Cytiva and Multiply Labs collaborate to automate cell therapy manufacturing

The technology has the potential to transform global healthcare as more cell therapies receive regulatory approval around the world

26 May 2021
Ellen Simms
Product and Reviews Editor

Industry news

Cytiva, a global life sciences leader, and Multiply Labs, a leader in developing robotic systems for pharmaceutical manufacturing, are collaborating to develop a robotic manufacturing system that will automate the manual portions of the cell therapy manufacturing workflow. Creating a fully automated system that can operate at an industrial scale will enable the speed and flexibility that is needed to manufacture these next generation therapeutics.

With cell therapies being approved by regulatory bodies in the United States, the European Union, Canada, Japan and Australia, and hundreds more in clinical development globally, there is an immediate need to industrialize and automate the workflow. Combining Cytiva’s industry knowledge and technology with Multiply Labs’ automation and robotics expertise, the companies will develop a proof-of-concept robotic system that will accelerate the manufacture of cell therapies on an industrial scale.

Catarina Flyborg, Vice President, Cytiva, says: “Cell therapies have the potential to transform global healthcare, but their true potential will not be realized until the manufacturing workflow is fully automated. Our collaboration with Multiply Labs will enable us to develop a system that will advance and accelerate the commercial manufacturing of these novel therapeutics to help get them to the patients who need them most.”

Multiply Labs’ technical approach is based on a first-of-its-kind robotic cluster, a cloud-controlled manufacturing system that consists of multiple modules organized around a shared transfer system. This approach enables greater output, increased safety, more reproducibility, greater flexibility and easier GMP qualification for drug developers. Multiply Labs has successfully deployed a fully automated robotic cluster for the manufacture of personalized therapies made with combinations of small molecules.

Fred Parietti, co-founder and CEO, Multiply Labs, says: “Advanced robotics has been successfully applied to numerous high-value, high-scale manufacturing processes, from automotives to semiconductors. Combining Cytiva’s process expertise and market-leading technology with our robotics hardware and software expertise has the potential to radically accelerate the development and adoption of these life-saving drugs.”

There were 440 ongoing cell-based and cell therapy clinical trials worldwide in 2020 creating an immediate need to develop an industrialized manufacturing system that can support potential regulatory approvals and the commercialization of these novel therapeutics.

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Sample ManagementSample management systems include sample storage devices such as freezers and plate storers, sample environment enclosures and sample organization, retrieval and sorter systems. Useful system features include high-throughput, automation, robotic arms, automated liquid handling and associated database systems. Accessories in sample management include barcode scanners, heat sealers and tubes.Scale-upScale-Up is generally defined as the process of transferring the results of the discovery phases of the drug discovery process, obtained on a laboratory scale, to the pilot plant and finally to production scale. Scale-Up uses reactors and pump systems as well as reagents, standards and buffers. Often Scale-Up is provided as a service by Contract Manufacturing Organizations (CMOs). AutomationAutomation in laboratories and manufacturing processes enhances efficiency, precision, and scalability by reducing the need for manual intervention. It plays a critical role in improving productivity, minimizing human error, and accelerating workflows in fields like diagnostics, drug development, and industrial testing. Automation technologies include robotic systems, automated liquid handlers, and process control systems that streamline complex tasks and ensure consistent, reproducible results. Explore our peer-reviewed product directory to discover the best automation solutions, compare options, read user reviews, and get prices directly from manufacturers.Cell TherapyCell therapy involves using living cells to treat diseases, often by replacing damaged cells or stimulating regeneration. Stem cell therapy and CAR-T cell therapy are examples of cutting-edge treatments in regenerative medicine and cancer immunotherapy. Browse our peer-reviewed product directory to find the best cell therapy tools, compare products, check reviews, and get pricing directly from manufacturers.PharmaceuticalsPharmaceuticals are medicinal drugs used in healthcare to diagnose, prevent, cure and treat illnesses. Pharmaceuticals that are excreted after use appear in wastewater and can have detrimental effects on the environment.ManufacturingManufacturing is the production of merchandise for use or sale using labor and machines, tools, chemical and biological processing, or formulation.