- Phone
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Address
8th Floor, Building 2, East China Normal University Science and Technology Park, 1038 Jinshajiang Road, Putuo District, Shanghai
Shanghai Zequan Technology Co., Ltd
8th Floor, Building 2, East China Normal University Science and Technology Park, 1038 Jinshajiang Road, Putuo District, Shanghai
Zealquest Biomedical 3D Printing System

1、 Product Features
Zealquest BiomedicalThe bio 3D printing system focuses on the research and application of bio printing technology and bio ink, providing advanced bio manufacturing solutions for clinical medicine, agriculture, life sciences, pharmaceutical research, and food industry.
Biological 3D printing technology has already developed into an important technological means. As a special additive manufacturing process, it is widely used in the field of life sciences to produce biologically active in vitro tissues, organs, as well as in vitro implants and repair patches adapted to biological functions through 3D bioprinting.
IIProduct Features
n Medical grade clean space: room temperature~40 ℃ controllable environmental temperature; 99.99% HEPA high-efficiency filtration; 275nm UV-C sterilization.
n Multi process module design: Micro extrusion process (pneumatic, mechanical); Light forming process; Electrostatic forming process.
n High precision printing: high-precision motion control platform; Dual shock absorber device; Micro nano level printing accuracy.
n Microscopic process monitoring: equipped with a macro monitoring system; Real time monitoring and feedback; Automatic focusing and global monitoring.
n Multi material compatibility: hydrogel materials/polymer materials; Photosensitive materials/cellular materials.
n Heterogeneous co spot forming: Multi material composite printing.
IIIapplicationfield
n Soft tissue products: artificial skin, breast reconstruction, heart patches/patches, blood vessels, cornea.
n Hard tissue products: artificial bone, tracheal tube, meniscus, ear cartilage/articular cartilage.
n Drug research: microfluidics, drug scaffolds, screening, sustained release.
4Main technical parameters
Product Model |
Research grade Biology3Dprinting equipment |
Professional level Biology3Dprinting equipment |
Clinical grade Biology3Dprinting equipment |
machine weight |
~500kg |
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ambient temperature |
25±5℃ |
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Maximum extrusion force |
≤ 9bar (clean cooled compressed air) |
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定位精度 |
±0.003mm |
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Minimum printing accuracy |
≥0.1mm |
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Minimum extrusion quantity |
≥0.0001μL/S |
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References
1. Liu, B., Li, H., Meng, F., Xu, Z., Hao, L., Yao, Y., Zhu, H., Wang, C., Wu, J., Bian, S., Lu, W.W., Liu, W., Pan, H., Zhao, X., 2024. 4D printed hydrogel scaffold with swelling-stiffening properties and programmable deformation for minimally invasive implantation. Nat Commun 15, 1587.
2. Wang, L., Wang, K., Yang, M., Yang, X., Li, D., Liu, M., Niu, C., Zhao, W., Li, W., Fu, Q., Zhang, K., 2024. Urethral Microenvironment Adapted Sodium Alginate/Gelatin/Reduced Graphene Oxide Biomimetic Patch Improves Scarless Urethral Regeneration. Advanced Science 11, 2302574.
3. Zhang, Y., Li, D., Liu, Y., Peng, L., Lu, D., Wang, P., Ke, D., Yang, H., Zhu, X., Ruan, C., 2024. 3D-bioprinted anisotropic bicellular living hydrogels boost osteochondral regeneration via reconstruction of cartilage–bone interface. The Innovation 5, 100542.
4. Jiang, Y., Zhou, C., Yang, X., & Ke, D. (2025). 3D printed bioactive coated scaffolds boost osteogenesis and angiogenesis via the regulation of scaffold microstructure.Biofabrication,17(3), 035017.
5. Jiang, Y., Xi, G., Zhou, C., Xu, H., Yang, X., & Ke, D. (2025). Synergistic bone regeneration by surface-modified 3D-printed PCL/β-TCP scaffolds in various animal defect models. International Journal of Bioprinting, 11(6), 390-406.
6. Liu, J., Fang, W., Wang, K., Ma, Z., Yan, J., Yang, M., Jin, Y., Liu, M., Yang, X., Li, W., Fu, Q., Zhang, Y., Zhang, K. (2026). Biomimetic Urethra‐on‐a‐Chip Platform for Modelling Fibrosis: 3D‐Printing and Near‐Field Electrospinning in BAM‐Functionalized Microenvironment. Advanced Materials, e21431.