Formalin-fixed paraffin-embedded (FFPE) tissues, cell-free DNA (cfDNA), and single-cell samples are among the most challenging materials in genomics research. Degraded nucleic acids, low input quantities, and inconsistent amplification can introduce variability during next generation sequencing (NGS) library preparation, increasing the risk of uneven amplification and inconsistent sequencing results. Recent advances in real-time amplification monitoring and adaptive workflow design are helping researchers better manage these challenges while simplifying complex sequencing workflows.
This eBook explores adaptive PCR strategies for FFPE DNA sequencing, RNA sequencing (RNA-seq), liquid biopsy workflows, and single-cell sequencing applications, providing insights into workflow optimization, amplification control, and sequencing consistency across variable sample inputs.
Download this eBook to learn:
- How adaptive amplification strategies can improve sequencing consistency across degraded, low-input, and heterogeneous samples
- Why PCR overcycling affects library quality, duplicate rates, and downstream sequencing performance
- How streamlined workflows can support more reproducible NGS library preparation across FFPE, cfDNA, and single-cell applications


