Prototype polymer micro-scaffolds for organoid seeding, microtissues and drug discovery research. Photosynthetic helps you explore how a defined architecture can support the experimental environment you want to create.
Develop structured environments for organoid research with geometry specified at the microscale. Discuss the seeding concept, available space and the way the scaffold will be handled or observed. A defined architecture gives you a physical starting point for investigating how your experimental system behaves.
Investigate micro-scaffolds as part of a microtissue or regenerative research workflow. Explore the arrangement of structural elements and open spaces around the intended model. Geometry is one part of the system; material selection, culture conditions and biological evaluation remain part of the research design.
Explore structured platforms for drug discovery, screening and spatial biology. Compare scaffold architectures while keeping the experimental question clear. Define how samples will be positioned, accessed and observed, so the prototype can be considered within your intended assay workflow.
ORIGIN 2.5 uses single-photon volumetric microlithography to create 2.5D polymer microstructures. Platform specifications include features below 5 µm, heights up to 1000 µm and aspect ratios up to 20:1. The practical design window depends on the geometry and material; discuss your target dimensions with our team.
Share the desired scaffold footprint, height, pore or lattice arrangement and handling requirements. Discuss the polymer and any relevant culture or imaging conditions with our team. Compatibility and biological performance need to be evaluated for the intended model and protocol.
Tell us which cells, organoids or microtissues you plan to study, and the role the scaffold should play. Include target dimensions, material needs, observation methods and your current development stage. We can discuss a geometry and prototyping approach for your next experiment.
Photosynthetic B.V.
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