
REG4LIFE
3D Bioprinter
The REG4LIFE bioprinter by REGEMAT 3D is a versatile and customizable system designed for advanced tissue engineering and regenerative medicine applications. Its adaptable printing head and extensive movement range across the X, Y, and Z axes enable precise printing on various surfaces, including glass beds and Petri dishes. Notably, the independent Z-axis movement allows for dual-syringe printing on multi-well plates of 6, 24, or 96 wells.

The bioprinter offers fully automated head calibration through an accurate laser positioning system, ensuring precision and ease of use. It comes standard with a heated bed and syringe, allowing temperature control from 0 to 120ºC for the bed and 0 to 50ºC for the syringe. When using metal or glass syringes, the temperature range can be extended up to 250ºC, accommodating a variety of biomaterials.

FEATURES
Equipped with a dual thermoplastic extruder, the REG4LIFE enables the simultaneous printing of scaffolds using two different thermoplastics within the same process.
Additionally, it includes a compartment for thermoplastic rolls and an LED lighting system that provides visual feedback on the bioprinting process status. The base design incorporates longitudinal openings to facilitate laminar flow for sterilization.
Its ergonomic design and lightweight construction make it suitable for use within flow cabinets, as the dimensions are tailored to fit standard enclosures.
RESOLUTION
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Resolution real in the X e Y axis (spindel movement) = 150 μ m (0.15mm) | Resolution in Z = 400 nm (0,4 microns)
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Theoretical resolution in the X and Y axis = 1.875 micras - 1875 nm
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Thermoplastic extruder Nozzle output diameter 0,4 mm.
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Syringes: Several output diameters 0,15 mm, 0,58 mm, 1,20 mm
APPLICATIONS
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Tissue regeneration
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Skin - Bone
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Cartilage - Cardiac tissue
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Cornea - Tumoral models
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Drug testing
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Biomaterials development
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Personalising treatment: Lab on a chip kit / Organ on a chip
TEMPERATURE CONTROL
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Thermoplastic Extruder:
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Filament (Until 250ºC)
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Pellet
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Biomaterials extrusión (through syringes):
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-20 until 100 grades
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Biomaterials light-curing:
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Ultraviolet light
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Infrared light
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Blue light
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