Resources Library
A faster, more reliable path to viable clones from even the most sensitive cells Are you feeling the pressure of the time, effort, and...
Join us for a fast-paced, 25-minute webinar exploring how shear flowFluid movement that applies force to cells and biofilms; used to mimic physiological/pathological conditions. systems enable researchers...
Overcome Delays, Setbacks, and Frustrations Slow. Painstaking. Frustrating. Repetitive. Inefficient. These are the themes we hear from researchers all across the world as they genetically modify cells....
In this study, CellRaft AIR was used to isolate, verify, and expand monoclonal cell lines carrying engineered SF3B1 mutations, forming the basis of an isogenic...
In this work, CellRaft arrays were used to generate clonally derived cell populations from single cells prior to sequencing, providing a ground-truth reference for benchmarking...
In this study, CellRaft AIR was used to isolate and track single hematopoietic stem and progenitor cell (HSPC) clones over time, enabling researchers to directly...
Blood cells don’t function in static environments. In vivo, they experience continuous shear forces that influence adhesion, activation, aggregation, and cell–cell interactions in ways traditional...
The discovery of high-quality antibodies is critical for both research and therapeutic development. However, identifying rare antibody-secreting cells from B cell or hybridoma populations remains...
Learn how researchers from various institutions have tackled tough challenges in cell line development. From poor cell viability to low efficiency and lack of clonality,...