Cell Therapy eBook Series
Exploring Electroporation 3: iPSCs
Explore how MaxCyte’s flow electroporation® technology has helped scientists advance their iPSC research.
Induced pluripotent stem cells (iPSCs) have tremendous potential to transform human health. Their unique ability to differentiate into any cell type is important for disease modeling and both personalized and allogeneic regenerative medicine. Electroporation is a non-viral cell engineering method that promotes high efficiency and cell viability, saving time and reducing costs. We are proud to collaborate with leading researchers and innovators, working hand-in-hand to develop the next generation of stem cell therapies and disease models.
Content:
- Homozygous Correction of DYSF in Miyoshi Myopathy Patient iPSCs by ssODN Knockin
- Conditional Deletion of a Large DNA Fragment in iPSCs by ssODN Insertion of LoxP
- Generation of Heterozygous HLA-C iPSCs by ssODN Electroporation for Allogeneic Transplant
- Non-Viral Engineering of Human iPSCs to Manufacture Rejuvenated TCR T Cells
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