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Advancing gene therapy with custom AAV engineering
Discover how advanced AAV capsid engineering techniques have the potential to enhance gene therapy development in this white paper.

Generating a clonal HAP1LIG4(-) Cas9(+) cell line – an expert interview
An interview with Dr. Gerety, the Sanger Institute on generating a new HAP1 cell line and how it can help advance scientific discovery.

Celigo Image Cytometer specification sheet
Specification sheet for the Celigo image cytometer

Celigo image cytometer stacker specification sheet
Specification sheet for the Celigo image cytometer stacker

Optimizing AAV manufacturing: a scalable harvest protocol
As demand for recombinant AAV (rAAV) vectors continues to rise, scalable and efficient manufacturing processes are essential for advancing gene therapy.

CD34+ hematopoietic stem cells: Research with confidence
This flyer introduces CD34+ hematopoietic stem cells outlining features and benefits

A versatile base editing technology with broad Cas enzyme and deaminase compatibility well suited for Cell and Gene Therapy
This scientific poster describes the development of a versatile base editing platform for cell and gene therapy.

One-step engineering of allogeneic cell therapies with Pin-point base editing platform and an AI-engineered Cas enzyme
This scientific poster describes a one-step process to engineer allogeneic cell therapies with the Pin-point base editing platform and an AI-engineered Cas enzyme.

Optimization of Modular Pin-point™ Base Editing with Type V CRISPR-Cas
This poster details advancements in the Pin-point™ base editing platform, focusing on modularity and efficiency improvements with Type V CRISPR-Cas effector applications in gene therapy.

Enhanced iPSC Editing with Minimal p53 Activation via Pin-point™
Focused on improving iPSC editing, this poster discusses reduced p53 pathway activation with Pin-point™ cytidine base editing, enhancing cell viability and therapeutic outcomes.

Custom gRNA Design and Efficiency Prediction in Pin-point™ Editing
This poster discusses the development of custom guide RNA (gRNA) design tools and efficiency prediction models, enhancing Pin-point™ base editing accuracy in gene therapy applications.

Advancements in Pin-point™ Base Editing for Targeted Gene Therapy
This poster showcases the latest improvements in the Pin-point™ base editing platform, emphasizing applications in targeted gene therapy for enhanced therapeutic outcomes.


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