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Unlocking the Power of Cas12a: Novel Insights into Engineered Endonucleases for Safe and Precise next generation Genome Editing

Duration
78 min
Collaborators
Professor Guillermo Montoya, University of Copenhagen, Denmark
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The advent of powerful and precise gene-editing tools is transforming the way we approach health, medicine, and biological research, opening up possibilities that were once considered science fiction.
Join us today in this webinar to unravel the secret of Cas12a endonuclease, a component of the revolutionary CRISPR-Cas gene-editing technology. Prof. Guillermo Montoya from University of Copenhagen will guide us through his groundbreaking research that explores how Cas12a, an RNA-guided enzyme, interacts with bacteriophage λ-DNA. This journey into the world of genome editing will not only deepen our understanding of this complex tool but also inspire us to imagine the potential advancements in biomedicine and biotechnology.
As we embark on this journey together, we are excited to share and explore the novel insights and possibilities that are becoming accessible through these advancements in gene-editing technologies. Let’s dive in and explore the extraordinary world of Cas12a and its implications in gene editing.

         
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  • Applications
    • Applications wrap
      • ApplicationsReal-time analysis of molecular and cellular mechanisms Find out how dynamic single-molecule and cell avidity analysis tools can take your research further.
      • Discover our applications
    • Dynamic single-molecule analysis
      • DNA–binding proteinsStudy where and when proteins interact with DNA or RNA – in real time
      • Protein foldingFollow protein conformation dynamics to understand how structure links to function
      • Cytoskeletal structure and transportDecipher function, mechanics and interplay of molecular motors and the cytoskeletal scaffold
      • Phase separationUnderstand fundamental processes and the many roles of biomolecular condensation
      • MechanobiologyBiology takes place in a physical world – study the mechanics, from molecules to cells
    • Immuno-oncology
      • CAR T cellsCell avidity improves the prediction of in vivo outcomes
      • TCR T cellsImprove functional correlation and understand the mechanism of action with cell avidity
      • Cell engagersBetter decision making with avidity at high throughput
      • NK cellsIdentify the most potent NK cell with cell avidity
  • Products
    • Products wrap
      • ProductsState-of-the-art solutions for your research Find out how dynamic single-molecule and cell avidity analysis tools can take your research further.
      • Explore our products
      • Store: Reagents, kits and services
    • Dynamic single-molecule analysis
      • Product Image
      • C-Trap® Optical Tweezers Fluorescence & Label-free Microscopy
      • m-Trap® Optical Tweezers
      • Services and Support
    • Cell avidity analysis
      • Product image
      • z-Movi® Cell Avidity Analyzer
      • NEW: Avidigo Services
  • Science
    • Science wrap
      • ScienceHere is the place where you’ll find educational resources, webinars, application notes, literature lists, and more.
    • Dynamic single-molecule analysis
      • Webinars
      • Application notes
      • Publications
      • Harbor – script & samples
      • Masterclass
      • Explore all resources
    • Cell avidity analysis
      • Webinars
      • Application notes
      • Publications
      • White papers
      • Explore all resources
  • Company
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      • CompanyOur goal is to advance science and improve human health by providing tools that unlock the measurement of forces and interactions in biology.
      • Discover our mission
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      • About LUMICKS
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        • History
        • Team & Advisors
        • Customer testimonials
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    • Company Wrap column 2
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