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New signaling pathway enhances blood stem cell transplantation outcomes

Gene therapies are used to treat many different blood disorders. However, blood stem cells often fail to achieve their full potential after transplantation. UZH researchers have now explored an alternative...

News-Medical

Gene therapies are used to treat many different blood disorders. However, blood stem cells often fail to achieve their full potential after transplantation. UZH researchers have now explored an alternative signaling pathway that could provide a remedy.

Blood stem cells are rare cells in the bone marrow that produce the blood and immune cells needed throughout life, thus ensuring that the blood and immune system in the body are renewed. This is why they are also used in bone marrow transplantations and novel gene therapies for treating a range of blood disorders.

However, during gene therapy the stem cells need to be processed in the laboratory prior to transplantation, which can cause them to lose some of their regenerative capacity and reduce the chance of the overall treatment being successful. To improve the prospects of these therapies, researchers from the Institute for Regenerative Medicine (IREM) at the University of Zurich were looking for new signaling pathways that will improve the function of blood stem cells.

To do this, they investigated how a protein called activated protein C (aPC) influences human blood stem cells. They compared the effect of aPC with that of thrombin - another protein that is involved in blood clotting and acts via the same cell receptor, known as protease-activated receptor 1 (PAR1).

The work was a collaborative effort between UZH and the University of California, Santa Cruz (Dr. Marcel Rommel and Prof. Camilla Forsberg).

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