The Rokit Invivo is a revolutionary 3D Bioprinter which is tailored to assist as well as improve the efficiency of tissue engineering and regenerative medicine research.
It does this through allowing the creation of 3D cellular structures by printing scaffolds for hard tissues, as well as using bio-inks for the creation of soft tissue.
The Rokit Invivo is the world's first hybrid and modular 3D Bioprinter which allows researchers to have freedom in using a variety of materials and cells to propel the speed and efficiency of tissue generation.
Elaborate 3D scaffolds can be printed with medical-grade materials (PLGA, PLLA, POL, PLA).
A variety of bio-inks (Collagen, Gelatin, Silk Fabre, Hyaluronic acid).
High Accuracy and Precision: Temperature control and Step-Motor.
High Cell Viability: Sterilized environment (H14 HEPA filter, Air Pressure Filter, UV Lamp).
User Friendly interface: LCD Touchscreen, Android OS, Wi-Fi.
All FDA approved Materials.
For product demos, quotes and more info. please contact Senthil S., Ph.D, at senthil.s@biobasicusa.com, or at 1-240-246-5339.
Objective | Research Scope | Printing Technology | ||||
Bio-ink | Scaffold | Tissue | Syringe Dispenser |
Filament Extruder |
Pneumatic Dispenser |
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Creating artificial skin by layered printing of human fibroblasts and keratinocytes on collagen-based scaffolds | ![]() |
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Researching materials for soft tissue regeneration |
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Printing and culturing 3D cell structures | ![]() |
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Investigating optimal conditions and specs for scaffold biomaterials and cell culturing methods specific to each engineered tissue | ![]() |
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Testing printability of various polymer materials |
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Developing smart bio systems with 3D bioprinted nano particles embedded structures |
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Testing dual-printing function: printing scaffold & bioink-encapsulated cells |
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Developing porous bone-like scaffolds / biodegradable dental implants / artificial joint simulators |
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Testing various cross-linking polymerization technologies of the printer |
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SYRINGE DISPENSERBioinks Hydrogel with Cell Growth Factors Mixtures Powder Mixtures Hydroxy Apatite / Chitosan Hydrogels Collagen / Gelatin / Fibrin / Hyaluronic Acid / Alginate
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FILAMENT EXTRUDERSynthetic Polymers PCL (Polycaprolactone) PLGA Poly (Lactic-co-glycolic acid) PLLA(Poly L-lacUc acid) Any Other Polymers |
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PNEUMATIC DISPENSERVarious types of polymers and other materials that need temperature and air pressure control. |
Printing Method | Standard | Upgraded | Premium |
Photo Polymerization | ![]() |
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Bed Temperature Control | ![]() |
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Chemical Cross-linking | ![]() |
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Thermoplastic Filament Extruder | ![]() |
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Custom Blending Use (e.g. Hydrogel, Inorganic, Synthetic) | ![]() |
Standard Package 1: |
Standard Package 2: |
Upgraded Package 1: |
Upgraded Package 2: |
Premium Package: |
Extruder-Dispenser |
Multi Material |
Scaffold Print |
Various Pore Sizes |
3D Core-Sheath Structure |
Standard |
Premium |
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Printing System |
Polymer Wire Extruder + Bio Dispenser |
Polymer Wire Extruder + Bio Dispenser + Super Hot Melt Extruder |
LCD |
LCD Touch Screen / Android OS |
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Resolution |
Extruder 0.2mm / Dispenser 0.05mm |
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Hepa filter |
H14 (99.995≤0.3µmD.O.P) |
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UV Lamp |
Sterilizing UV Lamp |
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Extruder |
UV LED (365nm) |
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Bio Dispenser |
Screw type of Bio Dispenser to avoid Contamination 10ml Syringe |
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Bio Dispenser Function |
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Cooling / Heating System (-10~80ºC) |
Bed Plate |
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Cooling / Heating System (-10~80ºC) |
Nozzle |
Extruder Ø: 0.2mm,0.4mm Bio Dispenser Ø: 0.05~0.8mm |
Extruder Ø: 0.2mm,0.4mm Bio Dispenser Ø: 0.05~0.8mm Pneumatic Dispenser Ø: 0.1~0.5mm |
Pneumatic Dispenser |
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High Temperature Melting System (~350ºC) |
Build Volume |
100X100X90mm |
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Printing Speed |
5~20mm/sec |
*Do not operate on the deck while UV lamp on. It might cause burns or injury to eyes.
*Above specifications can be changed without notice.