Dossier - 16/12/2021 Advanced therapy medicinal products: gene and cell therapies Novel gene and cell therapies for treating incurable and hereditary diseases have raised high expectations. However, success has so far been limited to the long-established bone marrow transplants involving the administration of haematopoietic stem cells used to treat blood cancer. CAR T-cell therapies have recently emerged as a major new hope in cancer treatment.https://www.gesundheitsindustrie-bw.de/en/article/dossier/advanced-therapy-medicinal-products-gene-and-cell-therapies
Press release - 01/10/2024 Reporter Skin: In-vitro Skin Makes Cell Reaction to Test Substance Measurable in Real Time At the Fraunhofer Institute for Interfacial Engineering and Biotechnology IGB, a three-dimensional skin model has now been set up for the first time that directly displays the skin's reaction to substances: The reporter skin. Thanks to the built-in reporter, the cellular response can be measured precisely and quickly – using a living model. https://www.gesundheitsindustrie-bw.de/en/article/press-release/reporter-skin-vitro-skin-makes-cell-reaction-test-substance-measurable-real-time
Organ-on-chip for the analysis of drug effects - 20/07/2022 New 3D cell platform allows continuous metabolic monitoring Organ-on-chips systems are systems containing miniature tissues grown inside mircrofluidic chips. By integrating microsensors, researchers at the IMTEK Freiburg, together with the RWTH Aachen University Hospital, created a novel variant that allows the measurement of metabolic activity directly on site and in real time. This enables the rapid and detailed analysis of drug effects outside an organism.https://www.gesundheitsindustrie-bw.de/en/article/news/new-3d-cell-platform-allows-continuous-metabolic-monitoring
Press release - 30/10/2023 New research group: construction of tissue in laboratory An interdisciplinary research group combining mechanical engineering and biotechnology has taken up its work at the Institute for Molecular Systems Engineering and Advanced Materials (IMSEAM) of Heidelberg University. The team under the direction of Dr Kai Melde will pursue an innovative approach to biofabrication – 3D cell culture using ultrasound. Tools are being developed that can be used as an alternative to or enhancement for 3D printing. https://www.gesundheitsindustrie-bw.de/en/article/press-release/neue-forschungsgruppe-konstruktion-von-gewebe-im-labor
Press release - 24/03/2025 Resistance mechanism in chronic lymphocytic leukemia identified Researchers at the German Cancer Research Center (DKFZ) have succeeded in identifying a resistance mechanism that often occurs in a specific targeted therapy against chronic lymphocytic leukemia (CLL). The drug ibrutinib is effective in many cases, but therapy resistance often develops during the course of treatment. In cell culture experiments and in mice, the resistance mechanism was successfully overcome using a second drug.https://www.gesundheitsindustrie-bw.de/en/article/press-release/resistance-mechanism-chronic-lymphocytic-leukemia-identified
Press release - 24/04/2023 Hidden RNA repair mechanism discovered in humans Konstanz researchers discover the function of a previously unexplored protein: In three characteristic steps, "C12orf29" links the ends of RNA strands. Proteins that perform this kind of RNA ligation were previously unknown in humans. The results of the study suggest that it is important for RNA repair during cellular stress.https://www.gesundheitsindustrie-bw.de/en/article/press-release/hidden-rna-repair-mechanism-discovered-humans
Press release - 24/07/2025 What makes cells migrate – and what can stop them Konstanz researchers identify an enzyme that plays a role in the migration of cells in our body - not only during normal tissue formation and wound healing, but also when tumor cells metastasize. This makes the enzyme an interesting candidate for potential future therapeutic approaches.https://www.gesundheitsindustrie-bw.de/en/article/press-release/what-makes-cells-migrate-and-what-can-stop-them
Biochip systems - 02/09/2020 Miniature organs with great potential Dr. Peter Loskill and his team at the Fraunhofer Institute in Stuttgart and the University Hospital of Tübingen are developing what is known as an "organ-on-a-chip" (OoC). An OoC is a microfluidic system that simulates small functional units of organ tissue. OoCs can be used in different ways: in basic and pharmaceutical research as well as in clinical research and application, where they might render many animal experiments…https://www.gesundheitsindustrie-bw.de/en/article/news/miniature-organs-great-potential
Laboratory automation - 29/11/2021 Reaching the goal quickly and efficiently with the help of artificial intelligence Medical research is slow, costly and time-consuming. The system developed by the start-up LABMaiTE could soon change that. With the help of artificial intelligence, it will be possible to automate laboratory experiments and collect and analyse data at the same time.https://www.gesundheitsindustrie-bw.de/en/article/news/reaching-goal-quickly-and-efficiently-help-artificial-intelligence
Press release - 05/01/2024 Prostate cancer: Newly-developed inhibitor shows massive potential More than 65,000 men fall ill with prostate cancer each year in Germany. Twelve thousand of them develop a treatment-resistant form which eventually ends in death. Now, a team of researchers from the Medical Faculty at the University of Freiburg has developed an active substance that might in future represent a new treatment option. https://www.gesundheitsindustrie-bw.de/en/article/press-release/prostate-cancer-newly-developed-inhibitor-shows-massive-potential
Press release - 05/11/2024 How biomedical innovation improves preclinical research 3D tumor models, simulations of drug responses or plant stems used for testing heart stents: the 3R-BioMedicUS center at the University of Stuttgart is developing innovative biomedical approaches to improve preclinical studies, to be seen in the new video.https://www.gesundheitsindustrie-bw.de/en/article/press-release/how-biomedical-innovation-improves-preclinical-research
Press release - 04/03/2021 Induced pluripotent stem cells reveal causes of disease Induced pluripotent stem cells (iPSC) are suitable for discovering the genes that underly complex and also rare genetic diseases. Scientists from the German Cancer Research Center (DKFZ) and the European Molecular Biology Laboratory (EMBL), together with international partners, have studied genotype-phenotype relationships in iPSCs using data from approximately one thousand donors.https://www.gesundheitsindustrie-bw.de/en/article/press-release/induced-pluripotent-stem-cells-reveal-causes-disease
Press release - 10/10/2025 Acidic tumor environment promotes survival and growth of cancer cells Tumors are not a comfortable place to live: oxygen deficiency, nutrient scarcity, and the accumulation of sometimes harmful metabolic products constantly stress cancer cells. A research team from the DKFZ and the IMP in Vienna has now discovered that the acidic pH value in tumor tissue is a decisive factor in how pancreatic cancer cells adapt their energy metabolism in order to survive under these adverse conditions. https://www.gesundheitsindustrie-bw.de/en/article/press-release/acidic-tumor-environment-promotes-survival-and-growth-cancer-cells
Press release - 21/03/2022 BMBF funds Heidelberg Junior Research Group for 3D Bioprinting Project Junior Professor Dr Daniela Duarte Campos has been awarded a substantial grant from the Federal Ministry of Education and Research (BMBF). She and her junior research group are investigating bioprinting for tissue and organ engineering at the Center for Molecular Biology of Heidelberg University and at the “3D Matter Made to Order” Cluster of Excellence, a collaboration between Ruperto Carola and Karlsruhe Institute of Technology (KIT).https://www.gesundheitsindustrie-bw.de/en/article/press-release/bmbf-funds-heidelberg-junior-research-group-3d-bioprinting-project
High-resolution microscopy technology bypassing the diffraction limit - 26/10/2023 From micro- to nanoscope It has long been impossible to distinguish objects closer than 200 nanometres using light microscopes. However, novel devices developed by a company called abberior Instruments GmbH, which use technology developed by Nobel Prize winner Prof. Dr. Stefan Hell and his teams in Heidelberg and Göttingen, are now able to bypass this resolution limit and provide detailed insights into living cells in the lower nanometre range.https://www.gesundheitsindustrie-bw.de/en/article/news/micro-nanoscope
Dossier - 12/03/2012 Regenerative medicine makes use of patients own resources Die Regenerative Medizin bietet neue Therapieoptionen quer durch die ärztlichen Fachgebiete. Zumeist sind es zellbasierte Verfahren und sie werden häufig mit innovativen Biomaterialien kombiniert. Regenerative Therapien vereinen Know-how aus den Biowissenschaften mit moderner Medizintechnik und sie profitieren von den Fortschritten in den Ingenieur- und Materialwissenschaften.https://www.gesundheitsindustrie-bw.de/en/article/dossier/regenerative-medicine-makes-use-of-patients-own-resources
Press release - 13/06/2024 Eyesight from a 3D Printer Printing a new cornea during an operation to restore a patient’s eyesight: This groundbreaking step in the fight against corneal disorders is set to become reality with a laser based process using personalized bioink. The method was developed by researchers at the Karlsruhe Institute of Technology (KIT) in collaboration with Carl Zeiss Meditec AG and Evonik Healthcare. Their project won the idea award in this year’s NEULAND innovation contest.https://www.gesundheitsindustrie-bw.de/en/article/press-release/eyesight-3d-printer
Press release - 04/07/2025 Breakthrough in Artificial Blood Production Scientists have been working on the artificial production of blood for several decades. Making a new discovery, researchers from the Institute for Cellular Biology and Immunology Thurgau at the University of Konstanz, in collaboration with Queen Mary University of London, have come an important step closer to this goal.https://www.gesundheitsindustrie-bw.de/en/article/press-release/breakthrough-artificial-blood-production
Press release - 11/05/2026 Alexander von Humboldt professorship for Simon Elsässer – “You can think of it as a kind of cellular memory” Prof. Dr Simon Elsässer will be awarded one of this year’s Alexander von Humboldt Professorships in Berlin on 12 May 2026. With funding of five million euros, Elsässer will strengthen Freiburg’s research focus ‘Signals of Life’ over the next five years. In this interview, he discusses complex decision-making processes in cells, the significance of signals and what makes the research environment in Freiburg so special.https://www.gesundheitsindustrie-bw.de/en/article/press-release/alexander-von-humboldt-professorship-simon-elsasser-you-can-think-it-kind-cellular-memory
Press release - 21/07/2025 Cancer Cachexia: Liver Identified as Driver of Body Wasting Many people with cancer experience dramatic loss of muscle and fat tissue. In many cases, even the heart muscle is affected. This wasting syndrome, affects around half of all cancer patients. Researchers from Helmholtz Munich, in collaboration with Heidelberg University Hospital, the Technical University of Munich, and the German Center for Diabetes Research, have now identified a previously overlooked driver of cachexia: the liver. https://www.gesundheitsindustrie-bw.de/en/article/press-release/cancer-cachexia-liver-identified-driver-body-wasting
Press release - 21/05/2026 Sartorius opens new competence center for cell and gene therapy components in Freiburg, Germany The life science group Sartorius has opened a new center in Freiburg, Germany, dedicated to the development and production of quality-critical materials for the cell and gene therapy market. In Freiburg, the company manufactures essential components such as cytokines and growth factors used in these novel therapies. With an investment of more than 140 million euros, Sartorius is reaffirming its strategic focus on this emerging business area.https://www.gesundheitsindustrie-bw.de/en/article/press-release/sartorius-opens-new-competence-center-cell-and-gene-therapy-components-freiburg-germany
Article - 10/03/2021 Faster to single cells using miniature grinder Tissue cells are needed for medical diagnostics, cell therapies and tissue engineering, among other things. A novel tissue grinder gently and automatically dissociates cells from tissue. In November 2020, the newly founded biotech company Fast Forward Discoveries GmbH (FFX) delivered its first tissue grinders to customers.https://www.gesundheitsindustrie-bw.de/en/article/news/faster-single-cells-using-miniature-grinder
Press release - 09/09/2024 New Molecular Engineering Technique allows for complex Organoids A new molecular engineering technique can precisely influence the development of organoids. Microbeads made of specifically folded DNA are used to release growth factors or other signal molecules inside the tissue structures. This gives rise to considerably more complex organoids that imitate the respective tissues much better and have a more realistic cell mix than before. https://www.gesundheitsindustrie-bw.de/en/article/press-release/new-molecular-engineering-technique-allows-complex-organoids
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