GRAPE S1
Bioprinting Approach
Copner Biotech’s novel approach to bioprinting couples microfluidic droplet deposition with raster-style,
sequential printer head movement. This method of deposition is firstly optimised to the user’s own BioINK
via our, ‘droplet optimisation protocol’ before users can print personalised 3D constructs.
Microfluidic droplet deposition performed in this manner unlocks a new level of precision and control
during the bioprinting process.
User derived BioINKs
GRAPE S1 prints using material collected from an microfluidic reservoir, allowing users
to utilise biomaterial/cell combinations (BioINKs) of their choice. This unique ability of GRAPE S1 to allow
user’s own materials has opened a new level of bioprinting freedom, empowering the research community
to push the boundaries of 3D bioprinting further than before.
Next Generation Software Control
Whilst other bioprinting systems rely on STL files and g.code, Copner Biotech’s next generation
bioprinters utilise graphical rectangular actual positional encoding GRAPE® files. GRAPE® was developed
to address the key issues associated with STL and g.code procedures currently used in the market today.
These issues include, but are not limited to, troublesome data approximations, modelling anomalies
and low levels of precision in bioprinted constructs.
Our novel and proprietary GRAPE® 3D modelling format allow users to model and print highly precise 3D
constructs, with high batch-to-batch consistency. With our next generation 3D modelling software,
users can design and create complex, microarchitectures directly applicable to 3D cell culture and
tissue engineering applications. From here, GRAPE® files are directly read and printed by the GRAPE S1
system, cutting out the need for tedious and troublesome slicer software.
Enables users to print complex microarchitectures optionally employing different BioINKs for some or all
of the microarchitecture print layers.
GRAPE S1 includes high precision 3D extrusion bio printer powered by GRAPE® control software;
bundled with GRAPE® 3D modelling software and remote control application
GRAPE S1 comes with a range of available print needle diameters coupled with needle positional delta movement resolution of 0.1mm
Disclaimer
Users must ensure suitability of our product(s) in their application prior to use.
Products conform solely to the information contained in this and other related Copner Biotech Ltd publications.
The information contained in this publication is based on our research and development work and is to the
best of our knowledge true and accurate. Copner Biotech Ltd reserves the right to make changes to
specifications and information related to the products at any time. Products are not validated for
human or animal diagnostic nor therapeutic use but for laboratory, research or further manufacturing use only,
unless otherwise specified..