Minimizing time in culture: A prototypic autologous manufacturing workflow for monoclonal iPSC lines within seven weeks
Haberhausen, D.; Woehle, C.; Raab, C.; Ludwig, C.; Kuchler, T.; Barth, S.; Wuellner, U.; Bosio, A.; Johannsen, H.; Knoebel, S.
Show abstract
Induced pluripotent stem cells (iPSCs) hold great promise for both allogeneic and autologous cellular therapies. However, broad application and clinical translation is hindered by fragmented, complex and time-intensive workflows, resulting in high manufacturing costs, poor standardization and increased risk of genomic aberrations in derived iPSCs. In this study we developed a standardizable, automatable and time- efficient process for the derivation of monoclonal iPSC lines straight from skin including a comprehensive and cascaded OC strategy. We generated monoclonal iPSC lines derived from human skin punch biopsies of ten donors (age 49-81) via mRNA-based reprogramming that subsequently underwent comprehensive and thorough characterization of phenotypic and genetic properties. The use of a combined mechanical and enzymatic fibroblast isolation protocol and a transient non-integrative reprogramming technology allowed us to obtain 78 monoclonal iPSC lines, ready for banking, molecular characterization and further differentiation within seven weeks from initial sample processing to passage four iPSC lines. The phenotypical characterization via flow cytometry-based pluripotency marker expression and 2D-directed differentiation into the three germ layers showed low intra- and inter-donor variability over all generated lines. A combination of SNP array based CNV analysis followed by whole exome sequencing proved to be the most efficient approach for assessment of genomic integrity. Proof-of-concept experiments for closed system processing revealed that a substantial part of the most error-prone and technically demanding steps can be transferred to semi- automated, closed systems. In conclusion, the described protocol allows for time- efficient, standardizable and automatable generation of high-quality monoclonal iPSC lines from human skin punch biopsies within seven weeks, thus moving the field of autologous iPSC manufacturing one step further towards cost-efficient clinical implementation.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Transcriptomically-guided mesendoderm induction of human pluripotent stem cells using a systematically defined culture scheme 94%
- Optimizing PSC culture for generating neural organoids 92%
- Deciphering the heterogeneity of differentiating hPSC-derived corneal limbal stem cells through single-cell RNA-sequencing 92%
Similar papers in this journal
- Isolation of adipose tissue derived regenerative cells from human subcutaneous tissue with or without the use of an enzymatic reagent 92%
- Use of standard U-bottom and V-bottom well plates to generate neuroepithelial embryoid bodies 92%
- Characterization of CRISPR/Cas9 RANKL knockout mesenchymal stem cell clones based on single-cell printing technology and emulsion coupling assay as a low-cellularity workflow for single-cell cloning 91%
Similar papers in this journal
- Animal-Origin-Free Method for Generating Blood Vessel Organoids 94%
- In Vitro Expansion of Keratinocytes on Human Dermal Fibroblast-Derived Matrix Retains Their Stem-Like Characteristics 91%
- Investigating the role of molecular coating in human corneal endothelial cell primary culture using artificial intelligence-driven image analysis 91%
Similar papers in this journal
- Substrate elasticity does not impact on DNA methylation changes during differentiation of pluripotent stem cells 91%
- Single-Cell Transcriptomics Reveals Dynamics of NK Cell Expansion in a Feeder Cell-Free Culture of PBMCs - Implications for Immunotherapy 90%
- Use of cellular FAD autofluorescence as a label-free cellular attribute for the production of chimeric antigen receptor-T cells 89%
Similar papers in this journal
- Generation of twenty four induced pluripotent stem cell lines from twenty four members of the Lothian Birth Cohort 1936 93%
- Generation of human induced pluripotent stem cell (hiPSC) lines from patients with extreme high and low polygenic scores for QT interval 92%
- Decoding molecular markers and transcriptional circuitry of naive and primed states of human pluripotency 89%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.