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Explore how real-time biological data can enhance cell-based cancer immunotherapy research, addressing challenges in experimental throughput and linking multi-modal data to individual cells.
Explore innovative techniques for identifying tumor-reactive T cell receptors using single-cell analysis, advancing personalized cancer immunotherapy approaches for multiple myeloma patients.
Explore Bruker's Beacon® Optofluidic System for comprehensive single-cell analysis, enabling serial multi-modal examination and real-time imaging to accelerate antibody discovery and cell therapy development.
Explore advanced human antibody discovery techniques using Beacon system and Harbour Mice® technology. Learn about single B cell cloning, NGS integration, and in-chip assays for efficient screening and diverse antibody development.
Explore an innovative on-chip binding assay for selecting clones expressing high-quality bispecific antibodies, streamlining cell line development and improving efficiency in biopharmaceutical production.
Explore innovative RNA immunization and single-cell screening approaches to accelerate antibody discovery against challenging targets, enhancing diversity and efficiency in therapeutic development.
Explore CD3ζ as a novel integration site for reprogramming immune cells with Chimeric Antigen Receptors. Learn about advancements in CAR-T therapies, challenges in current approaches, and potential solutions for improved accessibility and efficacy.
Explore genetically modified cell models for drug discovery, focusing on protein stabilization and DUBTAC approaches. Learn how engineered cell lines accelerate therapeutic development and enable disease modeling.
Explore genetic engineering tools for non-conventional yeast, focusing on microorganisms' role in circular processes and their potential for complex product conversion.
Explore adeno-associated virus (AAV) capsids for gene therapy, focusing on less-studied variants with potential benefits in potency, tissue tropism, and reduced immunogenicity.
Explore the potential of iNKT cells in developing allogeneic cancer immunotherapy. Learn about their unique properties and advantages in creating scalable, off-the-shelf cell products for cancer treatment.
Explore SLEEK, an efficient transgene knock-in technology for clinically relevant cell types. Learn about this CRISPR-based method for improved gene editing and its potential impact on cell-based medicines.
Explore the evolution of precision medicine and learn how liquid biopsy is implemented in precision oncology with Prof. Dr. Klaus Pantel, a leading expert in tumor biology.
Explore development and verification processes for analytical platforms in cellular and gene therapy, focusing on key challenges and innovative solutions.
Explore comprehensive cell and gene therapy testing methods, focusing on safety protocols and advanced techniques for ensuring treatment efficacy.
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