Could the immune system help recovery from stroke?

This reaction has been seen as something that must be combated, but perhaps the immune system could in fact help with recovery following a stroke. A major new EU project, led by Lund University in Sweden and the Weizmann Institute in Israel, is going to study this question.

Stroke is a major public health problem, with 700 000 new cases in the EU and 30 000 new cases in Sweden each year. The EU is now investing EUR 12 million in the project TargetBraIn. The goal of the project is to gain a better understanding of the role of the immune system in stroke.

The immune system protects the body when its tissues are damaged for whatever reason. The cells of the immune system often produce inflammation, which has some negative effects, but which in time helps the original damage to heal.

Stroke is most commonly caused by a cerebral infarction (a blood clot in the brain), which starves the brain of oxygen. It is the damage caused by the lack of oxygen which activates the immune system and leads to inflammation. Until now, this has been seen as a wholly undesirable reaction. To emphasise the positive aspects of the immune system’s reaction is therefore something of a paradigm shift in the field. Professor Michal Schwartz and her research group in Israel have pioneered the study of the positive role of the immune system in repairing damaged nerve cells.

Professor Zaal Kokaia, head of the Stem Cell Centre at Lund University, has long worked with stem cell therapy for brain injuries. He led StemStroke, an EU project which researched the possibility of creating new nerve cells after a stroke through transplants or by encouraging the brain to form new cells. Zaal Kokaia and Michal Schwartz are now coordinator and deputy coordinator respectively of TargetBraIn (an acronym which stands for “Targeting Brain Inflammation for Improved Functional Recovery in Acute Neurodegenerative Disorders”).

“Within TargetBraIn we want to reinforce the positive effects of inflammation and reduce its negative effects. This could be achieved either by trying to change the immune system’s reactions or through stem cell therapy, or both! A combination of the two methods may produce the best results”, says Zaal Kokaia.

The research is still at the experimental stage, and the road to general application on patients will be long. However, as the population of Europe ages, stroke is becoming an increasingly costly disease, hence the EU investment in the field.

For more information, please contact Zaal Kokaia, +46 46 222 0276, +46 705 365917 or zaal.kokaia@med.lu.se.

Media Contact

Helga Ekdahl Heun idw

All latest news from the category: Life Sciences and Chemistry

Articles and reports from the Life Sciences and chemistry area deal with applied and basic research into modern biology, chemistry and human medicine.

Valuable information can be found on a range of life sciences fields including bacteriology, biochemistry, bionics, bioinformatics, biophysics, biotechnology, genetics, geobotany, human biology, marine biology, microbiology, molecular biology, cellular biology, zoology, bioinorganic chemistry, microchemistry and environmental chemistry.

Back to home

Comments (0)

Write a comment

Newest articles

Bringing bio-inspired robots to life

Nebraska researcher Eric Markvicka gets NSF CAREER Award to pursue manufacture of novel materials for soft robotics and stretchable electronics. Engineers are increasingly eager to develop robots that mimic the…

Bella moths use poison to attract mates

Scientists are closer to finding out how. Pyrrolizidine alkaloids are as bitter and toxic as they are hard to pronounce. They’re produced by several different types of plants and are…

AI tool creates ‘synthetic’ images of cells

…for enhanced microscopy analysis. Observing individual cells through microscopes can reveal a range of important cell biological phenomena that frequently play a role in human diseases, but the process of…

Partners & Sponsors