Active Digestion, Kidneys & Other Organs NIHR-supported project Heart, Stroke & Blood

Advancing translational cell therapy for Hirschsprung disease

In plain English

AI plain-English summary

Babies born with Hirschsprung disease are missing nerve cells in their lower bowel, and surgeons are now testing whether lab-grown replacement nerve cells can restore normal gut function. The standard treatment—removing the affected section of bowel—often leaves children with lifelong constipation, incontinence, or bowel inflammation. This project transplants enteric nervous system progenitors, derived from human pluripotent stem cells, into Hirschsprung-affected gut tissue to see whether the cells integrate and fire correctly. The team is also testing how common immunosuppressive drugs affect the transplanted cells, and developing genetically modified “universal” donor cells that could evade immune rejection without long-term drug regimens. If the approach works, it could replace a crude surgical resection with a regenerative repair that restores the gut’s own nerve network. That would shift treatment from managing chronic digestive problems to preventing them in the first place. The work is still at the preclinical stage—the cells are being tested in human gut tissue in the lab—so no timeline for patient use exists yet. But the study directly addresses the main barrier to any cell therapy for Hirschsprung disease: getting donor cells to survive, connect, and function inside a hostile immune environment.

View original technical description
This is a student study that will be taking place under 20DS28. This study explores a potential regenerative treatment for Hirschsprung disease (HSCR), a serious intestinal condition caused by missing nerve cells in the bowel. While surgery is the standard treatment, it often leads to lifelong digestive issues. The research focuses on transplanting enteric nervous system (ENS) progenitors derived from human pluripotent stem cells (hPSCs) into HSCR-affected gut tissue to assess their ability to integrate and function. It also examines how immunosuppressive drugs affect these cells and aims to develop genetically modified "universal" ENS progenitors to reduce immune rejection. By addressing these challenges, the study hopes to lay the groundwork for a future cell-based therapy for HSCR.

Researchers

Conor McCann (Principal Investigator)

Related Research

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Enteric nervous system progenitor cells from aganglionic gut for Hirschsprung's therapies
Hawaii v1

Original classification

Accelerating novel therapies

Plain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research.