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  • Press release - 02/11/2022

    How Cells Find the Right Partners

    During the growth and development of living organisms, different types of cells must come into contact with each other in order to form tissues and organs together. A small team working with Prof. Dr. Anne Classen of the Excellence Cluster CIBSS of the University of Freiburg has discovered that complex changes in form, or morphogenesis, during development are driven exclusively via the affinity of cells to each other.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/how-cells-find-right-partners
  • Press release - 13/11/2025

    Software optimizes simulations of the brain

    A new software enables brain simulations which both imitate the processes in the brain in detail and can solve challenging cognitive tasks. The program was developed by a research team at the Cluster of Excellence ‘Machine Learning: New Perspectives for Science’ at the University of Tübingen. The software thus forms the basis for a new generation of brain simulations which allow deeper insights into the functioning and performance of the brain.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/software-optimizes-simulations-brain
  • Press release - 03/07/2024

    Max Planck scientists develop cost-efficient medical imaging method

    Max Planck scientists will present a low-field magnetic resonance imaging (MRI) scanner in Lindau. Two researchers from the MPI for Biological Cybernetics in Tübingen, Germany, will present a model of a new low-field MRI system. It combines hyperpolarization with imaging techniques that can be run at low magnetic field strengths. The quality of the MRI images can be enhanced with the help of artificial intelligence.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/max-planck-scientists-develop-cost-efficient-medical-imaging-method
  • Press release - 01/03/2023

    Pseudomonas aeruginosa Bacteria produce a molecule that paralyzes immune system cells

    Bacteria of the species Pseudomonas aeruginosa are antibiotic-resistant hospital germs that can enter blood, lungs and other tissues through wounds and cause life-threatening infections. In a joint project, researchers from the Universities of Freiburg and Strasbourg in France have discovered a mechanism that likely contributes to the severity of P. aeruginosa infections.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/pseudomonas-aeruginosa-bakterien-stellen-ein-molekuel-her-das-zellen-des-immunsystems-laehmt
  • 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
  • AI-supported image recognition accelerates identification of zebrafish mutants - 16/07/2025 Nine zebrafish embryos are shown in which various signalling pathways are disrupted. The zebrafish embryos are marked in different colours with frames - white for ‘normal’, in which the embryo lies around the yolk. Red for ‘dead’, green for 'BMP', and purple for ‘nodal’. Five of the embryos contain a dye.

    EmbryoNet AI automatically identifies developmental disorders

    In complex organisms, embryonic development is tightly regulated by intricate signalling pathways. When these pathways are disrupted, they can lead to characteristic developmental defects that are not easy to detect with the naked eye. Developmental biologist Prof. Dr. Patrick Müller from the University of Konstanz has developed EmbryoNet, an AI-powered software tool that uses image analysis to reliably identify such developmental disorders.

    https://www.gesundheitsindustrie-bw.de/en/article/news/embryonet-ai-automatically-identifies-developmental-disorders
  • Press release - 28/11/2025

    New RNA Class Discovered that Helps Keep Cells Organized

    Inside cells, RNAs and proteins form biomolecular condensates. These droplets are essential for organizing cellular life, yet why some RNAs cluster more readily than others has remained unclear. Disruptions in condensate formation are linked to developmental defects, cancer, and neurodegenerative diseases. Researchers at KIT have now identified a new class of RNA called smOOPs and gained a better understanding of how biomolecular condensates form

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/new-rna-class-discovered-helps-keep-cells-organized
  • Press release - 09/09/2021

    Machine learning improves biological image analysis

    Scientists use super-resolution microscopy to study previously undiscovered cellular worlds, revealing nanometer-scale details inside cells. This method revolutionized light microscopy and earned its inventors the 2014 Nobel Prize in Chemistry. In an international collaboration, AI researchers from Tübingen have now developed an algorithm that significantly accelerates this technology.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/machine-learning-improves-biological-image-analysis
  • Press release - 07/01/2025

    Researchers have a better understanding of how our cells dispose of waste while developing ways to control it

    A research team from Freiburg and Frankfurt has discovered how cells recognise and internally break down waste. The results are relevant for the development of therapies for diseases such as Alzheimer’s.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/researchers-have-better-understanding-how-our-cells-dispose-waste-while-developing-ways-control-it
  • Press release - 20/10/2022

    Cytoskeleton acts as cells’ bouncer for bacteria

    Researchers of the University of Freiburg have discovered a previously unknown function of septins in defending cells against dangerous hospital pathogens.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/das-zellskelett-haelt-die-eintrittspforte-fuer-bakterien-geschlossen
  • CRISPR base editing for tailored tumour treatment - 16/07/2026 Schematic illustration depicting the steps described in the text for generating CAR T cells.

    Targeted genetic manipulation of signal transduction pathways in CAR T cells enhances anti-tumour potency

    Chimeric antigen receptor (CAR) T cell therapy has emerged as a highly promising treatment modality but has so far been used almost exclusively for advanced haematologic malignancies. Researchers at the iFIT cluster of excellence in Tübingen have now used CRISPR base-editing technology to introduce precise point mutations into key signalling pathways of CAR T cells, significantly enhancing their long-term persistence and anti-tumour potency.

    https://www.gesundheitsindustrie-bw.de/en/article/news/targeted-genetic-manipulation-signal-transduction-pathways-car-t-cells-enhances-anti-tumour-potency
  • Press release - 07/12/2021

    New approach developed to predict response of immunotherapies in lung cancer

    At Tübingen University Hospital, a preclinical study led by Dr. Clemens Hinterleitner and Prof. Dr. Lars Zender, Medical Director of Medical Oncology and Pneumology, led to extremely promising results. The research group was able to develop a new methodology that makes it possible to better predict the likelihood of success of immunotherapies for lung cancer.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/new-approach-developed-predict-response-immunotherapies-lung-cancer
  • Press release - 09/05/2023

    New strategy for clinically relevant protein sequencing

    Proteins have characteristic amino acid sequences, the analysis of which is fundamental for research and medicine. These can be decoded; however, so-called protein sequencing is expensive and time-consuming. A large-scale research project led by Prof. Dr. Jan Behrends from the Institute of Physiology at the University of Freiburg now aims to establish a new technology for protein sequencing using nanopores, which will be rapid and cost-effective.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/new-strategy-clinically-relevant-protein-sequencing
  • Baden-Württemberg receives the EU Commission's "Regional Innovation Valley" label - 01/07/2024 Logo BIOPRO Baden-Württemberg GmbH

    Customised healthcare for all: BIOPRO is a partner in the EU project PRECISEU

    The EU research project PRECISEU, which started in June 2024 and will run for five years, aims to connect innovation ecosystems across Europe and advance personalised medicine throughout Europe. BIOPRO Baden-Württemberg is one of 25 partner organisations from 11 European countries that are working on the further development of customised healthcare as part of the research project.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/customised-healthcare-all-biopro-partner-eu-project-preciseu
  • 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 - 13/07/2023

    Intelligent rubber materials

    Wearable medical devices, such as soft exoskeletons that provide support for stroke patients or controlled drug delivery patches, have to be made of materials that can adapt intelligently and autonomously to the wearer's movements and to changing environmental conditions. These are the type of autonomously switchable polymer materials that have recently been developed by researchers at the University of Stuttgart and the University of…

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/intelligent-rubber-materials
  • Press release - 30/11/2023

    Taking antibiotics back in time

    University of Tübingen researchers reverse the evolution of a class of antibiotics to gain insights for the development of new drugs.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/taking-antibiotics-back-time
  • Press release - 21/06/2024

    Cyber Valley: World's first ELLIS Institute opens

    At the finale of the Cyber Valley Days, and Science Minister Petra Olschowski opened the ELLIS Institute Tübingen, heralding the next phase of the AI Innovation Campus. With the world's first ELLIS Institute, Cyber Valley is gaining further radiance. Olschowski also announced at the ceremony that the Karlsruhe Institute of Technology (KIT) is joining the Cyber Valley Community.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/cyber-valley-worlds-first-ellis-institute-opens
  • 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
  • "Programmable" polymer materials - 24/04/2023 Black and white microscopic images of the printed objects and their changes in a total of 4 hours, each 2 hours apart. 1st row: sunflower, 2nd row: octopus and 3rd row: gecko.

    Medicine of the future: intelligent 4D polymers from the printer

    It is impossible to imagine medicine without 3D printing, which can be used to make implants or for culturing cells and tissues. It is now possible for 3D objects to be given an added dimension, namely an ability to make simple autonomous movements, by changing their size. Researchers at Heidelberg University have been able to produce microscopically small 4D structures from intelligent polymers that can be tailored to individual requirements.

    https://www.gesundheitsindustrie-bw.de/en/article/news/medicine-future-intelligent-4d-polymers-printer
  • Press release - 15/01/2024

    Maturation instead of cell death: Defective signalling pathways disrupt immune cell development

    Researchers at the Faculty of Medicine of the University of Freiburg discover key factor in the development of immune cells. New approaches for the treatment of ALPS.

    https://www.gesundheitsindustrie-bw.de/en/article/maturation-instead-cell-death-defective-signalling-pathways-disrupt-immune-cell-development
  • Press release - 04/12/2024

    Joint research in key technologies: NMI and KIT sign cooperation agreement

    The NMI Natural and Medical Sciences Institute and the Karlsruhe Institute of Technology (KIT) have signed a groundbreaking cooperation agreement. This partnership combines the expertise of both institutions in the fields of production and characterization of materials for biological systems and energy storage as well as the application of statistical methods in medicine.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/joint-research-key-technologies-nmi-and-kit-sign-cooperation-agreement
  • Funding

    Horizone Europe

    Funding programme, Funded by: European Union, sb_search.searchresult.label.programSubmissionDate: 31/12/2027
    https://www.gesundheitsindustrie-bw.de/en/database/funding/horizone-europe
  • Press release - 20/03/2025

    Start-up prize for "EmbryoNet AI Technologies"

    Using artificial intelligence to revolutionize drug development is the aim of the start-up "EmbryoNet AI Technologies" led by Konstanz biologist Patrick Müller. Müller and his team have now been awarded the start-up prize by the Federal Ministry for Economic Affairs and Climate Action (BMWK) for their business concept.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/start-prize-embryonet-ai-technologies
  • Press release - 18/12/2023

    Researchers discover novel antibiotic substance from the human nose

    For the first time, the active substance epifadin has been isolated at the University of Tübingen – Epifadin is produced by specific bacteria in the nose and on the skin of humans, has an antibiotic effect, and is the first example of a previously unknown antimicrobial compound class.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/researchers-discover-novel-antibiotic-substance-human-nose

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