HYSC010
HyStem®-C Cell Culture Scaffold Kit
Trial Kit, For 2.5 mL of hydrogel scaffold solution
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storage temp.
−20°C
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Application
HyStem®-C cell culture scaffold kit has been used to prepare HyStem hydrogels to culture breast cancer cells.
Features and Benefits
Customizable, well characterized and consistent, Hystem-C hydrogel cell culture scaffolds provide a complex, three dimensional environment in which cells are able to proliferate, much as they would in vivo.
Hystem-C enables the attachment of a wide variety of cell types through Gelin-S (thiolated gelatin).
The Hystem-C Trial Kit enables researchers to evaluate the Hystem-C technology in their own hands and confirm that Hystem-C is the right choice for their research.
With Hystem-C, researchers can tailor the incorporation of ECM proteins and growth factors as well as the elasticity of the hydrogel and cell incorporation (encapsulations or top plating) to create the specific 3D environment required by their cells.
Hystem-C has been successfully used to expand human embryonic stem cells, human mesenchymal stem cells, neural progenitor cells, and hepatic progenitor cells.
- Customizable - each distinct cell type in a multicellular organism has its own unique microenvironment. Hystem-C offers the flexibility to tailor the environments of cultured cells to mimic their in vivo counterparts and optimize proliferation and differentiation.
- Synthetic - As a synthetic matrix, Hystem-C offers greater control of the cellular environment than ambiguous extracted ECM alternatives. All components are well characterized and consistently formulated. Hystem-C contains Hyaluronic acid (synthetic), Extralink (synthetic), Gelin-S (porcine), and Water.
- Biologically accurate - Rich in hyaluronic acid and denatured collagen, the Hystem-C hydrogel closely mimics the complex three dimensional cellular environments found in life, providing an optimal environment for culturing your cells.
Hystem-C enables the attachment of a wide variety of cell types through Gelin-S (thiolated gelatin).
The Hystem-C Trial Kit enables researchers to evaluate the Hystem-C technology in their own hands and confirm that Hystem-C is the right choice for their research.
With Hystem-C, researchers can tailor the incorporation of ECM proteins and growth factors as well as the elasticity of the hydrogel and cell incorporation (encapsulations or top plating) to create the specific 3D environment required by their cells.
Hystem-C has been successfully used to expand human embryonic stem cells, human mesenchymal stem cells, neural progenitor cells, and hepatic progenitor cells.
Customizable, well characterized and consistent, Hystem-C hydrogel cell culture scaffolds provide a complex, three dimensional environment in which cells are able to proliferate, much as they would in vivo.
- Customizable - each distinct cell type in a multicellular organism has its own unique microenvironment. Hystem-C offers the flexibility to tailor the environments of cultured cells to mimic their in vivo counterparts and optimize proliferation and differentiation.
- Synthetic - As a synthetic matrix, Hystem-C offers greater control of the cellular environment than ambiguous extracted ECM alternatives. All components are well characterized and consistently formulated. Hystem-C contains Hyaluronic acid (synthetic), Extralink (synthetic), Gelin-S (porcine), and Water.
- Biologically accurate - Rich in hyaluronic acid and denatured collagen, the Hystem-C hydrogel closely mimics the complex three dimensional cellular environments found in life, providing an optimal environment for culturing your cells.
Legal Information
Hystem is a registered trademark of BIOTIME, INC
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Hazard Statements
Precautionary Statements
Hazard Classifications
Eye Dam. 1 - Skin Irrit. 2 - Skin Sens. 1
Storage Class Code
10 - Combustible liquids
Certificates of Analysis (COA)
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Find documentation for the products that you have recently purchased in the Document Library.
Independently Tuning the Biochemical and Mechanical Properties of 3D Hyaluronan-Based Hydrogels with Oxime and Diels?Alder Chemistry to Culture Breast Cancer Spheroids.
Biomacromolecules, 18(12), 4373-4384 (2017)
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