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  • Cell-based solution in place of animal testing - 05/06/2025 FB_Teaser_CellAlarm-InnoZell_.jpg

    Innovative cell-based test to detect pyrogens in drugs

    Drug safety testing for microbial contaminants and fever-inducing substances (pyrogens) still frequently uses animal experiments. InnoZell, a start-up that will soon be spun off from the University of Konstanz, has developed a compelling alternative: an animal-free, human cell-based assay that is faster, more sensitive and more reliable than traditional methods – and can be customised to meet user-specific needs.

    https://www.gesundheitsindustrie-bw.de/en/article/news/innovative-cell-based-test-detect-pyrogens-drugs
  • Press release - 22/05/2025

    Six Clusters of Excellence for the University of Tübingen

    Tübingen achieves remarkable success and has good chance of maintaining its University of Excellence title – Top research in three areas to be sustained from other sources of support.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/six-clusters-excellence-university-tubingen
  • 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 - 19/03/2025

    Pocket-sized breath test for stomach bacteria Mini sensor analyses breath for infection with Helicobacter pylori

    Stomach ulcers, gastritis and even stomach cancer are often the result of an infection with Helicobacter pylori. If the bacterium remains unrecognised for a long time, this can have serious consequences. Researchers have now developed a miniaturisable sensor system for the mobile analysis of breath that is effective, fast and inexpensive. The research team uses a biological survival trick of the stomach germ to detect the bacterium.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/pocket-sized-breath-test-stomach-bacteria-mini-sensor-analyses-breath-infection-helicobacter-pylori
  • Press release - 14/03/2025

    Tool identifies specific viruses to combat dangerous bacteria

    University of Tübingen research team shortens the search for attackers that can wipe out multiresistant pathogens – with the aim of treating infections without antibiotics

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/tool-identifies-specific-viruses-combat-dangerous-bacteria
  • Microorganisms produce nutrients in bioreactors - 12/03/2025 A bioreactor in a laboratory with a glass vessel containing a liquid with harvested yeast.

    CO2 and H2 as starting materials for proteins and vitamins

    Agricultural land needed to sustain the world's growing population is becoming increasingly scarce. To help address this challenge, researchers from the Environmental Biotechnology Group at the University of Tübingen have developed an innovative and sustainable power-to-vitamin technology. This breakthrough enables protein- and vitamin-rich foods to be produced with the help of microorganisms in a bioreactor using carbon dioxide and…

    https://www.gesundheitsindustrie-bw.de/en/article/news/co2-and-h2-starting-materials-proteins-and-vitamins
  • Press release - 10/02/2025

    Medical textiles with infection protection

    In collaboration with Heraeus, the German Institutes of Textile and Fiber Research (DITF) are developing fibers and textiles with a novel infection protection system. The basis is an antimicrobial mechanism of action licensed from Heraeus and marketed under the name AGXX. The goal of the collaboration is to optimally integrate the AGXX technology into textile finishes and coatings and to incorporate it into fiber-spinnable polymers.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/medical-textiles-infection-protection
  • Press release - 12/09/2024

    Power-to-vitamins: microbes produce folate from simple basic ingredients

    Biotechnology team at University of Tübingen obtains valuable byproduct in protein production. This could be a potential to the contribution of feeding a growing world population without livestock farming.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/power-vitamins-microbes-produce-folate-simple-basic-ingredients
  • App for tuberculosis diagnosis - 15/05/2024 The photo shows a collection of pink-coloured, elongated bacteria against a dark background

    "Find-TB" aims to improve access to tuberculosis diagnostics

    Globally, the majority of children with tuberculosis remain undiagnosed and therefore untreated because their symptoms are categorised incorrectly. Researchers at Heidelberg University Hospital want to develop an app that analyses medical information, risk factors and local surveillance data to calculate individual risk of infection and test those who might be affected with TB as early as possible.

    https://www.gesundheitsindustrie-bw.de/en/article/news/find-tb-aims-improve-access-tuberculosis-diagnostics
  • Press release - 19/04/2024

    Electrified bacteria

    PhD student at Furtwangen University develops method for faster determination of antibiotic resistance. The increase in antibiotic-resistant pathogens and the associated treatment, which is a major problem in public healthcare facilities, is the subject of a research project at Furtwangen University.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/bakterien-unter-strom
  • Epifadin from the nasal microbiome - 28/03/2024 The two researchers in lab coats in the microbiology laboratory, looking at a glass flask with beige-coloured epifadin.

    From the nose: novel antibiotic substance discovered

    Antibiotics are becoming an increasingly blunt weapon against infectious diseases. The number of (multi-)resistant germs has been rising rapidly for years and even reserve antibiotics no longer work. Researchers at the University of Tübingen have now isolated a completely new antibiotic substance called epifadin from the microbiome of the human nose. It is effective against many different bacteria - including the dangerous hospital MRSA.

    https://www.gesundheitsindustrie-bw.de/en/article/news/nose-novel-antibiotic-substance-discovered
  • 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
  • Computer-assisted genome mining - 04/12/2023 Five photographs of soil, plants, sea, herbs and mouldy fruit show the different habitats of bacteria and fungi. Arrows lead to different chemical compounds.

    Natural product genomics opens up new avenues in the search for antibiotics

    Antibiotic-resistant pathogens are increasingly endangering our health. Since most of the drugs currently in use are based on secondary metabolites produced by bacteria or fungi, the research group of Prof. Dr. Nadine Ziemert in Tübingen is developing bioinformatic tools to specifically search the genome of these organisms for previously unknown antimicrobial agents.

    https://www.gesundheitsindustrie-bw.de/en/article/news/natural-product-genomics-opens-new-avenues-search-antibiotics
  • 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
  • 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 - 20/10/2023

    Why tuberculosis bacteria form long chains

    A researcher team from Ecole Polytechnique Federal de Lausanne led by Dr. Vivek Thacker now group leader at the Department of Infectious Diseases at Heidelberg University Hospital have studied why tuberculosis bacteria form long strands and how this affects their infectivity. Their findings could lead to new therapies and have now been published in the journal Cell.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/why-tuberculosis-bacteria-form-long-chains
  • Press release - 20/06/2023

    Tuberculosis Therapy: Smallest Particles Will Deliver the Drug to the Lungs in Future

    KIT and Research Center Borstel Present Nanoparticles with a High Antibiotic Concentration for Inhalation – Nanocarriers of Antibiotics Can Reduce Resistances and Enhance Compatibility.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/tuberculosis-therapy-smallest-particles-will-deliver-drug-lungs-future
  • 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 - 17/01/2023

    Sugar-based inhibitors disarm the pathogen Pseudomonas aeruginosa

    The hospital pathogen Pseudomonas aeruginosa requires the sugar-binding proteins LecA and LecB to form biofilms as well as to attach to and penetrate host cells. These so-called lectins are therefore suitable targets for active substances to combat Pseudomonas infections. Researchers from Saarbrücken and Freiburg have now produced potent inhibitors for LecA and LecB that are more stable and soluble than previous drug candidates.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/zuckerbasierte-inhibitoren-entwaffnen-den-krankheitserreger-pseudomonas-aeruginosa
  • Press release - 09/12/2022

    Epigenetic emergency switch improves defense against infections

    During infections, the hematopoietic system switches from normal to emergency mode. This improves the defense against the pathogens. Scientists at the German Cancer Research Center (Deutsches Krebsforschungszentrum, DKFZ) have now found an epigenetic switch in blood stem cells and progenitor cells of mice that can trigger the switch from one mode to the other.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/epigenetic-emergency-switch-improves-defense-against-infections
  • 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 - 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
  • Bakteriocins - 24/05/2022 bunte fluoreszenzmikroskopische Bilder der Bakterien als runde und ovale Punkte.

    New antibiotic alternatives from soil bacteria

    Bacteria are not the greatest of friends among themselves: many release antimicrobial substances into their environment in order to gain an advantage in their ecological niche. Researchers at the University of Ulm are making use of such bacteriocins by creating a genetically modified soil bacterium that can be used as a biotechnological platform organism to produce alternatives to antibiotics in pure form and in large quantities. The fact this…

    https://www.gesundheitsindustrie-bw.de/en/article/news/new-antibiotic-alternatives-soil-bacteria
  • Biosensor for whole blood and exhaled breath analysis - 02/02/2022 Nahaufnahme eines Multiplex-Chips mit roten oder blauen Kanälen, der zwischen zwei Fingern in blauen Handschuhen gehalten wird.

    Antibiotic detection from whole blood or exhaled breath possible

    Incorrectly dosed antibiotics are not only dangerous for patients, but also often the cause of resistant strains of bacteria. Researchers at the University of Freiburg have developed a biosensor to determine the effective amount and thus enable personalised therapy. The biosensor works by rapidly determining small amounts of the substances directly from whole blood or exhaled breath.

    https://www.gesundheitsindustrie-bw.de/en/article/news/antibiotic-detection-whole-blood-or-exhaled-breath-possible
  • Press release - 30/11/2021

    A mould dominates the eukaryotic microbiota in Parkinson’s disease patients

    Parkinson's disease is characterised by a slow, progressive loss of nerve cells in certain brain areas. The disease is still incurable and the exact causes are unclear. The dopamine deficiency in the brain can only be controlled to some extent in the initial phase of the disease. Basic research is being conducted in an attempt to unravel the mystery of Parkinson's disease.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/mould-dominates-eukaryotic-microbiota-parkinsons-disease-patients

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