| Literature DB >> 24828440 |
Chia-Wei Chang1, Yi-Shin Lai1, Lawrence S Lamb2, Tim M Townes1.
Abstract
Human induced pluripotent stem cells (hiPSCs) have enormous potential for the treatment of inherited and acquired disorders. Recently, antigen-specific T lymphocytes derived from hiPSCs have been reported. However, T lymphocyte populations with broad T cell receptor (TCR) diversity have not been generated. We report that hiPSCs derived from skin biopsy are capable of producing T lymphocyte populations with a broad TCR repertoire. In vitro T cell differentiation follows a similar developmental program as observed in vivo, indicated by sequential expression of CD7, intracellular CD3 and surface CD3. The γδ TCR locus is rearranged first and is followed by rearrangement of the αβ locus. Both γδ and αβ T cells display a diverse TCR repertoire. Upon activation, the cells express CD25, CD69, cytokines (TNF-α, IFN-γ, IL-2) and cytolytic proteins (Perforin and Granzyme-B). These results suggest that most, if not all, mechanisms required to generate functional T cells with a broad TCR repertoire are intact in our in vitro differentiation protocol. These data provide a foundation for production of patient-specific T cells for the treatment of acquired or inherited immune disorders and for cancer immunotherapy.Entities:
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Year: 2014 PMID: 24828440 PMCID: PMC4020825 DOI: 10.1371/journal.pone.0097335
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Figure 1In vitro derivation of CD34+ HSC/HPC from Human iPSC.
Human iPSC (hiPSC-19 and hiPSC-21; prepared as illustrated in Figure 1) were cultured on OP9 feeders for 11 days. The cultures were harvested, and samples were analyzed by FACS (Day11 cells). All remaining cells were transferred to fresh OP9 plates and cultured for an additional 7 days. These cells were subsequently harvested and analyzed by FACS (Day18 cells).
Figure 2Generation of T lymphocytes from hiPSC and hESC (H1).
Human iPSC- and hESC-derived CD34+ cells were purified on anti-CD34+ magnetic beads after a two-step, 18-day co-culture with OP9 cells and subsequently plated on OP9-DL4 stromal cells. After 14, 21, 28, and 35 days of co-culture, the cells were analyzed for the indicated T cell markers. a, CD4, CD8. b,TCR-γδ and surface CD3. c,TCR-αβ and surface CD3. Similar data for hiPSC-19 are illustrated in Figure S10).
Figure 3T cell receptor typing.
CD34+ cells were affinity purified from Day18 cultures as described in the text and cultured on OP9-DL4. After 33 days of co-culture, the cells were analyzed by FACS. a, T cells derived from hiPSC-21 were typed for TCRVβ with the Beta Mark TCR Repertoire Kit from Beckman Coulter. The kit contains eight vials. Each vial contains 3 monoclonal antibodies that recognize 3 different Vβ chains. The antibodies were conjugated with FITC, PE or FITC plus PE. A total 24 different mAbs in this kit can detect 24 Vβ chains (belonging to 19 different families). The cells were gated on the CD3+ populations. b, TCRVγ, TCRVδ and NKG2D expression were examined in T cells derived from hiPSC-19 and hiPSC-21. The data were gated on CD3+ and TCR-γδ+ populations.
Highly diverse CDR3 regions in populations of T cells derived in vitro from hiPSC.
| Vβ | (D) region | Jβ | Vβ | Jβ |
|
| ACAGGG |
| V11-2 | J2-1 |
|
| ACA |
| V11-2 | J2-1 |
|
| GG |
| V11-2 | J1-4 |
|
| CAGGGGGCG |
| V11-2 | J1-4 |
|
| CAGGG |
| V11-2 | J1-4 |
|
| CCA |
| V11-2 | J1-4 |
|
| * |
| V11-2 | J2-7 |
|
| GG |
| V11-2 | J2-7 |
|
| GGGG |
| V11-2 | J2-5 |
|
| GGACAGG |
| V11-2 | J2-5 |
|
| ACAGGG |
| V11-2 | J2-5 |
|
| CAGGGGGCG |
| V11-2 | J1-2 |
|
| CAGGG |
| V11-1 | J1-4 |
|
|
|
| V7-2 | J2-3 |
|
| GACAGGG |
| V7-2 | J1-2 |
|
| AGG |
| V18 | J1-2 |
|
| CAGGGGG |
| V25-1 | J1-1 |
|
| CAACA |
| V25-1 | J1-1 |
|
| G |
| V2 | J1-1 |
|
| * |
| V19 | J2-1 |
Sequences of 20 TCR-β cDNA clones. Productive rearrangements were detected for 20 of 22 randomly selected clones.
Sequences between Vβ and Jβ were designated D regions. *Clones in which no Vβ and Jβ sequences were detected around the V(D)J junction region.
Figure 4T cell functional assays.
a, Day30 T cells derived from hiPSC-19, day 37 T cells derived from H1 and human PBMC primary T cells were stimulated with anti-CD3/28 beads for 3 days before FACS analysis of activation markers CD25 and CD69. The data were gated on CD3+ populations. b, Day29 T cells derived from hiPSC-19 and hiPSC-21 were stimulated by PMA and ionomycin for 12 hrs before analysis of the intracellular proteins TNF-α, IFN-γ, IL-2, Granzyme-B, and Perforin. Cells were gated on CD3+ and CD56- populations.