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INNOTERE - 3D Printing
FromINNOTERE GmbH
By using INNOTERE`s bone cement paste technology, one of our main R&D topics is the design and 3D printing of scaffolds with a large variety of shapes. The 3D printing technology and unique paste properties allow to precisely customize the dimensions and porosity of the final products. Due to low temperature setting the final material mainly consists of nanocrystalline, calcium deficient hydroxyapatite comparable to the mineral phase of bone.
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Based on our innovative 3D printing technology we are able to produce samples and scaffolds with a large variety of adjustable features:
- material based on synthetic calcium phosphate phases
- degradable and resorbable by cellular activity
- two- or three-dimensional design
- individual shapes (cubic, cylindrical, freeforms, etc.)
- equidistant or anisotropic strand arrangement
- variable strand diameter from 0.25mm to 1mm
- variable interconnecting porosity (isotropic or anisotropic)
- optional sterile packaging and gamma irradiation
Typical applications of our 3D printed scaffolds are:
- reference samples (chemically and structurally defined, ideal for quantification and microscopy)
- scaffolds for cell culture and perfusion systems (2D, 3D), perfectly fitting in standard tissue culture well plates
- substrates for coatings, chemical modification, surface modification
- filtration devices
- simple 2D constructs for biochemical pre-studies to complex scaffolds for in vivo studies
- adaptable workflows from prototype to pilot-plant scale
