Cat.#: BBM-3C-091
Description | 3D 10x CB-Buffer (pH 7.2), a buffer solution, provides a cell environment at pH 7.2 for the formation of slow-gelling 3D hydrogels. |
Size | 600 µL |
Storage | -20°C to -80°C |
Shipping | Dry ice |
Applications | Used with other components to establish 3-D cell cultures. |
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Cat.# | Name | Description | Price |
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BBM-3C-088 | 3D F-Dextran |
3D F-Dextran consists of maleimide-functionalized dextran (Mal-Dextran), which can be used together with other components PEG-Link or CD-Link to set up cell-compatible hydrogels.
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inquiry |
BBM-3C-074 | 3D F-Dextran-CD Hydrogel Kit |
3D Dextran-CD Hydrogel Kit contains the necessary reagents for creating hydrogels that gel fast and are compatible with living cells, which are maleimide functionalized dextran (Mal-Dextran), and CD-Link, a cross-linking agent. The formation of a gel through the stable bonding of thiol groups on CD-Link with maleimide groups on the Mal-Dextran, when the two reagents are combined.
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inquiry |
BBM-3C-084 | 3D CD-Link |
When the 3D CD-Link molecule, which is made up of a polyethylene glycol-peptide conjugate with thiol groups on both ends, is mixed with polymers Mal-PVA, Mal-Dextran, SG-PVA, and SG-Dextran, the thiol groups on CD-Link react with thiol-reactive groups on the polymers, forming stable thioether bonds, thus leading to the creation of the hydrogel.
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inquiry |
BBM-3C-083 | 3D PEG-Link |
3D PEG-Link molecule contains polyethylene glycol that has a thiol at each end. When it is mixed with polymers, such as Mal-PVA, Mal-Dextran, SG-PVA, and SG-Dextran, the thiol groups on PEG-Link create stable thioether bonds with thiol-reactive groups on the polymers, leading to the formation of the hydrogel.
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inquiry |
BBM-3C-085 | 3D HyLink |
3D HyLink molecule consists of hyaluronic acid carrying thiol groups along its backbone. When combined with polymers SG-PVA and SG-Dextran, thiol groups on HyLink form stable thioether bonds with the thiol-reactive groups on the polymers, which results in the formation of the hydrogel.
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inquiry |
BBM-3C-080 | 3D S-Life PVA-CD Hydrogel SG Kit |
3D PVA-CD Hydrogel Kit contains the necessary reagents for creating hydrogels that gel slowly and are compatible with living cells, which are polymeric SG-PVA and CD-Link, a cross-linking agent. The formation of a gel through the stable bonding of thiol groups on CD-Link with thiol-reactive groups on SG-PVA, when the two reagents are combined at physiological pH (pH 7.2).
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inquiry |
BBM-3C-081 | 3D Dextran-HA Hydrogel Kit |
3D Dextran-HA Hydrogel Kit contains the necessary reagents for creating hydrogels containing hyaluronic acid, which are SG-Dextran and HyLink, a thiol-functionalized hyaluronic acid crosslinker. The formation of a gel through the stable bonding of thiol groups on HyLink with thiol-reactive groups on SG-Dextran, when the two reagents are combined at physiological pH (pH 7.2).
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inquiry |
BBM-3C-079 | 3D S-Life PVA-PEG Hydrogel Kit |
3D PVA-PEG Hydrogel Kit contains the necessary reagents for creating hydrogels that gel slowly and are compatible with living cells, which are the polymeric SG-PVA and PEG-Link, a cross-linking agent. The formation of a gel through the stable bonding of thiol groups on PEG-Link with thiol-reactive groups on SG-PVA, when the two reagents are combined at physiological pH (pH 7.2).
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inquiry |
BBM-3C-120 | 3D Hydrogel Kit (Native) |
3D Hydrogel Kit (Native), a natural, animal-free, ready-to-use hydrogel, creates a 3D cell culture environment that mimics the extracellular matrix (ECM) to support cell growth and differentiation.
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BBM-3C-092 | 3D Cell Culture Kit |
3D Cell Culture Ki is a ready-to-use bioactive gel that simulates the microenvironment and morphological structure of three-dimensional tissues in vivo to provide a three-dimensional microenvironment similar to the in vivo extracellular matrix for cell culture in vitro and in vivo experiments, supporting the three-dimensional growth of various cells.
It does not contain antigenic substances and animal-derived ingredients with no immunogenicity, stable and clear ingredients, a small difference between batches, highly reproducible experiments, and is easy to operate, only needs to operate at RT with no ice required.
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