Press release - 10/02/2025 Medical textiles with infection protection In collaboration with Heraeus, the German Institutes of Textile and Fiber Research (DITF) are developing fibers and textiles with a novel infection protection system. The basis is an antimicrobial mechanism of action licensed from Heraeus and marketed under the name AGXX. The goal of the collaboration is to optimally integrate the AGXX technology into textile finishes and coatings and to incorporate it into fiber-spinnable polymers.https://www.gesundheitsindustrie-bw.de/en/article/press-release/medical-textiles-infection-protection
Press release - 07/02/2025 Spliceosome: How cells avoid errors when manufacturing mRNA The spliceosome, ensures that the genetic information from the genome, after being transcribed into mRNA precursors, is correctly assembled into mature mRNA. Splicing is a basic requirement for producing proteins. Researchers at the Heidelberg University Biochemistry Center (BZH) have succeeded for the first time in depicting a faultily “blocked” spliceosome at high resolution and reconstructing how it is recognized and eliminated in the cell. https://www.gesundheitsindustrie-bw.de/en/article/press-release/spliceosome-how-cells-avoid-errors-when-manufacturing-mrna
Press release - 07/02/2025 Multiple myeloma: When cancer cells break out of the bone marrow, a dangerous diversity arises A research team from the Heidelberg Medical Faculty, the German Cancer Research Center, the Berlin Institute of Health at Charité (BIH) and the Max Delbrück Center has discovered new details about the spread of the incurable bone marrow cancer multiple myeloma in the body: When the cancer cells break out of the bone and multiply outside the bone marrow, a wide variety of tumor cells arise, accompanied by a significantly altered immune response. https://www.gesundheitsindustrie-bw.de/en/article/press-release/multiple-myeloma-when-cancer-cells-break-out-bone-marrow-dangerous-diversity-arises
Project REVeyeVE - 06/02/2025 Targeted, virus-free gene therapy for the eye using degradable nanopropellers Eye diseases that result in blindness in young people are primarily caused by genetic mutations. An interdisciplinary team of researchers from the Universities of Tübingen and Heidelberg is developing an innovative gene therapy method using biodegradable, magnetic nanopropellers. These innovative nanopropellers can effectively deliver intact genes into the affected cells, offering a potential solution for treating genetic disorders of this kind.https://www.gesundheitsindustrie-bw.de/en/article/news/Targeted-virus-free-gene-therapy-for-the-eye-using-degradable-nanopropellers
Event - 09/07/2025 - 10/07/2025 Medical Technology Germany 2025 Ulm, Messe https://www.gesundheitsindustrie-bw.de/en/event/medical-technology-germany-2025
Press release - 23/01/2025 How the Ebola virus replicates in cells Like all viruses, the Ebola virus is dependent on host cells in order to replicate. Researchers at Heidelberg University Hospital, in collaboration with colleagues from the Friedrich Loeffler Institute, have been able to show for the first time using state-of-the-art imaging techniques how the replication compartments of the Ebola virus change during replication in infected cells.https://www.gesundheitsindustrie-bw.de/en/article/press-release/how-ebola-virus-replicates-cells
Press release - 23/01/2025 ERC Funding for „EmbryoNet-AI“ Konstanz biologist Patrick Müller receives a Proof of Concept Grant from the European Research Council for his project "EmbryoNet-AI". Its goal is the further development of an AI-supported platform for the automated evaluation of experiments – for example, in drug development.https://www.gesundheitsindustrie-bw.de/en/article/press-release/erc-funding-embryonet-ai
Event - 13/02/2025 Webinar on the biotech hub Singapore & Malaysia Online, Webinar https://www.gesundheitsindustrie-bw.de/en/event/webinar-biotech-hub-singapore-und-malaysia
Press release - 20/01/2025 New approach to fighting cancer: energy trap for tumor cells Glycolysis is an important sugar degradation pathway that cancer cells in particular depend on. Scientists at the German Cancer Research Center (DKFZ) have now shown that liver cancer cells in mice and humans depend on a key enzyme of glycolysis, Aldolase A. When it is switched off, glycolysis reverses from an energy-producing to an energy-consuming process. https://www.gesundheitsindustrie-bw.de/en/article/press-release/new-approach-fighting-cancer-energy-trap-tumor-cells
Event - 08/04/2025 - 10/04/2025 DMEA 2025 - Connecting Digital Health Berlin, Germany , Messe https://www.gesundheitsindustrie-bw.de/en/event/dmea-2025-connecting-digital-health
Event - 17/03/2025 - 19/03/2025 Bio Europe Spring 2025 Milano, Italy, Messe https://www.gesundheitsindustrie-bw.de/en/event/bio-europe-spring-2025
Press release - 20/01/2025 PAMSARC: New study at the NCT Heidelberg links research and clinical action Young patients suffering from two aggressive sarcoma types can now participate in the innovative PAMSARC therapy study at the NCT Heidelberg. The study uses molecular biological methods and tests the extent to which a new drug can improve the poor prognosis for these tumours.https://www.gesundheitsindustrie-bw.de/en/article/press-release/pamsarc-new-study-nct-heidelberg-links-research-and-clinical-action
Press release - 17/01/2025 The Minister President of Baden Wuerttemberg, Winfried Kretschmann, honors cutting-edge research at the Max Planck Institutes in Tübingen Winfried Kretschmann, the Minister President of Baden-Württemberg, Germany, visited the Max Planck Institutes for Biology Tübingen and Biological Cybernetics. During his tour, he commended the outstanding basic research in the natural sciences. He was particularly impressed by the innovative research projects spanning developmental and evolutionary biology, as well as neuroscience.https://www.gesundheitsindustrie-bw.de/en/article/press-release/minister-president-baden-wuerttemberg-winfried-kretschmann-honors-cutting-edge-research-max-planck-institutes-tubingen
Press release - 16/01/2025 New weapons against viruses Dr. Petr Chlanda, virologist and research group leader at the Heidelberg Medical Faculty of Heidelberg University, has been awarded more than 720,000 euros in funding from the European Union for his research into new therapies against viruses. His work is part of the interdisciplinary, international DEFENDER project, which is developing innovative approaches to combat emerging and re-emerging viruses. https://www.gesundheitsindustrie-bw.de/en/article/press-release/new-weapons-against-viruses
Event - 18/02/2025 - 19/02/2025 MedtecSUMMIT 2025 - For Innovators. For Leaders. For YOU Nürnberg, Germany , Registration deadline: 12/02/2025, Kongress/Symposium https://www.gesundheitsindustrie-bw.de/en/event/medtecsummit-2025-innovators-leaders-you
Event - 03/04/2025 Innovation for Health 2025 Rotterdam, Netherlands, Kongress/Symposium https://www.gesundheitsindustrie-bw.de/en/event/innovation-health-2025
Event - 11/02/2025 - 12/02/2025 EP PerMed Conference on Personalised Medicine Research Berlin , Conference https://www.gesundheitsindustrie-bw.de/en/event/ep-permed-conference-personalised-medicine-research
Event - 27/01/2025 - 30/01/2025 Arab Health 2025 Dubai, Messe https://www.gesundheitsindustrie-bw.de/en/event/arab-health-2025
Press release - 15/01/2025 Similarities discovered between vascular calcification and bone growth University of Tübingen research team observes biochemical process in living cells – indications of new approach to preventing heart attacks and strokes https://www.gesundheitsindustrie-bw.de/en/article/press-release/similarities-discovered-between-vascular-calcification-and-bone-growth
Press release - 14/01/2025 Epigenetics ensures placenta functioning If the development of blood vessels in the placenta is impaired, fetal growth retardation may result. Scientists from the German Cancer Research Center (DKFZ) and the Mannheim Medical Faculty of Heidelberg University discovered that the correct development of functioning blood vessels in the mouse placenta is controlled epigenetically: One of the enzymes that modify gene activity using methyl groups is responsible. https://www.gesundheitsindustrie-bw.de/en/article/press-release/epigenetics-ensures-placenta-functioning
Press release - 13/01/2025 New tool for synthetic biology Scientists at the University of Stuttgart have succeeded in controlling the structure and function of biological membranes with the help of "DNA origami". The system they developed may facilitate the transportation of large therapeutic loads into cells. This opens up a new way for the targeted administration of medication and other therapeutic interventions. https://www.gesundheitsindustrie-bw.de/en/article/press-release/new-tool-synthetic-biology
Save the date - 07/10/2025 - 08/10/2025 Diagnostics-4-Future Conference 2025 Konstanz, Germany , Kongress/Symposium https://www.gesundheitsindustrie-bw.de/en/event/diagnostics-4-future-conference-2025
Event - 05/02/2025 - 06/02/2025 Current trends in biomanufacturing: New modalities- opportunities for digitalization and automation Ulm, Kongress/Symposium https://www.gesundheitsindustrie-bw.de/en/event/current-trends-in-biomanufacturing-new-modalities-opportunities-for-digitalization-and-automation
Press release - 10/01/2025 MedTech Company KARL STORZ Acquires British AI Specialist Innersight Labs The MedTech company KARL STORZ announces the acquisition of the innovative software manufacturer Innersight Labs Ltd. (ISL) headquartered in London. In addition to state-of-the-art endoscopes, high-end medical devices, and integrated solutions for the operating room, KARL STORZ is also continuing to expand in innovative software solutions. Its large customer base, including top-class physicians worldwide, can now look forward to 3D models.https://www.gesundheitsindustrie-bw.de/en/article/press-release/medtech-company-karl-storz-acquires-british-ai-specialist-innersight-labs-1
New polymer for wound care - 09/01/2025 Thermoresponsive adhesive for pain-free removal of wound dressings Plasters or wound dressings can only perform their intended function if they adhere securely to the skin. However, they are often painful to remove, and in some cases, damage delicate newly formed tissue. Researchers at the University of Freiburg have developed an innovative polymer that adheres reliably at body temperature but can be easily and painlessly removed, leaving no residue, after being cooled.https://www.gesundheitsindustrie-bw.de/en/article/news/thermoresponsive-adhesive-pain-free-removal-wound-dressings