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  • Press release - 22/05/2024

    Stretched beyond the limits of the cell: the molecular biomechanics of collagen

    Together with colleagues from Israel and USA, HITS researcher Frauke Gräter investigates the effects of physical force on the collagen protein in two different animal model systems. Their goal is to measure the effects of mechanoradicals on the integrity of the tissue and the well-being of the organism, with impact on health and aging.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/stretched-beyond-limits-cell-molecular-biomechanics-collagen
  • Press release - 09/12/2024

    Brain tumour cells rapidly integrate into brain-wide neuronal circuits

    Researchers at the Medical Faculty of Heidelberg University and the Heidelberg University Hospital have used modified rabies viruses to label glioblastoma tumour cells and their direct cell contacts in the mouse brain. The new method showed that the tumour cells are connected to different types of nerve cells throughout the entire brain at a very early stage of the disease.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/brain-tumour-cells-rapidly-integrate-brain-wide-neuronal-circuits
  • Press release - 28/11/2024

    Molecular biology: New interdisciplinary Research Training Group investigates cellular regulation

    Cell division, cell differentiation, cell repair and cell death play fundamental roles in the human organism, its development, health and reproduction. Cellular transformation processes are governed by two regulatory mechanisms: chromatin modifications and cell signaling networks. The EpiSignal Research Training Group sheds light on the hitherto little-researched interplay between these two complex systems.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/molecular-biology-new-interdisciplinary-research-training-group-investigates-cellular-regulation
  • Press release - 02/09/2021

    Award-winning science: Cancer-promoting metabolic pathways as targets of new therapies

    Christiane Opitz, scientist at the German Cancer Research Center, is being awarded this year's Ita Askonas Prize of the European Federation of Immunological Societies. Opitz has discovered how tumor cells use certain metabolites to protect themselves against the immune system. Her research findings may provide important clues for the development of new therapeutic concepts.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/award-winning-science-cancer-promoting-metabolic-pathways-targets-new-therapies
  • Press release - 18/08/2022

    When smooth muscle cells lack strength

    University of Tübingen team discovers how malformations of the blood vessels can occur in mice – yielding information with possible ramifications for retinal disease.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/when-smooth-muscle-cells-lack-strength
  • Stem cell research - 14/03/2024 Image of red and blue coloured, round structures.

    Using organoids to gain a better clinical understanding of pancreatic cancer

    Prof. Dr. Alexander Kleger carries out translational research at Ulm University Hospital to gain a better understanding of pancreatic ductal adenocarcinoma (PDAC) and develop individualised treatments. He and his team are using organoid models and stem cell-based systems and have succeeded in simultaneously cultivating all three main cell types of the pancreas from pluripotent stem cells.

    https://www.gesundheitsindustrie-bw.de/en/article/news/using-organoids-gain-better-clinical-understanding-pancreatic-cancer
  • 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
  • Chronic inflammatory bowel diseases - 25/09/2024 Vor schwarzem Hintergrund sind kugelförmige Zellansammlungen zu sehen.

    Proinflammatory regulatory T lymphocytes as a therapeutic target in Crohn's disease

    Chronic inflammatory bowel diseases are very stressful for those affected and increase the risk of bowel cancer. PD Dr. Robyn Laura Kosinsky from the Bosch Health Campus in Stuttgart, together with researchers from the USA, identified disfunctional regulatory T cells as important drivers of inflammation in Crohn's disease. They also found that with the help of an epigenetically active drug, it was possible to restore the cells’ original…

    https://www.gesundheitsindustrie-bw.de/en/article/news/proinflammatory-regulatory-t-lymphocytes-therapeutic-target-crohns-disease
  • 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 - 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 - 26/11/2024

    Collaborative research centres on kidney and brain prolonged

    On 25 November, the German Research Foundation (DFG) announced the continued funding of two existing Collaborative Research Centres (CRC) at the University of Freiburg’s Faculty of Medicine. In CRC 1453 Nephrogenetics (NephGen), doctors and researchers are using genetic information to search for mechanisms underlying kidney diseases.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/collaborative-research-centres-kidney-and-brain-prolonged
  • Biotech in outer space - 06/07/2022 Scientist in the laboratory at a cell culture workbench with a cell chamber

    yuri, a space start-up: weightlessness for commercial research

    Growing cells without the effect of gravity could revolutionise drug development. A start-up called yuri on Lake Constance enables made-to-measure experiments on the ISS for stem cells, artificial organs, surfaces and materials. On board the next mission are some mini-cell labs from Berlin's Charité and Goethe University Frankfurt.

    https://www.gesundheitsindustrie-bw.de/en/article/news/yuri-space-start-weightlessness-commercial-research
  • 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
  • Nanoparticles as drug carriers - 09/11/2023 Zu sehen ist eine Mikroskopie-Aufnahme, die mit Mykobakterien infiziertes Lungengewebe inklusive Nanocarrier zeigt.

    Inhalation of nanocarriers for antibiotics against resistant tuberculosis pathogens

    Around ten million people worldwide still contract tuberculosis every year. With an estimated 1.4 million deaths a year, tuberculosis was the world’s deadliest infectious disease until COVID-19. The high mortality rate is down to the sophisticated biology of the pathogen Mycobacterium tuberculosis. A team of researchers from the KIT and the Research Centre Borstel (FZB) has developed a method that aims to outsmart the bacterium once and for all.

    https://www.gesundheitsindustrie-bw.de/en/article/news/inhalation-nanocarriers-antibiotics-against-resistant-tuberculosis-pathogens
  • Press release - 09/07/2024

    Unique characteristics of previously unexplored protein discovered

    Freiburg-Prague research collaboration achieves scientific breakthrough in understanding cell division. The international research collaboration has uncovered a new mechanism of the crosstalk between microtubules and actin cytoskeleton during cell division and revealed unique characteristics of the previously unexplored protein FAM110A.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/unique-characteristics-previously-unexplored-protein-discovered
  • Press release - 13/05/2025

    Award for Outstanding Contributions to Cancer Research

    Dr Dr Varun Venkataramani and Dr Moritz Mall have been awarded this year’s Hella Bühler Prize for their outstanding research on the interaction between nerve and tumor cells and on tumor plasticity. The award granted by Heidelberg University goes to young researchers from the Heidelberg research location who have already drawn attention to themselves through the outstanding scientific quality of their cancer research.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/award-outstanding-contributions-cancer-research
  • Press release - 09/07/2025

    The evolution of cancer cells decoded

    Cancer can take decades for cancer-promoting changes in the genome to eventually lead to the formation of a malignant tumor. Researchers at the German Cancer Research Center have now developed a method that allows for the first time to reconstruct the temporal development—the evolution—of cancerous cells from a single tissue sample.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/evolution-cancer-cells-decoded
  • Cytolytics GmbH - 14/02/2023 Colour photo of Can (left) and Serina (right) Pinar

    Bioinformatics meets medical diagnostics and drug development

    The start-up company Cytolytics from Tübingen has developed a robust and user-friendly software platform that uses machine learning for the automated analysis of cells. This is beneficial in areas such as cancer diagnostics and the development of new pharmaceutically active substances.

    https://www.gesundheitsindustrie-bw.de/en/article/news/bioinformatics-meets-medical-diagnostics-and-drug-development
  • Tumour organoids facilitate drug discovery - 20/07/2023 A woman in a white lab coat is sitting at a computer whose screen shows various miniature tumors after drug treatment.

    Drug screening for children with cancer using patient-specific miniature tumours

    Standard drugs often don’t work in children and adolescents with recurrent cancer. Researchers from the Hopp Children's Tumour Centre (KITZ) and the German Cancer Research Center (DKFZ) in Heidelberg have been looking to open up new therapy options for those affected, and have cultivated individual miniature tumours from biopsy samples to test the effectiveness of a variety of drugs within a few weeks.

    https://www.gesundheitsindustrie-bw.de/en/article/news/drug-screening-children-cancer-using-patient-specific-miniature-tumours
  • Project BlindZero - 03/08/2023 The two researchers in the laboratory in front of the 3D printer and with a Petri dish with the cornea in their hands.

    Hope for patients with eye diseases: human cornea from 3D printers

    Thousands of cornea transplants are performed every year. However, donors are rare and the procedure is not always without complications. Researchers at the University of Heidelberg are developing an innovative technique in the project BlindZero. It involves ‘printing’ human corneas directly onto patients’ eyes using 3D bioprinting. The reprogrammed genetically engineered cells used for this purpose are not expected to cause a rejection reaction.

    https://www.gesundheitsindustrie-bw.de/en/article/news/hope-patients-eye-diseases-human-cornea-3d-printers
  • 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 - 02/04/2025

    New antibiotic for multidrug resistant superbug

    Researchers from the universities in Konstanz and Vienna discover a new class of antibiotic that selectively targets Neisseria gonorrhoeae, the bacterium that causes gonorrhoea. These substances trigger a self-destruction program, which also operates in multi-resistant variants of the pathogen. The novel findings are published in the current issue of Nature Microbiology.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/new-antibiotic-multidrug-resistant-superbug
  • Press release - 04/09/2024

    Epigenetic changes reprogram astrocytes into brain stem cells

    With mice, researchers showed that experimentally induced lack of blood flow in the brain epigenetically reprograms astrocytes into brain stem cells, which in turn can give rise to nerve progenitor cells. This discovery shows that astrocytes could potentially be used in regenerative medicine to replace damaged nerve cells.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/epigenetic-changes-reprogram-astrocytes-brain-stem-cells
  • Press release - 30/10/2024

    Diabetes switch in DNA: Non-coding region in the genome influences ONECUT1 gene

    They are underestimated genetic control elements: it is known that changes in the genome can trigger diabetes. But now researchers at the University Hospital Ulm and the INSERM Cochin Institute in Paris have shown that a previously under-researched region of the genome also plays a crucial role in the development of this disease.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/diabetes-switch-dna-non-coding-region-genome-influences-onecut1-gene
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