Press release - 14/08/2025 Freezing brain tumor cells in a dormant state Every brain tumor is made up of cells in successive stages of activation. Researchers have now analyzed the individual structure of these activation pyramids in malignant brain tumors. In doing so, they discovered a signaling protein that slows down the transition from a dormant to an activated state by epigenetically reprogramming the cells. The hope is that this will permanently freeze cancer cells in a dormant state and thus halt tumor growth.
Press release - 12/08/2025 Biomarkers for Brain Insulin Resistance Discovered in the Blood If the brain no longer responds properly to insulin (insulin resistance), this can lead to overweight, diabetes, and Alzheimer's disease. Researchers at the DZD in Potsdam and Tübingen have discovered small chemical modifications to genetic material (epigenetic changes*) in the blood that indicate how well the brain responds to insulin. These markers could help to detect insulin resistance in the brain – by means of a simple blood test.
Press release - 11/08/2025 The Cerebral Cortex Ages Less than Thought The human brain ages less than thought and in layers – at least in the area of the cerebral cortex responsible for the sense of touch. Researchers at DZNE, the University of Magdeburg, and the Hertie Institute for Clinical Brain Research at the University of Tübingen come to this conclusion based on brain scans of young and older adults in addition to studies in mice.
Press release - 05/08/2025 Playing Dominos: how an artificial protein emerges from fitting together individual components The targeted engineering of artificial proteins with unique properties – that is possible with the assistance of a novel method developed by a research team of Heidelberg University. It centers around a new AI model. This allows for forecasting how two proteins have to be fitted together at the molecular level from individual parts – subunits – in order to engineer a functional, adjustable new protein.
Press release - 04/08/2025 FOXP1 syndrome: Potential therapeutic approach discovered for rare language development disorder FOXP1 syndrome is a congenital disorder in which the brain development of affected children is severely impaired due to a genetic variant. A research team from the Medical Faculty Heidelberg at Heidelberg University has now demonstrated in mice, that the inhibition of a specific enzyme in the brain can improve abnormal behavior and immune cell dysfunction in the brain. The results have been published in the journal Advanced Science.
Press release - 01/08/2025 Early Pancreatic Cancer Detection Tumors of the pancreas seldom cause symptoms in their early stages. This means that in many cases, they are not diagnosed until late, when the chances of successful treatment are poor. A new non-invasive diagnostic method designed by Fraunhofer researchers is set to make it possible to detect this aggressive form of cancer early on with high accuracy, significantly improving the prognosis for treatment.
Press release - 01/08/2025 A Less Debilitating Approach to Cancer Diagnosis Less radiation exposure during diagnosis and treatment for breast and lung cancer: New Fraunhofer method combines X-ray imaging and radar. In the MultiMed project, which explores multimodal medical imaging in 3D, researchers are developing a method that combines X-ray imaging and radar. It´s not only expected to improve the accuracy and efficacy of diagnosing, monitoring and treating breast and lung cancer but also lighten the burden on patients.
Press release - 01/08/2025 In science we trust? Six takeaways from a Science and Society conference EMBL's latest Science and Society conference brought together researchers, ethicists, communicators, policy professionals, and more to discuss the thorny question of trust in science.
Press release - 29/07/2025 New method to design custom protein binder Designing protein binders from scratch has long been a daunting challenge within the field of computational biology. Researchers have now developed an innovative, training-free pipeline that uses the fundamental principle of shape complementarity to design site-specific protein binders, which are then optimised to fit precisely onto chosen target sites. The researchers tested this on proteins linked to cancer.
Press release - 28/07/2025 New Max Planck Center with South Korea deepens biomedical research Scientists at the Max Planck Institutes for Medical Research in Heidelberg with its new departments based in Heilbronn, and for Neurobiology of Behavior – caesar in Bonn, and at the Institute for Basic Science at Yonsei University in Seoul will pool their expertise in future. The aim of the new Max Planck Center is to visualize cellular processes deep within human tissue and influence them in a targeted manner — without damaging the tissue.
Press release - 24/07/2025 Solutions that minimise clinical waste and maximise recycling How can the transformation to increase sustainability in hospitals succeed? Participants in the SustainMed project presented their answers at the closing event on 27 June 2025 in Stuttgart. The Ministry of the Environment, Climate Protection and the Energy Sector Baden-Württemberg provided approximately 500,000 euros in funding to develop solutions for goals such as reducing volumes of waste in hospitals.
Press release - 24/07/2025 The origin of evil: stem cell-like cells are the reason for relapses of blood cancer in children and adolescents Stem cell-like leukemia cells are responsible for relapses in children and adolescents with a certain type of blood cancer, T-ALL. Researchers at the Hopp Children's Cancer Center Heidelberg (KiTZ), the Molecular Medicine Partnership Unit and the German Cancer Research Center were able to show this in a study. The results could help to overcome resistance in this form of blood cancer and prevent relapses.