Development of a Streamlined pDNA Purification Process Using an In‑Line Lysis Device

Nucleic Acid Insights 2026; 3(6), 425–435

10.18609/nuc.2026.052

Published: 24 August
Expert Insight
Kemi Gilchrist, Suriyasri Subramanian, Thomas Linke

The COVID-19 pandemic drew attention to mRNA vaccines, highlighting how they are a promising technology for treating infectious diseases. Plasmid DNA (pDNA) is essential for mRNA production, serving as the template for in vitro transcription and as a key component in other applications including viral vectors and DNA vaccines. A drawback of pDNA production is its labor-intensive purification process which currently requires two chromatography, and three ultrafiltration and diafiltration (UF/DF) steps. To address the need for a simplified procedure, we implemented improved capture feed conditions and a modified pDNA purification process that combines anion-exchange (AEX) monolithic chromatography, and hydrophobic interaction (HIC) monolith chromatography. Central to this approach is Sartorius’ Alkalizator, an in-line lysis device designed to reduce lysate impurities and enhance supercoiled DNA (scDNA) purity. Using this instrument, we achieved a scDNA purity of 52%, compared with 35% for traditional batch lysis. Following the upstream improvement, clarified lysate is directly loaded onto a CIM DEAE anion exchange monolith, eliminating the first UF/DF step. The eluate is then purified further using a C4 HLD HIC monolith column in place of the PlasmidSelect Xtra (PSX) resin column, removing the second UF/DF. With these changes, the modified process delivers yield and product quality comparable to the traditional workflow, with scDNA levels well above 90% and overall yields ranging from 49% to 60%, exceeding the approximate 40% yield reported for the original process. The modified process also offers key advantages such as a reduction greater than 50% in process time and approximate 19% reduction in cost of goods when evaluating comparable small-scale runs and controlling for specific consumables. Our results suggest that this modified process has the potential to be used for generating template pDNA faster and cheaper.

What you will learn
01
How replacing batch alkaline lysis with Sartorius' in-line Alkalizator device improves clarified lysate isoform quality (scDNA 34.7% → 51.6%, ocDNA reduced to 0%)
02
How direct loading of clarified lysate onto a CIM DEAE anion-exchange monolith eliminates the first UF/DF step while achieving near-final scDNA purity (96.0%)
03
How substituting a C4 HLD HIC monolith for PSX resin in polishing delivers 99.1% scDNA purity, over 50% less process time, and ~19% lower consumable cost
Key interests
Plasmid DNA purification In-line lysis Alkalizator Anion exchange monolith HIC monolith chromatography scDNA enrichment Process intensification mRNA vaccine manufacturing