Press release - 07/07/2026 Polyomaviruses: new approaches to prevention and treatment In people with severely compromised immune systems, the JC polyomavirus can trigger a currently untreatable, usually fatal brain disease. Now, an international research team looking at the viral capsid has identified binding sites for neutralizing antibodies; these sites could be used to halt infection with JC polyomaviruses.https://www.gesundheitsindustrie-bw.de/en/article/press-release/polyomaviruses-new-approaches-prevention-and-treatment
Press release - 07/07/2026 Prime Vector Technologies GmbH announces a license agreement with Boehringer Ingelheim to advance next generation cancer vaccine therapies Prime Vector Technologies GmbH (PVT), a clinical-stage biotechnology company focusing on the development of viral vector-based vaccines, today announced that it has entered into an agreement with Boehringer Ingelheim for the assignment of certain patents and the exclusive licensing of its Orf virus (ORFV) platform for the development of next-generation cancer vaccines.https://www.gesundheitsindustrie-bw.de/en/article/press-release/prime-vector-technologies-gmbh-announces-license-agreement-boehringer-ingelheim-advance-next-generation-cancer-vaccine-therapies
Press release - 03/07/2026 Vaccine Against Brain Tumors Shows Promising Long-Term Results A novel vaccination strategy against certain malignant brain tumors could fundamentally improve treatment for patients. Researchers from the German Cancer Research Center, Mannheim University Medical Center, Heidelberg University Hospital, and numerous partner institutions* have published encouraging long-term results from a clinical trial involving a vaccine that activates the immune system against a common genetic mutation in these tumors.https://www.gesundheitsindustrie-bw.de/en/article/press-release/vaccine-against-brain-tumors-shows-promising-long-term-results
Cancer prevention with a single jab - 20/05/2026 Therapeutic vaccine against HPV-induced tumours Persistent infections with human papillomaviruses (HPV) are the primary cause of cervical cancer. Researchers from Heidelberg have developed a promising therapeutic vaccine consisting of immunogenic virus peptides linked to silica nanoparticles, which is currently being investigated in preclinical studies. The vaccine activates specific cytotoxic T cells and is usable regardless of HLA type.https://www.gesundheitsindustrie-bw.de/en/article/news/therapeutic-vaccine-against-hpv-induced-tumours
Press release - 27/04/2026 Heidelberg and Mainz agree on joint innovation partnership - Strengthening the Neckar-Rhine-Main biotech region The cities of Heidelberg and Mainz want to work closely together in the future: Their aim is to further develop the Neckar-Rhine-Main region as an international innovation and biotech region. To this end, Heidelberg Mayor Würzner and Mainz Mayor Haase signed a MoU at Heidelberg City Hall on Friday, April 24, 2026. Those responsible for the central innovation and development structures of both cities also took part in the signing.https://www.gesundheitsindustrie-bw.de/en/article/press-release/heidelberg-and-mainz-agree-joint-innovation-partnership-strengthening-neckar-rhine-main-biotech-region
Press release - 14/04/2026 T-helper cells switch to self-protection mode under prolonged stress Chronic infections cause long-term changes in key immune cells. T helper cells suppress their immune function to ensure their survival. New targets for vaccines and cancer immunotherapies.https://www.gesundheitsindustrie-bw.de/en/article/press-release/t-helper-cells-switch-self-protection-mode-under-prolonged-stress-1
Press release - 18/02/2026 Shingles vaccination could slow cognitive decline New findings indicate that a shingles vaccination could not only reduce the risk of cognitive impairment and dementia, but also reduce disease progression among those living with dementia. https://www.gesundheitsindustrie-bw.de/en/article/press-release/shingles-vaccination-could-slow-cognitive-decline
Press release - 17/12/2025 mRNA rejuvenates aging immune system - the liver as a fountain of youth Can the weakened immune systems of older individuals be rejuvenated? Researchers from the DKFZ, HI-STEM*, and the Broad Institute have demonstrated that this is possible with an innovative approach. In a study, the team showed that mRNA technology can be used to transform the liver in mice into a temporary source of important immune regulatory factors that are naturally lost during aging. https://www.gesundheitsindustrie-bw.de/en/article/press-release/mrna-rejuvenates-aging-immune-system-liver-fountain-youth
Press release - 24/11/2025 Malaria Parasites move on Right-handed Helices With victims numbering in the millions, malaria is an infectious disease caused by the bite of a mosquito carrying the malaria parasite. After penetrating the skin, the pathogen moves with helical trajectories. It almost always turns toward the right, as a team of physicists and malaria researchers from Heidelberg University recently discovered. https://www.gesundheitsindustrie-bw.de/en/article/press-release/malaria-parasites-move-right-handed-helices
Press release - 13/11/2025 Collaboration between KyooBe Tech and the German Center for Infection Research The technology company KyooBe Tech GmbH and the German Center for Infection Research (DZIF) have signed a memorandum of understanding to collaborate on future research and development projects. The aim of the collaboration is to evaluate an innovative technology for inactivating pathogens using the specific effect of low-energy accelerated electrons (Low Energy Electron Irradiation—LEEI) and to make it available to DZIF scientists.https://www.gesundheitsindustrie-bw.de/en/article/press-release/collaboration-between-kyoobe-tech-and-german-center-infection-research
Press release - 07/11/2025 Overcoming Tumor Resistance to Immunotherapy: The European Research Council awards international project led by Heidelberg Medical Faculty In the PRECISION-ImmunoRad project, a multidisciplinary team of scientists from Heidelberg, USA, and Cyprus will unite their expertise to develop novel curative therapeutic strategies for currently hard-to-treat cancers. These strategies will integrate high-precision ion beam therapy with genetically engineered immune cells therapies (CAR-T cells), personalized cancer vaccines, and the targeted reprogramming of the tumor immune microenvironment. https://www.gesundheitsindustrie-bw.de/en/article/press-release/overcoming-tumor-resistance-immunotherapy-european-research-council-awards-international-project-led-heidelberg-medical-faculty
Press release - 09/09/2025 Molecular Biomimetics: The Cell Nucleus as a Model for DNA-based Computer Chips In the human body, stem cells process genetic information in an exceptionally reliable and very fast manner. To do this, they access certain sections of the DNA in the cell nucleus. Researchers at KIT have investigated how the DNA-based information processing system works. Their results show that this process is comparable to processes in modern computers and could therefore serve as a model for new types of DNA-based computer chips.https://www.gesundheitsindustrie-bw.de/en/article/press-release/molecular-biomimetics-cell-nucleus-model-dna-based-computer-chips
Press release - 03/09/2025 Therapeutic vaccination against HPV-related tumors: Nanoparticles make the difference Researchers from the German Cancer Research Center (DKFZ) have collaborated with the SILVACX project group at Heidelberg University to develop a therapeutic vaccination concept that can mobilize the immune system to target cancer cells. The team showed that virus peptides coupled to silica nanoparticles can elicit effective T-cell responses against HPV-related tumors. https://www.gesundheitsindustrie-bw.de/en/article/press-release/therapeutic-vaccination-against-hpv-related-tumors-nanoparticles-make-difference
Press release - 28/08/2025 Inhibition of cell division induces immunoreactive peptides in cancer cells A team of scientists from the German Cancer Research Center (DKFZ) and the Netherlands Cancer Institute has discovered a previously unknown vulnerability in cancer cells: When cell division is blocked with chemotherapeutic agents such as Taxol, cancer cells produce small immunogenic peptides that could open up new avenues for immune-based cancer therapies.https://www.gesundheitsindustrie-bw.de/en/article/press-release/inhibition-cell-division-induces-immunoreactive-peptides-cancer-cells
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.https://www.gesundheitsindustrie-bw.de/en/article/press-release/science-we-trust-six-takeaways-science-and-society-conference
Press release - 15/07/2025 ERC funding for research into improved cancer immunotherapies With its Proof of Concept grants, the European Research Council (ERC) supports scientists in further developing the economic potential of their research results. Two scientists from the German Cancer Research Center (DKFZ) have now received this coveted funding for the second time.https://www.gesundheitsindustrie-bw.de/en/article/press-release/erc-funding-research-improved-cancer-immunotherapies
Press release - 12/06/2025 BioNTech Announces Strategic Transaction to Acquire CureVac in Public Exchange Offer Acquisition will strengthen the mRNA-based cancer immunotherapy candidates, marking BioNTech’s milestone in its oncology strategy. Acquisition of CureVac will complement BioNTech’s capabilities and proprietary technologies in mRNA design, delivery formulations, and mRNA manufacturing. All-stock acquisition has potential to create value for both companies’ shareholders given their complementary capabilities, focus on mRNA, and shared vision.https://www.gesundheitsindustrie-bw.de/en/article/press-release/biontech-announces-strategic-transaction-acquire-curevac-public-exchange-offer
Cell-based solution in place of animal testing - 05/06/2025 Innovative cell-based test to detect pyrogens in drugs Drug safety testing for microbial contaminants and fever-inducing substances (pyrogens) still frequently uses animal experiments. InnoZell, a start-up that will soon be spun off from the University of Konstanz, has developed a compelling alternative: an animal-free, human cell-based assay that is faster, more sensitive and more reliable than traditional methods – and can be customised to meet user-specific needs.https://www.gesundheitsindustrie-bw.de/en/article/news/innovative-cell-based-test-detect-pyrogens-drugs
New treatment methods: DNA origami-based nanodevices precisely control immune response - 24/04/2025 Bottom-up synthetic immunology for novel therapeutic approaches Modern therapies for combating cancer and infectious diseases increasingly leverage the body’s own immune system. Several research groups at Heidelberg University are using innovative bottom-up approaches in synthetic immunology to develop new treatment methods that can control the immune response more precisely than previously possible.https://www.gesundheitsindustrie-bw.de/en/article/news/bottom-synthetic-immunology-novel-therapeutic-approaches
Press release - 03/04/2025 Heinz Maier-Leibnitz Prize for Lukas Bunse Germany's most important award for young scientists honors the development of immunotherapies against malignant brain tumors.https://www.gesundheitsindustrie-bw.de/en/article/press-release/heinz-maier-leibnitz-prize-lukas-bunse
SpecPlate: an innovative multiwell plate - 26/03/2025 Focus on innovative drug development - accurate, time- and cost-saving Drug research is a complex and costly process that requires extensive laboratory analyses and vast quantities of consumables, with disposable sample carriers in particular being used in their millions. PHABIOC GmbH has come up with a solution in the form of the SpecPlate, a ground-breaking alternative to sample carriers that reduces the time taken to perform analyses as well as the quantity of materials consumed. Serial production is underway.https://www.gesundheitsindustrie-bw.de/en/article/news/focus-innovative-drug-development-accurate-time-and-cost-saving
Press release - 17/03/2025 New approach for T-cell immunotherapy against malignant brain tumors Researchers have developed a promising cellular immunotherapy for the treatment of glioblastomas: They equipped T cells with a receptor that recognizes a protein of the brain tumors that is responsible for the dangerous stem cell properties. The therapeutic T cells directed against this target structure were able to specifically destroy human brain tumors in laboratory experiments and in mice.https://www.gesundheitsindustrie-bw.de/en/article/press-release/new-approach-t-cell-immunotherapy-against-malignant-brain-tumors
Press release - 27/02/2025 EU Project: New Molecular Interventions against Virus Infections Targeted molecular interventions in the replication cycle and the immune recognition of viruses are intended to prevent viral entry into cells and virus replication. Scientists work on new approaches to combating highly dangerous viral diseases such as yellow fever or Lassa fever. The European Union is supporting the project over a period of five years to the tune of just under eight million euros.https://www.gesundheitsindustrie-bw.de/en/article/press-release/eu-project-new-molecular-interventions-against-virus-infections
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
Dossier: Innovative animal-free research in Baden-Württemberg - 05/12/2024 Mini-organs and multi-organ chips - where lab mice may soon retire Farewell to animal testing? Life sciences researchers in BW are pioneering innovative methods to replace animal experiments, reduce the number of animals used and refine the procedures and conditions under which animals are kept. These are the guiding principles of the 3Rs principle. Developing cutting-edge models and establishing a robust 3R network, not only shapes the future of research but also improves the quality of scientific outcomes.https://www.gesundheitsindustrie-bw.de/en/article/dossier/mini-organs-and-multi-organ-chips-where-lab-mice-may-soon-retire