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Michael, S.

Publications and source records attributed to Michael, S..

2 recordsLinked to original sources

A Versatile Polypharmacology Platform Promotes Cytoprotection and Viability of Human Pluripotent and Differentiated Cells

Clinical translation of human pluripotent stem cells (hPSCs) requires advanced strategies that ensure safe and robust long-term growth and functional differentiation. Pluripotent cells are capable of extensive self-renewal, yet remain highly sensitive to environmental perturbations in vitro, posing challenges to their therapeutic use. Here, we deployed innovative high-throughput screening strategies to identify a small molecule cocktail that dramatically improves viability of hPSCs and their differentiated progeny. We discovered that the combination of Chroman 1, Emricasan, Polyamines, and Trans-ISRIB (CEPT) enhanced cell survival of genetically stable hPSCs by simultaneously blocking several stress mechanisms that otherwise compromise cell structure and function. In proof-of-principle experiments we then demonstrated the strong improvements that CEPT provided for several key applications in stem cell research, including routine cell passaging, cryopreservation of pluripotent and differentiated cells, embryoid body and organoid formation, single-cell cloning, genome editing, and new iPSC line generation. Thus, CEPT represents a unique polypharmacology strategy for comprehensive cytoprotection, providing a new rationale for efficient and safe utilization of hPSCs. Conferring cell fitness by multi-target drug combinations may become a common approach in cryobiology, drug development, and regenerative medicine.

cell biology

Keeping it clean: the cell culture quality control experience at the National Center for Advancing Translational Sciences

Quality control monitoring of cell lines utilized in biomedical research is of critical importance, and is critical for reproducibility of data. Two key pitfalls in tissue culture are 1) cell line authenticity, and 2) mycoplasma contamination. As a collaborative research institute, the National Center for Advancing Translational Sciences receives cell lines from a range of commercial and academic sources, that are adapted for high-throughput screening. Here, we describe the implementation of a routine NCATS-wide mycoplasma testing and short-tandem repeat (STR) testing for cell lines. Initial testing identified a >10% mycoplasma contamination rate, but the implementation of clearly defined protocols that included immediate destruction of contaminated cell lines wherever possible has led to a much-reduced mycoplasma contamination rate, and data for >2,000 cell line samples tested over 3 years, and case studies are provided. STR testing of 170 cell lines with established STR profiles revealed only 5 mis-identified cell lines received from external labs. The data collected over the three years since implementation of this systematic testing demonstrates the importance of continual vigilance for rapid identification of problem cell lines, for ensuring reproducible data in translational science research.

cell biology