OGT Released Automated NGS Workflow Solutions

The new library preparation workflows aim to reduce manual labor in clinical research settings.

Updated on Sept. 29, 2026 in Biotech

Isometric editorial illustration of a mechanical pipetting arm and sample racks, representing laboratory automation and workflow optimization.
Oxford Gene Technology has launched automated NGS library preparation workflows in partnership with Hamilton, aiming to reduce manual labor and increase testing throughput in clinical research laboratories. AI Illustration. Upload story photo >

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OGT has launched automated workflows for its SureSeq NGS portfolio to streamline clinical laboratory processes. The system functions in conjunction with the Hamilton NGS STAR Line.

Why it matters

The introduction of this automation addresses critical bottlenecks in clinical research laboratories caused by increasing sample volumes. By removing manual intervention during library preparation, laboratories can increase their testing throughput.

The new automated workflows are fully compatible with the Hamilton NGS STAR Line hardware. This integration specifically targets the most time-consuming stages of the NGS library preparation process.

The players

OGT

OGT is a biotechnology company that provides molecular genetics solutions, including the SureSeq NGS portfolio.

Hamilton

Hamilton is a global manufacturer of automated liquid handling workstations and laboratory technology.

The details

Developed alongside laboratory partners, these new tools remove the need for manual intervention during library preparation. This shift allows researchers to manage higher workloads while maintaining consistency in their genomic sequencing results.

Timeline

  1. OGT unveiled the new NGS automation capabilities on September 29, 2026.

The Tech Race

This development follows the trend of integrating liquid handling hardware like the Hamilton NGS STAR Line with specialized molecular biology protocols. By replacing manual pipetting with automated systems, the industry is shifting toward high-throughput, standardized genomic processing.

Clinical researchers can expect improved workflow reliability and reduced human error in their daily sequencing tasks. These changes translate into a faster turnover for high-volume genomic studies conducted in professional laboratory environments.

The takeaway

Automated workflows are becoming essential as clinical labs struggle to handle rising sample volumes. Adopting these systems allows researchers to focus on data analysis rather than the repetitive labor of library preparation.

Further reading

Learn more about the latest innovations in Biotech.

Source note: This article includes information reported by Selectscience.

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