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  • 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 - 04/07/2024

    Antibody can improve immune cell therapy against leukemia

    Scientists from the German Cancer Research Center (DKFZ) and Heidelberg University Hospital (UKHD) have shown that the combination of therapeutic immune cells, known as CAR T cells, and a bispecific antibody could improve the treatment of leukaemia. In the culture dish and in mice, they tested CAR-T cells directed against the B-cell marker CD19 in combination with bispecific antibodies that bind to the B-cell-specific protein CD20.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/antibody-can-improve-immune-cell-therapy-against-leukemia
  • 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
  • Peptide-based COVID-19 vaccine - 21/04/2022 A 96-well analysis plate with depressions of varying darkness is shown, held up by two gloved hands.

    CoVac-1: T-cell activator against COVID-19

    Current vaccines against COVID-19 aim at forming neutralising antibodies that prevent the virus from penetrating the host cells. Since people with impaired B-cell immune responses – which can also occur in cancer or autoimmune diseases – are not able to do this, researchers at the University of Tübingen have developed the peptide-based T-cell activator CoVac-1, which promises broad and long-term immunity.

    https://www.gesundheitsindustrie-bw.de/en/article/news/covac-1-t-cell-activator-against-covid-19
  • Article - 28/03/2019 The IT expert sitting at a meeting table.

    Supporting the human use of artificial intelligence

    Artificial intelligence is no longer a vision of the future, but is already in our midst: whether it is parking aids or search engines, we use the technology quite naturally in many areas of daily life. It promises new, unlimited opportunities, but also poses risks. Experts from the Integrata Foundation in Tübingen work on ethical issues and the human use of IT for improving the life of as many people as possible.

    https://www.gesundheitsindustrie-bw.de/en/article/news/supporting-the-human-use-of-artificial-intelligence
  • Press release - 01/09/2022

    Personalised antibiotic treatment strategies for tuberculosis patients

    Tuberculosis is one of the leading causes of death worldwide, with an estimated 1.4 million deaths and ten million people infected annually. Resistant and multidrug-resistant (MDR) variants of the tuberculosis pathogen Mycobacterium tuberculosis pose a major threat to tuberculosis control and global health.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/personalisierte-antibiotika-behandlungsstrategie-bei-tuberkulose-erkrankten
  • Press release - 01/08/2024

    Targeted therapy for cancer of unknown primary (Cup)

    Encouraging results from a large international study led by Heidelberg have recently been published in the journal “Lancet”: The genetic material of cancer cells with unknown tissue of origin contains numerous targets for specific drugs that are already available and have been developed to treat other forms of cancer. These suppressed the disease in CUP patients for significantly longer than chemotherapy.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/targeted-therapy-cancer-unknown-primary-cup
  • Press release - 13/10/2025

    Miniature 3D-printed objects inside the body

    Dr. Andrea Toulouse from the Institute of Applied Optics receives €1.8 million in funding from the Carl-Zeiss-Stiftung as part of the CZS Nexus program to establish a new junior research group. She conducts research in the field of micro-optics and fiber-based 3D printing. Her vision is to develop 3D printers that will one day be able to build biological tissue directly inside the body.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/miniature-3d-printed-objects-inside-body
  • NeuroQ project - 26/07/2023 Zu sehen ist eine Frau mit einer Exoskeletthand, die ein Plastikflasche hält.

    Quantum sensors for exoskeletons: can quantum physics beat paralysis?

    Could people suddenly be able to move again decades after being paralysed? State-of-the-art quantum sensors integrated in exoskeletons could make this possible. Technology being developed as part of the BMBF-funded NeuroQ beacon project by researchers from organisations including the Fraunhofer IAF, the Charité in Berlin and the University of Stuttgart might achieve even more: besides facilitating movement, it could also help cure paralysis.

    https://www.gesundheitsindustrie-bw.de/en/article/news/quantum-sensors-exoskeletons-can-quantum-physics-beat-paralysis
  • Innovation in emergency medicine - 23/05/2024 Three men in white coats stand behind a mobile stand equipped with several small devices.

    CARL pushes back the boundaries of resuscitation therapy

    Few people survive a cardiac arrest; blood stops flowing to the brain and other vital organs and the resulting lack of oxygen causes extensive damage to the body. In response to this, researchers at the University Medical Centre Freiburg and Resuscitec GmbH have developed CARL, an innovative resuscitation system, which – in addition to the oxygen level – adjusts numerous blood parameters to individual patient requirements. This greatly improves…

    https://www.gesundheitsindustrie-bw.de/en/article/news/carl-pushes-back-boundaries-resuscitation-therapy
  • Press release - 23/09/2025

    Not all ALK fusions act the same: Variants influence treatment success in lung cancer

    About five percent of lung adenocarcinomas, one of the most common forms of lung cancer, are driven by a faulty fusion of two genes, EML4 and ALK. This fusion results in different variants, and until now, clinicians have treated all patients with these fusions the same way. However, new research led by scientists from the German Cancer Research Center (DKFZ) and Stanford University shows that not all fusion variants behave alike.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/not-all-alk-fusions-act-same-variants-influence-treatment-success-lung-cancer
  • Help for tracheostomy patients - 23/10/2025 The image shows a plastic valve from the side.

    Biomimetic speaking valve: how a carnivorous plant makes speaking safer

    Nature is the best engineer, so they say, and it's always worth taking a closer look. An interdisciplinary group of researchers did just this and drew inspiration from an aquatic plant to develop a novel speaking valve for tracheostomy patients. At the University Medical Center Freiburg, Dr. Claudius Stahl and his team may have addressed a life-threatening issue that can arise in everyday clinical practice by creating a biomimetic valve with…

    https://www.gesundheitsindustrie-bw.de/en/article/news/biomimetic-speaking-valve-how-carnivorous-plant-makes-speaking-safer
  • Press release - 10/08/2026

    Immune Cells in Bone Marrow Cancer: Limited Defense Readiness

    A team led by researchers from the German Cancer Research Center, the HI-STEM* Stem Cell Institute, and Medical Clinic V at Heidelberg University Hospital has characterized T cells in the bone marrow in cases of multiple myeloma and acute myeloid leukemia: A specific group of tumor-reactive T cells can recognize and fight cancer cells, but is often not sufficiently activated. Nevertheless, the number of these cells influences the prognosis.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/immune-cells-bone-marrow-cancer-limited-defense-readiness
  • Press release - 03/09/2024

    NMR Spectroscopy: A Faster Way to Determine the “Sense of Rotation” of Molecules

    Researchers of Karlsruhe Institute of Technology (KIT) and Voxalytic GmbH developed a new method that allows, for the first time, to elucidate the chiral structure of molecules – the exact spatial arrangement of the atoms – by nuclear magnetic resonance (NMR) spectroscopy. This important step in the development of new drugs used to be a time-consuming process until now.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/nmr-spectroscopy-faster-way-determine-sense-rotation-molecules
  • Press release - 18/05/2026

    Unlocking the Lung’s Ability to Heal: NK Cell Immunotherapy offers New Hope for Fibrosis

    Research jointly led by scientists at the Heidelberg site of the German Center for Lung Research and investigators in Boston at Massachusetts General Hospital and Harvard Medical School identifies a new immunotherapy-based approach for lung fibrosis: reactivating natural killer cell (NK cells) to eliminate senescent fibroblasts, reverse scarring and restore the lung’s ability to heal.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/unlocking-lungs-ability-heal-nk-cell-immunotherapy-offers-new-hope-fibrosis
  • Press release - 17/06/2024

    DNA as building material for tiny machines and artificial cells

    Humboldt Research Award winner Prof. Hao Yan has been conducting research at the 2nd Institute of Physics at the University of Stuttgart since May. He is regarded as one of the world's leading experts in the field of DNA nanotechnology. "My work has many points of commonality with the topics that my colleagues in Stuttgart are focusing on," says Yan. "I have therefore been cooperating with Professor Laura Na Liu's working…

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/dna-building-material-tiny-machines-and-artificial-cells
  • microRNA as a prognostic biomarker - 13/01/2022 Screen of an ECG device showing the typical action potentials of the heart muscle.

    Heart attack diagnosis: fast and unambiguous thanks to artificial intelligence

    People that arrive in emergency rooms with chest pain require swift action in order to rule out a heart attack or to initiate vital life-saving therapy. However, despite many advances, current tests are not yet optimal: they either take hours or produce false-positive results. Researchers at Heidelberg University Hospital are now using AI in an approach that takes microRNAs from a blood sample to specifically diagnose ‘acute coronary syndrome’.

    https://www.gesundheitsindustrie-bw.de/en/article/news/heart-attack-diagnosis-fast-and-unambiguous-thanks-artificial-intelligence
  • Dossier - 18/11/2013 The photo shows the lotus effect on new textiles developed at the ITV Denkendorf (Photo: BIOPRO)

    Innovative textiles made possible by biotechnology

    Biotechnology plays a part in many high-tech fabrics that have become an integral part of our everyday life. Whether it is products for the treatment of wounds, fabrics for marquees or for clothing, many materials have been developed or are produced using biotechnological techniques and processes. Many products marketed as “micro” or “nano” are inspired by nature.

    https://www.gesundheitsindustrie-bw.de/en/article/dossier/innovative-textiles-made-possible-by-biotechnology
  • Press release - 21/09/2022

    ERC funding: How to deliver gene therapies to a specific target site?

    With its "Proof of Concept" grants, the European Research Council ERC supports scientists in further developing the commercial potential of their research results. Nina Papavasiliou from the DKFZ is now receiving the prestigious grant for the second time: she wants to advance the development of a "molecular delivery service" that ensures that therapeutic genes reach the right address in the body in a targeted manner.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/erc-funding-how-deliver-gene-therapies-specific-target-site
  • Press release - 17/10/2023

    BioCopy and YUMAB announce partnership for development of innovative safeTY-engager® platform

    The development of highly specific T-cell engagers directed against pHLA tumor targets will be quick and easy. BioCopy's innovative pHLA screening technology characterizes drug candidates in great depth for their specific binding against the desired pHLA tumor target. YUMAB develops highly specific antibodies with their advanced antibody technologies.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/biocopy-und-yumab-verkuenden-partnerschaft-fuer-entwicklung-innovativer-safety-engager-r-plattform
  • Press release - 16/06/2025

    Novel laboratory models pave the way for targeted therapies for childhood sarcomas

    Sarcomas in soft tissue usually occur in young people and are difficult to treat. Due to a lack of laboratory models, the causes of their development are poorly understood. A team of researchers has now succeeded in creating mouse models with a functioning immune system that replicate sarcoma types that remain unstudied. The method opens up new avenues for the targeted development of immunotherapies for children and adolescents with sarcomas.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/novel-laboratory-models-pave-way-targeted-therapies-childhood-sarcomas
  • Panosome GmbH – a parasite as the basis for innovative immunotherapies - 26/08/2026 A comic-style illustration of a green sleeping sickness pathogen in blue tissue, with four surface proteins shown in grey, magnified as if under a magnifying glass, to which a green antibody binds.

    Reaching the unreachable: new approaches to challenging drug targets

    Modern medicines act with remarkable precision. Antibodies, for example, recognise their molecular targets much like a key fits into its corresponding lock. However, certain targets like small molecules or carbohydrates remain difficult to target. The start-up Panosome aims to eliminate these blind spots with a novel immunotherapy platform that harnesses sophisticated masters of immune evasion: trypanosomes.

    https://www.gesundheitsindustrie-bw.de/en/article/news/reaching-unreachable-new-approaches-challenging-drug-targets
  • Article - 30/09/2019 Massenspektrometrie.jpg

    Do gut bacteria have something to do with autism?

    Autistic people have different gut microorganisms than non-autistic people. Researchers believe that a disturbed intestinal flora may play a role in developmental disorders of the brain such as autism. The emerging new field of metaproteomics could shed light onto the matter. A team led by Prof. Dr. Boris Macek from Tübingen has investigated the bacterial protein pool in the faeces of mice that display autistic behaviour.

    https://www.gesundheitsindustrie-bw.de/en/article/news/do-gut-bacteria-have-something-to-do-with-autism
  • Press release - 17/11/2022

    New target for Alzheimer's therapies found

    DZNE researchers discover link between the protein medin and Alzheimer's disease. The protein medin is deposited in the blood vessels of the brains of Alzheimer's patients along with the protein amyloid-β. DZNE Researchers have discovered this so-called co-aggregation. They have now published their observation in the renowned journal Nature.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/new-target-alzheimers-therapies-found
  • Press release - 04/11/2022

    How do our brain cells age?

    The health of nerve cells is closely linked to the auxiliary cells that surround them, the so-called glial cells. It still remains largely unknown what role glial cells play in age-related diseases.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/wie-altern-die-zellen-unserem-gehirn

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