Establishing a co-differentiation culture system from pluripotent stem cells for studying human pancreatic development and disease
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AI plain-English summaryBeta cells that produce insulin are grown in a dish alongside the connective tissue cells that normally surround them in the pancreas, mimicking the real organ’s cellular neighbourhood. Most stem-cell models grow only one cell type at a time, missing the crucial conversations between different progenitor cells that guide organ development. This project builds a co-differentiation platform that simultaneously generates beta-cells and their mesenchymal neighbours from pluripotent stem cells, by manipulating developmental pathways from the earliest stages of gastrulation. The team will track lineage composition at multiple stages using qPCR, immunofluorescence, and single-cell RNA sequencing, aiming to produce beta-cells with greater functional maturity and a more realistic mesenchymal niche. If successful, this work could improve beta-cell replacement therapies for diabetic patients, who currently rely on donor islets or implants that often fail because the surrounding cellular environment is missing. The platform also allows researchers to probe how epithelial and mesenchymal cells shape one another during development, and to test spatial patterning using microfluidic gradients and synthetic organisers. Findings will be validated in mouse pancreatic explants. This is primarily fundamental science—understanding how organs build themselves through cell-to-cell crosstalk—but that knowledge directly informs better cell therapies.
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