Efficient Human IPS Cell Derivation by a Non-integrating Plasmid from Blood Cells with Unique Epigenetic and Gene Expression Signatures
Overview
Authors
Affiliations
To identify accessible and permissive human cell types for efficient derivation of induced pluripotent stem cells (iPSCs), we investigated epigenetic and gene expression signatures of multiple postnatal cell types such as fibroblasts and blood cells. Our analysis suggested that newborn cord blood (CB) and adult peripheral blood (PB) mononuclear cells (MNCs) display unique signatures that are closer to iPSCs and human embryonic stem cells (ESCs) than age-matched fibroblasts to iPSCs/ESCs, thus making blood MNCs an attractive cell choice for the generation of integration-free iPSCs. Using an improved EBNA1/OriP plasmid expressing 5 reprogramming factors, we demonstrated highly efficient reprogramming of briefly cultured blood MNCs. Within 14 days of one-time transfection by one plasmid, up to 1000 iPSC-like colonies per 2 million transfected CB MNCs were generated. The efficiency of deriving iPSCs from adult PB MNCs was approximately 50-fold lower, but could be enhanced by inclusion of a second EBNA1/OriP plasmid for transient expression of additional genes such as SV40 T antigen. The duration of obtaining bona fide iPSC colonies from adult PB MNCs was reduced to half (∼14 days) as compared to adult fibroblastic cells (28-30 days). More than 9 human iPSC lines derived from PB or CB blood cells are extensively characterized, including those from PB MNCs of an adult patient with sickle cell disease. They lack V(D)J DNA rearrangements and vector DNA after expansion for 10-12 passages. This facile method of generating integration-free human iPSCs from blood MNCs will accelerate their use in both research and future clinical applications.
High Mobility Group A1 Chromatin Keys: Unlocking the Genome During MPN Progression.
Resar L, Luo L Int J Mol Sci. 2025; 26(5).
PMID: 40076747 PMC: 11899949. DOI: 10.3390/ijms26052125.
HMGA1 acts as an epigenetic gatekeeper of ASCL2 and Wnt signaling during colon tumorigenesis.
Luo L, Kim J, Herrera I, Wu S, Wu X, Park S J Clin Invest. 2025; 135(3).
PMID: 39895630 PMC: 11785931. DOI: 10.1172/JCI184442.
Human iPSC Reprogramming Success: The Impact of Approaches and Source Materials.
Pozner T, Grandizio C, Mitchell M, Turan N, Scheinfeldt L Stem Cells Int. 2025; 2025:2223645.
PMID: 39850337 PMC: 11756937. DOI: 10.1155/sci/2223645.
Tao R, Yue C, Guo Z, Guo W, Yao Y, Yang X Cell Regen. 2024; 13(1):21.
PMID: 39388038 PMC: 11467140. DOI: 10.1186/s13619-024-00204-y.
Wang E, Liu S, Zhang X, Peng Q, Yu H, Gao L Adv Sci (Weinh). 2024; 11(22):e2303471.
PMID: 38481061 PMC: 11165465. DOI: 10.1002/advs.202303471.