VitroGel 3D High Concentration Kit with Dilution Solution Type 1
VitroGel® High Concentration Hydrogels are xeno-free, tunable hydrogels for researchers wanting full control to manipulate the biophysical and biological properties of cell culture environment.
Product Description
The tunability of the hydrogel gives the ability to create an optimized environment for cell growth. The solution transforms into a hydrogel matrix by simply mixing with the cell culture medium. No cross-linking agent is required. Cells cultured in this system can be easily harvested. The hydrogel is also injectable for in vivo studies. From 2D coating, 3D culture to animal injection, VitroGel makes it possible to bridge the in vitro and in vivo studies with the same platform system. VitroGel® High Concentration Mix & Match Build and create a customized multi-functional hydrogel by blending different types of VitroGel together. Available functional ligands are RGD, collagen, laminin and MMP.
- Tunable hydrogel strength
- Easy-to-use
- Xeno-free
- Work at room temperature
- Easy cell harvesting - 20 min protocol
- Mix & Match
- Transparent
- Injectable
What's the difference between VitroGel Dilution Solution Type 1 and Type 2
VitroGel Dilution Solution Type 1 contains sucrose to maintain the best osmolarity. Dilution Type 2 is sucrose-free. For most cell lines, VitroGel Dilution Solution Type 1 is recommended. VitroGel Dilution Solution Type 2 is for scientists working with cells that are sensitive to sugar.
Guide to select from the different versions of VitroGel
3D cell culture process in 20 min
(includes a 10-15 min waiting time for hydrogel stabilization)
Learn how to use the VitroGel® Systems with Demonstration Videos.
Product Citations
- (2023) Influence of the Hypoxia-Activated Prodrug Evofosfamide (TH-302) on Glycolytic Metabolism of Canine Glioma: A Potential Improvement in Cancer Metabolism Cancers
- Abduljauwad, S. N., Habib, T., & ur-Rehman, H. (2023) Clay microparticles for the enhancement of bone regeneration: in vitro studies Histochemistry and Cell Biology
- Greta Babakhanova, Anant Agrawal, Deepika Arora, Allison Horenberg, Jagat B. Budhathoki, Joy P. Dunkers, Joe Chalfoun, Peter Bajcsy, Carl G. Simon Jr (2023) Three-dimensional, label-free cell viability measurements in tissue engineering scaffolds using optical coherence tomography Journal of Biomedical Materials Research
- Keiko Omori, Meirigeng Qi, Mayra Salgado, Nelson Gonzalez, Lauren T. Hui, Kuan-Tsen Chen, Jeffrey Rawson, Lynn Miao, Hirotake Komatsu, Jeffrey S. Isenberg, Ismail H. Al-Abdullah, Yoko Mullen, Fouad Kandeel (2023) A scalable human islet 3D-culture platform maintains cell mass and function long-term for transplantation American Journal of Transplantation
- Petraroia, I., Ghidotti, P., Bertolini, G., Pontis, F., Roz, L., Balsamo, M., Suatoni, P., Pastorino, U., Ferretti, A. M., Sozzi, G., & Fortunato, O. (2023) Extracellular vesicles from subjects with COPD modulate cancer initiating cells phenotype through HIF-1α shuttling Cell Death & Disease
- Catalog Number
TWG001-TYPE1-TW - Supplier
TheWell - Size
- Shipping
RT