Kytopen Unveils Automated Gene Editing Platform to Speed up Cell Therapy Discovery and Manufacturing

25 May 2023 | Thursday | News

Kytopen launches early access program for strategic placements of the Flowfect Discover™ platform at top CDMOs and Translational Academic Medical Centers for rapid delivery of genome engineering materials to living medicines.
Flowfect Discover™ - Automated high-throughput gene editing device for discovery and optimization of cell therapy and living medicines. The Flowfect Discover™ enables the predictive scaling of engineered cells to solve cell therapy manufacturing problems at the discovery stage. The device uses Kytopen's patented electro-mechanical continuous flow to enable the delivery of genome engineering materials, such as CRISPR, to cells.

Flowfect Discover™ - Automated high-throughput gene editing device for discovery and optimization of cell therapy and living medicines. The Flowfect Discover™ enables the predictive scaling of engineered cells to solve cell therapy manufacturing problems at the discovery stage. The device uses Kytopen's patented electro-mechanical continuous flow to enable the delivery of genome engineering materials, such as CRISPR, to cells.

  • This program accelerates drug discovery, streamlines optimization, and eliminates barriers in scaling up to biomanufacturing.

 Kytopen, a leading biotechnology company specializing in high-throughput cellular and genome engineering platforms, today announced the initiation of an early access program for the Flowfect Discover™, an innovative gene delivery platform to engineer cells with unparalleled precision and efficiency. Strategically positioned at industry-leading Contract Development and Manufacturing Organizations (CDMOs) and Translational Academic Medical Centers, Flowfect Discover™ enables the swift and streamlined delivery of complex genetic engineering materials, such as CRISPR, mRNA, and DNA, to up to 96 samples in minutes.

"We are thrilled to unveil the Flowfect Discover™ platform, which represents a significant leap forward in our pursuit of advancing gene modified cellular therapies. By working closely with our collaborators and sharing future developments, we hope to increase patient access to these promising living medicines," states Paulo Garcia, CEO & Co-Founder of Kytopen. "Our company aims to empower researchers and developers by enabling more cost-effective innovation that solves manufacturing challenges at the discovery stage of cellular therapies. The introduction of the Flowfect Discover™ platform at earlier development phase will result in reduced development cost and time savings, contributing to improved patient impact."

 

The Flowfect Discover™ platform utilizes Kytopen's patented electro-mechanical continuous flow technology in a small-volume, high-throughput format. Researchers and therapeutic developers can program dozens of parameters to fine-tune the delivery of genetic material, resulting in optimized editing efficiency and enhanced yield of engineered cells.

Prominent organizations, such as BioCentriq, a renowned CDMO, have already embraced this transformative technology. "The Flowfect® Discover platform has revolutionized genetic engineering, allowing us to efficiently and effortlessly identify optimal conditions for introducing genetic material into cells," comments Alex Klarer, VP, Business Strategy and Innovation from BioCentriq. "Streamlining this crucial unit operation enables us to focus on what truly matters – providing cells to patients in need."

Bethany Grant, CTO of Kytopen, emphasizes the synergy between the Flowfect Discover™ and the company's large-scale delivery platform, the Flowfect Tx™. "By utilizing the same singular technology, the Flowfect Discover™ and Flowfect Tx™ empower cell therapy researchers and developers to explore new therapies and optimize delivery with confidence before transitioning to large-scale development," Grant explains. "This approach saves time, reduces costs, and has the potential to revolutionize cell therapy production and life-cycle management for the benefit of patients."

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