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Surface-engineered substrates for improved human pluripotent stem cell culture under fully defined conditions. | LitMetric

AI Article Synopsis

  • The study introduces a new culture system for human pluripotent stem cells that eliminates the need for a feeder layer by modifying standard cell culture plastics with UV/ozone radiation.
  • By optimizing the chemical and geometric properties of these surfaces, the researchers successfully enhance cell aggregation and significantly boost cell growth compared to traditional feeder-based cultures.
  • This innovative xeno-free substrate not only increases cell yield but also supports advanced techniques like reprogramming and gene targeting, making it ideal for clinical applications and standardized disease modeling.

Article Abstract

The current gold standard for the culture of human pluripotent stem cells requires the use of a feeder layer of cells. Here, we develop a spatially defined culture system based on UV/ozone radiation modification of typical cell culture plastics to define a favorable surface environment for human pluripotent stem cell culture. Chemical and geometrical optimization of the surfaces enables control of early cell aggregation from fully dissociated cells, as predicted from a numerical model of cell migration, and results in significant increases in cell growth of undifferentiated cells. These chemically defined xeno-free substrates generate more than three times the number of cells than feeder-containing substrates per surface area. Further, reprogramming and typical gene-targeting protocols can be readily performed on these engineered surfaces. These substrates provide an attractive cell culture platform for the production of clinically relevant factor-free reprogrammed cells from patient tissue samples and facilitate the definition of standardized scale-up friendly methods for disease modeling and cell therapeutic applications.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3219112PMC
http://dx.doi.org/10.1073/pnas.1114854108DOI Listing

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