Cell Printing & 3D Bioprinting
Piezo Dispensing Technology enables efficient and precise 3D bioprinting by combining high-speed droplet development with gentle handling of cells.
Living cells are very sensitive and can easily be damaged by improper handling or heat. The conventional dispensing methods struggle with thermal and mechanical stress. Piezo-based microdispensers operate without additional heat generation or piston-driven forces.
Three-dimensional structures are created through the controlled deposition of cell-containing droplets. They form complex biological architectures, layer by layer. The technology supports a wide range of cell suspensions while maintaining proper accuracy and reproducibility. Although cells are exposed to some shear forces during droplet formation, Piezo Dispensing Technology can keep the cell viability of up to 85%. This makes the technology effective for tissue engineering, regenerative medicine research, and other bioprinting applications.
Microdispensing for Cell Printing & 3D Bioprinting
Cell Printing Application Highlights:
- Gentle dispensing of sensitive living cells with minimal thermal and mechanical stress.
- Precise and reproducible deposition of cell-containing droplets.
- Controlled layer-by-layer deposition for three-dimensional biological structures.
Cell Printing commonly used for:
| 3D Bioprinting | Tissue Engineering & Research |
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... and much more.
Precision matters.
Cell viability does too.
Developing a cell printing or bioprinting process requires careful control of both droplet formation and cell handling. Let’s find the right dispensing approach for your application.
Discuss your cell printing project →