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Dual-targeted cell therapy targeting BCMA and GPRCD5 to prevent relapse in multiple myeloma

Duration
35 min
Collaborators
Prof. Carlos Fernandez de Larrea Associate Professor of Medicine University of Barcelona
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Multiple myeloma is a cancer derived from malignant plasma cells. Conventional mono-targeting CAR T-cell therapies targeting BCMA have yielded remission in treated patients, however, a large proportion relapses due to BCMA antigen escape as a result of low antigen density. The development for effective CAR T-cell therapy with long-term remission is needed.

Learn from Prof. de Larrea how expressing two CARs on a single cell enhances the strength of CAR T-cell/target cell interactions, prevents BCMA escape-driven relapse, and how cell avidity measurements contributed to their findings in this webinar.

Key learning points:

  • Dual-targeting CARs exhibit superior binding interactions to target cells expressing both antigens compared with mono-targeting CARs.
  • Dual-targeting CARs display stronger intercellular binding strength in BCMA-deficient target cells expressing GPRC5D, validating the ability of dual-targeting approaches to overcome BCMA antigen escape.
  • Cell avidity measurements with the z-Movi correlate with treatment outcomes in mouse models, suggesting that cell avidity measurements are reliable predictors of CAR T-cell efficacy

         
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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
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        • Team & Advisors
        • Customer testimonials
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