HOW UCLA STEM CELL RESEARCH IS TRANSFORMING MEDICINE

Glossary

Induced pluripotent stem cells

iPSCs are adult cells — typically skin or blood — that have been reprogrammed in the lab to behave like stem cellsCells that have the ability to differentiate into multiple types of cells and make an unlimited number of copies of themselves.stem cellsCells that have the ability to differentiate into multiple types of cells and make an unlimited number of copies of themselves., giving them the potential to become any of the cell types found in all major tissues in the body. Because they are made from a patient's own cells, they carry that person's unique genetic code, making them a powerful tool for disease research and personalized medicine

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New to stem cell research? Start with our overview of all stem cell types.

What is reprogrammingIn stem cell research, scientists can reprogram cells that have undergone differentiation, such as skin or blood cells, to revert back into an embryonic-like state. The resulting cells are called induced pluripotent stem cells.reprogrammingIn stem cell research, scientists can reprogram cells that have undergone differentiation, such as skin or blood cells, to revert back into an embryonic-like state. The resulting cells are called induced pluripotent stem cells.?

To understand how iPSC reprogramming works, it helps to understand what stem cellsCells that have the ability to differentiate into multiple types of cells and make an unlimited number of copies of themselves.stem cellsCells that have the ability to differentiate into multiple types of cells and make an unlimited number of copies of themselves. naturally do. When a stem cell divides, one of the resulting cells begins the long process of specialization — gradually committing to become a neuron, a blood cell, a liver cell. The other remains a stem cell, preserving the body's reserve. Reprogramming reverses that journey: it instructs a mature, already-specialized cell to forget its identity and return to that earlier, uncommitted state.

How are iPSCs made?

Creating an induced pluripotent stem cell begins with something remarkably ordinary: a small sample of a patient's own skin or blood cells, collected and brought to the laboratory. Scientists introduce a carefully selected set of genes — known as reprogramming factors — that instruct the cell to revert to a pluripotent state. From a single patient sample, scientists can generate an unlimited supply of these cells, then guide them toward becoming neurons, heart muscle cells, liver cells, blood cells, and more.

Why does this matter for patients?

Because iPSCs carry the patient's own genetic code, they offer something embryonic stem cellsPluripotent stem cells that give rise to every cell type in the adult body. They are derived from the inner cell mass of a blastocyst.embryonic stem cellsPluripotent stem cells that give rise to every cell type in the adult body. They are derived from the inner cell mass of a blastocyst. cannot: a perfectly personalized model of that individual's biology. This makes them invaluable not just for studying how diseases develop, but for testing whether a specific therapy will work — or cause harm — in that particular patient.

2008
year UCLA scientists successfully created human iPSCs
200+
human cell types iPSCs can become
4
UCLA researchers who made history

What does iPSC research mean for patients?

If you or someone you love has been affected by a disease that currently has limited treatment options, iPSC research may offer reason for hope. At UCLA, patients and families play an essential role in this work — donating cells that allow our scientists to study diseases in the laboratory and work toward new therapies. We know that research timelines can feel frustratingly slow when you're living with a diagnosis. 

Our For Patients & Families page is a resource for understanding where the science stands, what clinical trials may be available, and how to get involved.

A doctor walks with a patient in a building hallway

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