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Vanadis NIPT system
Outlines differentiating features of the Vanadis NIPT system, inclusive of minimal hands-on time, walkaway automation, high precision and no PCR or sequencing. Empowering any laboratory to conduct NIPT in-house.

Vanadis cfDNA platform
Highlights the defining features behind the Vanadis cfDNA platform, including its ease of use, full automation, high precision and no PCR or sequencing required. Now any lab can conduct cfDNA analysis in-house.

The impact of no-call rate in NIPT
A reference that highlights the clinical importance of no-call rate in NIPT (non-invasive prenatal testing).

The future of immunotherapy gets brighter with base editing
This literature review discusses how base editing technology addresses the shortcomings of other gene editing technologies for immunotherapy.

Base editing and stem-cell based therapies
This white paper explores how base editing is advancing iPSCs in the fields of basic science, regenerative medicine and immunotherapy.

Addressing the challenges in solid tumor therapy with base editing
Read this white paper to learn about how base editing is helping to address key challenges in immunotherapies for solid tumors.

A single-step process for engineering hypoimmunogenic pluripotent stem cells with the Pin-point™ platform
Learn about the utility of the Pin-point™ base editing platform for the engineering of allogeneic PSCs.

Interchanging Cas enzymes, deaminases, and aptamerguide RNA combinations to achieve optimal editing with the modular Pin-point™ base editing platform
Learn how to apply multiplex base editing to efficiently develop engineered CAR-T cells and hypoimmunogenic iPSCs.

Base editing with nuclease flexibility
In this application note, we demonstrate how the Pin-point™ base editing platform’s modularity allows for its components to be optimized to the target site.

CRISPR-derived base editing technology: The what, the how, and the why
This white paper provides a comprehensive guide to base editing, including what it is, how it works and applications.

One-step generation of allogeneic CAR-T cells by simultaneous multiplex knockout and site-specific transgene integration with the Pin-point™ base editing platform
Discover one-step generation of allogeneic CAR-T cells by simultaneous multiplex knockout and site-specific transgene integration with the Pin-point™ base editing platform.

Achieving CAR-T cell generation in a single intervention using a multiplex base editing system
In this poster, we highlight an example configuration of the Pin-point technology for the streamlined generation of allogeneic CAR-T cells and hypoimmunogenic iPSCs.


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