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  • Biochip systems - 02/09/2020 Hand hält einen Fett-Chip (Organ-on-a-Chip) in die Kamera. Gut zu sehen sind die Kammern und Kapillaren auf dem Mikrofluidik-System.

    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
  • Dossier: Innovative animal-free research in Baden-Württemberg - 05/12/2024 A watercolour painting depicts a rhesus monkey wearing a surgical mask sitting at a laboratory bench, with two white mice looking up at him. He sticks his thumb up in the air. In the foreground is a petri dish with a bean-shaped organoid. There are microscopes in the background and a poster on the wall with the words ‘No more Animal Testing’.

    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
  • Press release - 16/09/2021

    Organ twin: a “flight simulator” for surgeons

    Cyber Valley researchers have created medical educational tools that could potentially train the surgeons of the future, much like flight simulators train pilots. The team developed a range of artificial organ phantoms to serve as training platforms for surgeons. Thanks to the structured data of experienced medical professionals, a quantitative and objective assessment of a trainee’s skills can be assessed in real time.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/organ-twin-flight-simulator-surgeons
  • Press release - 20/12/2022

    New approach prevents rejection of transplanted organs

    Inhibition of a protein complex in cells of the immune system prevents rejection of transplanted organs – this has been shown in a study by immunologists from the University of Konstanz, the Biotechnology Institute Thurgau (BITg) and Chongqing Cancer University Hospital.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/new-approach-prevents-rejection-transplanted-organs
  • Press release - 07/02/2024

    The unexpected long-term consequences of female fertility

    The constant remodeling of the organs of the female reproductive tract during the reproductive cycle leads to fibrosis and chronic inflammation over the years. Scientists from the German Cancer Research Center (DKFZ) have now uncovered these unexpected long-term consequences of female reproductive function in mice. The results have been published in the scientific journal CELL.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/die-unerwartete-auswirkung-der-weiblichen-fortpflanzungsfaehigkeit
  • Organ-on-chip for the analysis of drug effects - 20/07/2022 Zeichnerische Darstellung eines Organ-on-Chip-Systems

    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 - 02/09/2021

    Blood vessels produce growth factor that promotes metastases

    On the one hand, blood vessels supply tumors with nutrients and, on the other, enable cancer cells to spread throughout the body. The settlement of circulating tumor cells in a distant organ is promoted by factors whose production is induced by the primary tumor itself. Scientists have now identified a new growth factor produced by blood vessels that enables tumor cells to metastatically colonize organs.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/blood-vessels-produce-growth-factor-promotes-metastases
  • 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 - 25/02/2025

    Self-healing hearts How Zebrafish regenerate heart muscle cells

    Zebrafish can completely replace damaged heart muscle cells: The affected organ becomes fully functional again. Researchers at Ulm University have discovered that a specific cell-to-cell communication signal helps them to cope better with replication stress. This stress inhibits tissue regeneration in humans and mammals as they age. In Zebrafish a signalling protein ensures that the cells of the damaged organ continue to divide and thus multiply.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/self-healing-hearts-how-zebrafish-regenerate-heart-muscle-cells
  • Press release - 07/06/2024

    German Research Foundation honors researchers for animal testing alternatives

    Prof. Dr. Peter Loskill and Dr. Silke Riegger from the 3R Center Tübingen for in-vitro models and animal testing alternatives have been awarded the Ursula M. Händel Animal Welfare Prize 2024. The prize, endowed with 80,000 euros, was awarded to them in Würzburg for the development of organ-on-chip (OoC) systems as an alternative to animal testing.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/german-research-foundation-honors-researchers-animal-testing-alternatives
  • Press release - 25/11/2022

    Praise for Ulm's trauma research from DFG CRC 1149 reaches 3rd funding phase

    What a success for Ulm University and its medical centre! The German Research Foundation (Deutsche Forschungsgemeinschaft; DFG) extends the Collaborative Research Centre (CRC) on Trauma Medicine for the second time. The third funding phase infuses the CRC 1149 'Danger Response, Disturbance Factors and Regenerative Potential after Acute Trauma' with 11.1 million euros.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/praise-ulms-trauma-research-dfg-crc-1149-reaches-3rd-funding-phase
  • Press release - 13/03/2024

    Diabetes: New technology opens up improved opportunities for research

    More than seven million people in Germany suffer from diabetes. At the same time, research into drugs to treat this widespread disease is still difficult. Scientists led by Prof. Dr. Peter Loskill from the NMI Natural and Medical Sciences Institute and the Faculty of Medicine of the Eberhard Karls University of Tübingen have now developed a technique that significantly improves the view at the molecular and cell biological level in the pancreas.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/diabetes-new-technology-opens-improved-opportunities-research
  • Press release - 17/04/2024

    Cell Biology: Molecular Code Stimulates Pioneer Cells to Build Blood Vessels in the Body

    Cardiovascular diseases, including stroke and myocardial infarction, are the world's leading causes of mortality, accounting for over 18 million deaths a year. A team of KIT researchers has now identified a new cell type in blood vessels responsible for vascular growth. This discovery may allow for novel therapeutic strategies to treat ischemic cardiovascular diseases, i.e. diseases that are caused by reduced or absent blood flow.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/zellbiologie-molekularer-code-regt-pionierzellen-zum-aufbau-von-blutgefaessen-im-koerper
  • Booster for neutrophil granulocytes - 27/10/2021 acetat-aktivierung_Bearbeitet.jpg

    Acetate supports immune cells to fight against sepsis

    Blood poisoning is the most dangerous complication of bacterial infections and often leads to death. Researchers at the Interfaculty Institute of Microbiology and Infection Medicine at the University of Tübingen have now identified acetate as a potent agent for stimulating innate immune system cells, supporting their ability to destroy bacteria.

    https://www.gesundheitsindustrie-bw.de/en/article/news/acetate-supports-immune-cells-fight-against-sepsis
  • Press release - 28/02/2025

    Early Excellence in Science Award für Ivana Winkler

    The Bayer Foundation's Early Excellence in Science Award 2024 in the category of Data Science goes to Ivana Winkler of the German Cancer Research Center (DKFZ). Winkler's work uncovered the unexpected effect of female reproductive capacity: the constantly recurring remodeling of the organs of the female reproductive tract during the sexual cycle leads to fibrosis and chronic inflammation over the years.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/early-excellence-science-award-fuer-ivana-winkler
  • Press release - 20/11/2024

    New bioengineering approaches for the automated production of complex organoids

    The reproducible and precise production of complex organoid models to simulate human organ malfunctions is the focus of an interdisciplinary research project at Heidelberg University. A research team from the life and engineering sciences is looking to combine the engineering of molecular systems with machine learning and automated production methods.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/neue-ansaetze-des-bio-engineering-fuer-die-automatisierte-herstellung-komplexer-organoide
  • Reduced immunosuppression possible in transplantations - 05/06/2023 Group photo of the founding team. Two younger men in light blue shirts and short hair and a woman with long dark hair in a white turtleneck jumper can be seen.

    Modified immune cells produce donor-specific tolerance

    Traditionally, transplant recipients have had to take immunosuppressive medication for life to prevent organ rejection. However, there are considerable side effects involved. Using modified immune cells (MICs), TolerogenixX GmbH from Heidelberg has now managed to generate donor-specific tolerance in recipients of living kidney transplants without suppressing the overall immune system.

    https://www.gesundheitsindustrie-bw.de/en/article/news/modified-immune-cells-produce-donor-specific-tolerance
  • Dossier - 01/10/2012 virtual molecular structure

    Systems biology understanding complex biological systems

    Systems biology studies complex interactions within biological systems on the genome proteome and organelle level. Many techniques from the fields of systems theory and associated fields can be used to gain an understanding of the behaviour and biological mechanisms of cellular systems.

    https://www.gesundheitsindustrie-bw.de/en/article/dossier/systems-biology-understanding-complex-biological-systems
  • Press release - 18/03/2022

    Lung Tissue from the Lab

    Laboratory studies of lung tissue usually require the removal of large amounts of human or animal tissue. Now scientists from the University of Freiburg’s Faculty of Medicine have succeeded in collaboration with American researchers in generating tiny quantities of lung tissue, so-called organoids, from just a few body cells in the lab.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/lung-tissue-lab
  • Press release - 18/12/2021

    WHO publishes first classification of childhood tumors

    The International Agency for Research on Cancer (IARC), an agency of the World Health Organization (WHO), will soon publish the first edition of its classification of childhood cancers. The new WHO classification forms the basis of modern, precise cancer diagnostics for physicians and pediatric oncologists worldwide and is based on the latest international research findings.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/who-publishes-first-classification-childhood-tumors
  • Press release - 15/11/2022

    Silicone Sponge Captures Unknown Bacteria

    From human intestines to the bottom of the sea: Microorganisms populate nearly any habitat, no matter how hostile it is. Their great variety of survival strategies is of huge potential in biotechnology. Most of these organisms, however, are unknown, because they cannot be cultivated.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/silikonschwamm-spuert-unbekannte-bakterien-auf
  • Press release - 24/04/2025

    3D bioprinting: NMI, TU Darmstadt and Black Drop develop improved bioink

    3D bioprinting is a great hope in the field of regenerative medicine to produce miniaturized tissues and organ precursors with biological functionality. Today, however, scientists are still working on the challenge of producing a printable and at the same time compatible starting material.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/3d-bioprinting-nmi-tu-darmstadt-and-black-drop-develop-improved-bioink
  • 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
  • Assay to support the diagnosis of autoimmune diseases - 22/06/2022 Immunkomplexe_sIC-assay_Teaser.jpg

    Tracking down pathogenic immune complexes

    Soluble complexes of antibodies and their target structures circulating in the blood can trigger serious systemic inflammations. Dr. Philipp Kolb and Haizhang Chen from the Institute of Virology at the Freiburg University Medical Centre have developed a sensitive, cell-based test system for detecting these immune complexes. The system can be used to diagnose systemic autoimmune diseases, and also severe cases of COVID-19.

    https://www.gesundheitsindustrie-bw.de/en/article/news/tracking-down-pathogenic-immune-complexes
  • Press release - 14/03/2024

    Next milestone in the treatment of liver tumors and acute and chronic liver diseases

    The results of a Tuebingen-led study raise hope that a newly developed drug could herald a new era in oncological liver surgery and transplantation. The drug could even have the potential to significantly improve the treatment of acute and chronic liver diseases. The drug candidate "HRX-215" is a so-called MKK4 inhibitor, i.e. the drug inhibits the MKK4 protein found in liver cells and thus leads to an increase in the regeneration of…

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/next-milestone-treatment-liver-tumors-and-acute-and-chronic-liver-diseases

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