Find out direct applications
in the fields of Biopharmaceuticals

Thanks to the combination of our cutting edge technologies

Bioprocess optimization is at the core of Cellixio’s mission. Our microfluidic technologies help mitigate shear stress and protect cell viability throughout your bioproduction pipeline.

We can develop systems with very low fluidic constraints for medical devices. We can analyze these constraints and their biological effects for faster, safer development.

Bioproduction processes (Cell-based drug development & manufacturing)

CelliXiO provides innovative solutions to define the ‘safe’ operating ranges of cells based on their resistance to shear stress, ensuring optimal conditions for bioproduction. Our technology enables real-time monitoring of the physiological state of cells within bioproduction facilities, improving process control and enhancing the efficiency of drug development and manufacturing.

Define the ‘safe’ operating ranges of cells in terms of resistance to Shear Stress
Monitor the physiological state of cells in real-time within bioproduction equipment.

Biotechs (Cell-based Drug Development)

CelliXiO provides cutting-edge solutions to define the safe operating ranges of cells based on their resistance to shear stress. Our technology can for instance enhance protocol validation for cell injection in clinical settings and supports patient stratification by considering individual cellular responses to fluidic stress—contributing to safer and more effective therapies.

Define the ‘safe’ operating ranges of cells in terms of resistance to Shear Stress.
Strengthen the validation of protocols for cell injection in clinical context.
Help stratify patient populations considering  individual cellular response to shear stress.

Other applications

CelliXiO designs advanced equipment to minimize fluidic constraints, ensuring optimal performance in life-saving medical devices. Our solutions are particularly focused on reducing cellular shear stress in critical applications to enhance the safety and efficacy of medical devices where fluid dynamics are a key concern. Low shear bioprocess expert.

Design equipment that minimizes fluidic constraints
Enhance life-saving medical devices, when cellular Shear Stress is a major concern.

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