BIO ONE
BioprintingExtrustion Bioprinters
3D bioprinting station in a biosafety enclosure, bringing the future of tissue engineering and regenerative medicine closer.
Each of our R-GEN bioprinters is personally configured to specifically meet the needs of our users bespoke research goals.
Combine jetting, contact dispensing and electrowriting technologies with a full range of auxiliary process options to build simple or complex cell-laden constructs.
Our scientific advisor are available to guide you to your optimal instrument.
The R-GEN 200 3D multimodal bioprinting station is a complete system that can be tailored to your specific requirements combining multiple printing technologies in a single process to mimic native tissue architecture, composition and complexity.
Pneumatic extrusion enables versatile processing of a wide range of different bioinks.
The light-curing kit enables for a fast, in-process crosslinking of photocurable materials while minimising the dose provided to cells.
The easy-to-use, intuitive SHAPER software and accurate optical calibration systems allow the process to be easily and automatically repeated in multiple wellplates for high-throughput screening.
Independent temperature management of each material cartridge and extrusion nozzle temperature and workzone ensures you keep the optimal print conditions.
All R-GEN instruments are built with the ability to be easily upgraded with electro-spinning and writing technology allowing the creation of micro- and nano-fibers.
The instrument modularity gives you the possibility to easily and quickly change your instrument base plate according to your needs. Select amongst 4 different workzones to manage temperature in the physiological range or above, to generate micro- and nano-fiber, or to simply print in specific labware.
Adjust and refine print parameters any time during the print process.
Visualize the protocol sequence and action status with the progress tracker.
Run trial print protocols using rough print parameters, close-up observation and real-time parameter adjustments to quickly identify optimum protocol conditions.