Completed Heart, Stroke & Blood Pregnancy, Children & Inherited Conditions

Derivation of clinical grade human embryonic stem cell lines for therapeutic applications

In plain English

AI plain-English summary

Embryonic stem cells must be produced to pharmaceutical-grade standards before they can be tested as treatments for patients. Currently, these cells can only be used in laboratory research, not in human therapies. This project aims to change that by creating human embryonic stem cell lines that are free of infectious agents, free of animal contaminants, and genetically stable—meeting a set of manufacturing rules known as Good Manufacturing Practice (GMP). Without such cell lines, potential stem-cell therapies for heart disease, type 1 diabetes, Parkinson’s disease, and motor neurone disease cannot move from the lab into clinical trials. If successful, the project will deposit the resulting cell lines in the UK Stem Cell Bank, making them freely available to the medical community. That would give researchers across the country a standardised, safe starting material for developing and testing new treatments. This is a necessary piece of infrastructure for regenerative medicine—the kind of behind-the-scenes work that must happen before any therapy can reach a patient.

View original technical description
In future it might be possible to use stem cells to treat diseases for which we currently have no cure. These include, heart disease (the biggest killer in the UK), Juvenile (type 1) diabetes, and degenerative neurological conditions such as Parkinson s and Motor Neurone disease. But before we can test potential therapies on patients we must create cell lines that are safe (free of infectious agents and possible animal contamination) and genetically stable. At the moment embryonic stem cells can only be used for reseach. This project aims to efficently produce embryonic stem cells to laboratory standards (called Good Manufacturing Practice, GMP) that allow them to be used for treatment of patients. The cell lines will be deposited in the UK Stem Cell Bank and will be freely available to the medical community.

View the original record at the funder ↗

Researchers

Harry Moore (Principal Investigator)

Related Research

Grants with similar aims, by meaning.

Derivation of clinical grade embryonic stem cell lines
Derivation of clinical grade embryonic stem cell lines in Manchester
Generation of human embryonic stem cell lines with clinically relevant mutations
Defining the prerequisites of naive pluripotent human embryo cells for self-renewal in culture
UK Stem Cell Bank - Third Phase

Original classification

Research Grant

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