
Catalog excerpts

Personalized systems for your research. What would you like to create?
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Contents Presentation: Modular and Customizable System Design of the equipment Print head Automatic Calibration System Syringes/Tools Print bead and bioprinting Surfaces Technical Specifications Display Reg4life Print head fetures Reg4Life
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Modular and Customizable System Each particular investigation is unique and requires a specific configuration, there is no bioprinting system adapted to all research applications, therefore at Regemat 3D we develop your Reg4Life version for your particular group and research project. The Reg4Life equipment is also a completely modular system that allows you to readapt it for future research as many times as you wish without having to purchase a new equipment. Additionally, its Plug & Play print head exchange system will allow you an easy, fast and simple way to exchange the heads for each...
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Equipment Design The Reg4Life is designed entirely in PVC, which permits a substantial weight reduction in the equipment with less than 30 kg, which together with the grip handle systems, facilitates its transport, handling and introduction into a laminar flow cabin. In this way, investigation in total aseptic conditions is guaranteed to much more extent than with HEPA filters.
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At the engineering level the new design of the bioprinter has been developed to promote laminar flow from the base to the top of the equipment. For the same purpose, a closed side compartment is provided where the filament rolls are placed so they do not affect laminar flow in any way. It has been designed with rounded shapes avoiding corners where dirt or bacteria can accumulate, making cleaning and disinfection of the equipment easier and faster. Additionally, the PVC covers allow chemical disinfection with alcohol 70% or formalin, by thermal shock, and by UV or gamma radiation. In...
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Print head The new head developed for the Reg4Life allows precise and efficient control of the adjustment movements in the X, Y, Z axes of each of the tools independently. It is configured with three Plug & Play print heads that in a simple way facilitates the exchange of the different syringes and printing tools. The system includes as standard a double thermoplastic extruder that enables it to print two different filaments during the same printing process.
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Led-light system The equipment integrates a led-light system to guide you during the whole experimental process, indicating the stage of your bioprinting procedure through a 3-color code. Blue Ocean: Ready to bioprint. Lime Green: Bioprinting in process. Intense Red: Paused process.
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Automatic Calibration System. The laser sensor system included in the Reg4Life 3D bioprinter as standard performs a precise and automatic calibration of all the tools without the need for the user to intervene in the process. Being accuracy and resolution the main premises of this equipment, an even more precise adjustment can be made through the software, thus achieving total precision with the different types and diameters of syringes and nozzles.
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Syringes | Tools Two-component syringe Reg4Life print head configuration with the different types of syringes is the result of our more than 5 years of collaborations with research groups around the world. This experience guarantees our equipment can be adapted to the nature of the different materials and bioinks on the market. Refrigerated syringe The Reg4Life is the only equipment, which refrigeration system allows controlling temperatures from -20 to 100ºC. Coaxial Syringe High temperature heated metal syringe
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Print bead and bioprinting surfaces The automatic calibration technology in the X, Y and Z axes together with the independent movement system in the Z axis of the heads allows a precise adjustment of the printing height of the material that allows the system to print on different surfaces. As standard, the Reg4Life system has a glass bed with an extended 220mm x 160mm x 110mm working area that allows to create 150mm x 160mm x 110mm constructs. Petri dishes and 6-1224-96-128 well plates adapters are included. The heating bed, which comes as standard permits temperature control from room...
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Technology Reg4Life system has been implemented and adapted with the aim of optimizing the bioprinting process. The software and hardware are configured for the use and precise control of standardized FDM and IPF technologies. Our equipment is the only one on the market validated for the use of IVF technology developed entirely by Regemat 3D
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Fused Deposition Modeling. This technology enables the modeling of the scaffold with the purpose of creating complex external structures and a meshed internal structure. The Injection Pore Filling technology enables to select specific layers on which to inject cells into the selected pores. This also permits the injection of controlled amounts that can be even different in each layer. The Injection Volume Filling technology developed exclusively by Regemat 3D, and therefore being the only system on the market adapted to this technology. In this process of additive manufacturing, a...
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Software Reg4Life software has been entirely developed by Regemat 3D. It allows the precise control of all the parameters of the bioprinting processes, even customizing and adapting it to the specific needs of each research team and specific bioprinting processes. REGEMAT 3D Designer allows you to print different 3D objects simultaneously in a single process, each one configured in independent manner.
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Object Pre-Visualization Our software is totally intuitive and allows both the design of your own structures and the import of geometries from .stl files. Once the structure has been designed or imported by means of a preview of the piece, we can configure the internal mesh and a wide range of printing parameters. Features 1. Loading and interactive display of models in .STL format. 2. Possibility of configuring each of the printing phases and parameters by loading G-codes. 3. Configuration of a multitude of scaffold parameters. 4. Generation and interactive display of layered print paths....
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