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Ready to move beyond the limitations of traditional cell selection methods? This infographic equips scientists with the insights to harness automated clone generation — cutting weeks from cell line development workflows, achieving 100% monoclonality, and supporting research across vaccine development, cancer biology, and genetic screening.
Download this infographic to discover:
- How nanowell technology and automated cell selection deliver 100% monoclonality with improved cell growth and survival
- How automated workflows compress pool generation from 8 weeks to just 4 days
- Key equipment requirements for optimizing clone selection and productivity assessment
- The benefits of automation — from faster clone selection to simplified compliance and zero cross-contamination
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More Information
Traditional single-cell selection methods — including fluorescence-activated cell sorting, limiting dilution cloning, and manual clone selection — are resource-intensive, require multiple platforms, and present challenges around monoclonality verification and low clone viability. Automated clone generation addresses these limitations head-on. By combining nanowell plates containing 85,000 individual nanowells with automated cell selection platforms, researchers can collapse multi-step workflows into a single stage, reduce human error through detailed documentation, and achieve cost-effective, contamination-free results — with applications spanning vaccine production, cancer biology modelling, and genetic screening.

