample throughput with walk-away automation
  • Real-time feedback loops for sample normalization
  • Long-read sequencing compatibility (Oxford Nanopore, PacBio)
  • Whole genome sequencing for clinical research
  • Biobanking and high-volume testing

Register now to get full access to this insightful webinar.

For research use only. Not for use in diagnostic procedures.

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