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For the cryopreservation of iPSCs derived from various sources,such as blood cells, epithelia cells, and fibroblasts

iPSC Cryopreservation Medium

CS-IPS-D1

For the cryopreservation of iPSCs derived from various sources, such as blood cells, epithelial cells, and fibroblasts


For the cryopreservation of cell aggregates and individual cells
  • GMP-compliant management with fully PRC Pharmacopoeia ingredients

  • High-viability, high-functional activity and well-maintained stemness



Ordering Information of iPSC Cryopreservation Medium



iPSC Cryopreservation Medium

10% DMSO

100ml

CS-IPS-D1



For details about the products, delivery terms or price quote, please contact us!


What is iPSC Cryopreservation Medium?


Induced pluripotent stem cells (iPSCs) are reprogrammed stem cells restored to an undifferentiated, pluripotent state, enabling them to differentiate into nearly any cell type in the body. Due to their immense value in scientific research and potential therapeutic uses, effective long-term preservation via cryopreservation is crucial. iPSC Cryopreservation Medium is a specially designed solution tailored for freezing iPSCs, helping to maintain their viability and pluripotency throughout the process. Cryopreservation cools the cells to extremely low temperatures—usually in liquid nitrogen—to stop metabolic activity and cell division, allowing safe storage and subsequent thawing with minimal impact on cell quality or characteristics.


What is iPSC Cryopreservation Medium used for?




For the cryopreservation of iPSCs derived from various sources,such as blood cells, epithelia cells, and fibroblasts

iPSC Freezing Media FAQs

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Does the inclusion of DMSO in IPSC freezing media significantly influence the differentiation process of iPSCs?

No, DMSO in IPSC freezing media has a negligible effect on differentiation.

Related Cryopreservation Media
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Customer Case|CS-PM-D1 Enables High-Quality CBMC Cryopreservation Key Points for Evaluating Cryopreservation Effectiveness and Sample Transfer CellStore Stem Cell Cryopreservation Medium: Powering China's Stem Cell Therapy Revolution in 2025 Critical Considerations for Effective Cryopreservation of Cells and Tissues: from Experimental Design to Protocol Execution Reshaping the Microcosm of Life: Let 3D Models Say Goodbye to the "Frostbite" Era How to Freeze and Thaw Cells with Cell Freezing Medium? How to Choose the Right Tissue Culture Media? Cryopreservation Best Practices 8 Components of Tissue Culture Media Homemade freezing medium or commercial freezing medium? Simplifying PBMC Cryopreservation without Compromise — Application 1 Simplifying PBMC Cryopreservation: Direct Freezing of Whole Blood Application 2 How Does Cryopreservation Media Protect Cells During Freezing and Long-Term Storage? Cryopreservation of Embryos Advantages What Is Cryopreservation of Stem Cells and Is It Worth It? Does Cryopreservation Impact T Cell Viability and Therapeutic Efficacy? A Stable Freeze–Thaw Step Can Make All The Difference In Cd34⁺ Cell Workflows. Why Does “dead volume” Still Challenge Automated Cgt Manufacturing — And How Can We Design Around It Instead Of Fighting It? Case Sharing | Clinical Application: Performance Interpretation of CS-SC-D1 Cryopreservation Medium Technology Sharing | Rethinking CHO Cell Banking: Toxicity, Workflow Burden & Simpler Operations CS-DX-N2 Keeps >90% Of Cells Alive, With Markers Virtually Unchanged From Fresh What Happens Wii Cell Cryopreservation Data After 3 Or Even 6 Months Of Storage?
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