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  • Press release - 16/09/2025

    New CRISPR method leads to a better understanding of cell functions

    The 2020 Nobel Prize in Chemistry was awarded for the development of CRISPR/Cas9, a method also known as “gene scissors”, which enables researchers to better understand how human cells function and stay healthy. Researchers at the University of Stuttgart have further developed CRISPR for this purpose. They present their CRISPRgenee method in Cell Reports Methods.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/new-crispr-method-leads-better-understanding-cell-functions
  • Press release - 12/09/2025

    In bad company: Immune cells in the tumor environment determine the success of therapy for childhood brain tumors

    The cellular environment of a tumor can either support or sabotage recovery. The most comprehensive study to date on the tumor microenvironment in low-grade gliomas, conducted by KiTZ, Jena University Hospital, the DKFZ, and Heidelberg University Hospital, shows what a supportive or obstructive “neighborhood” looks like in childhood brain tumors. The study also provides clues as to how tumor communication might be blocked.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/bad-company-immune-cells-tumor-environment-determine-success-therapy-childhood-brain-tumors
  • Press release - 05/09/2025

    After EMBL: Umlaut.bio and its potential role in drug development

    Alumnus Bastian Linder discusses the origin of this start-up and how a tRNA mechanism is helping scientists understand the importance and use of various RNA modifications as they pertain to disease.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/after-embl-umlautbio-and-its-potential-role-drug-development
  • Press release - 04/09/2025

    Rare bone tumors: Tailor-made mini-proteins switch off tumor drivers

    Chordomas are rare bone tumors for which there are no effective drugs. A research team from the DKFZ and the NCT Heidelberg has now developed a promising approach: Tailor-made mini-proteins specifically block the driver of tumor development. In the result, slowing the growth of chordoma cells in the laboratory and in a mouse model, while also revealing further molecular vulnerabilities of the tumor that could be addressed with approved drugs.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/rare-bone-tumors-tailor-made-mini-proteins-switch-tumor-drivers-1
  • Press release - 03/09/2025

    Nature publication: Mechanical tensions as a driver of evolution

    When embryos grow, cells and tissue are constantly bumping into each other. This creates mechanical tensions that could endanger their development. A team from University of Hohenheim and the Japanese RIKEN Center have discovered that fly embryos have strategies to deal with this pressure. The different species have developed two different solutions. This ability to control mechanical tension could be a key to why so many body plans have evolved.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/nature-publication-mechanical-tensions-driver-evolution
  • Press release - 03/09/2025

    Therapeutic vaccination against HPV-related tumors: Nanoparticles make the difference

    Researchers from the German Cancer Research Center (DKFZ) have collaborated with the SILVACX project group at Heidelberg University to develop a therapeutic vaccination concept that can mobilize the immune system to target cancer cells. The team showed that virus peptides coupled to silica nanoparticles can elicit effective T-cell responses against HPV-related tumors.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/therapeutic-vaccination-against-hpv-related-tumors-nanoparticles-make-difference
  • Press release - 29/08/2025

    Sleeping beauties: the biology behind oocyte dormancy

    The maturation process of oocytes remains paused for several years. Researchers from Konstanz and Göttingen have now found out which protein ensures this state is maintained over such a long period.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/sleeping-beauties-biology-behind-oocyte-dormancy
  • Press release - 28/08/2025

    Inhibition of cell division induces immunoreactive peptides in cancer cells

    A team of scientists from the German Cancer Research Center (DKFZ) and the Netherlands Cancer Institute has discovered a previously unknown vulnerability in cancer cells: When cell division is blocked with chemotherapeutic agents such as Taxol, cancer cells produce small immunogenic peptides that could open up new avenues for immune-based cancer therapies.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/inhibition-cell-division-induces-immunoreactive-peptides-cancer-cells
  • Press release - 26/08/2025

    Key mechanism for Alzheimer's disease discovered

    A molecular mechanism that contributes to the progression of Alzheimer’s disease has been discovered by a research team of Heidelberg University. The team, using an Alzheimer’s mouse model, demonstrated that a neurotoxic protein-protein complex is responsible for nerve cells in the brain dying off and the resulting cognitive decline. This finding opens up new perspectives for the development of effective treatments.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/key-mechanism-alzheimers-disease-discovered
  • Press release - 21/08/2025

    Nanodroplets Could Speed Up the Search for New Medicine

    Until now, the early phase of drug discovery for the development of new therapeutics has been cost- and time-intensive. Researchers at KIT have developed a platform on which extremely miniaturized nanodroplets with a volume of 200 nanoliters per droplet and containing 300 cells per test can be arranged. This platform enables the researchers to synthesize and test thousands of therapeutic agents on the same chip, saving time and resources.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/nanodroplets-could-speed-search-new-medicine
  • Press release - 21/08/2025

    Ultrafast Pace in the Brain: New Insights into Calcium Transport and Signal Processing

    Researchers at the University of Freiburg, together with partners, have uncovered the mechanism of ultrafast transport by calcium pumps in nerve cells. These pumps, complexes of PMCA2 and neuroplastin proteins, operate at more than 5,000 cycles per second and terminate calcium signals within milliseconds – 100 times faster than previously known. They play a crucial role in rapid information processing in the brain.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/ultrafast-pace-brain-new-insights-calcium-transport-and-signal-processing
  • Press release - 14/08/2025

    Freezing brain tumor cells in a dormant state

    Every brain tumor is made up of cells in successive stages of activation. Researchers have now analyzed the individual structure of these activation pyramids in malignant brain tumors. In doing so, they discovered a signaling protein that slows down the transition from a dormant to an activated state by epigenetically reprogramming the cells. The hope is that this will permanently freeze cancer cells in a dormant state and thus halt tumor growth.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/freezing-brain-tumor-cells-dormant-state
  • Press release - 05/08/2025

    Playing Dominos: how an artificial protein emerges from fitting together individual components

    The targeted engineering of artificial proteins with unique properties – that is possible with the assistance of a novel method developed by a research team of Heidelberg University. It centers around a new AI model. This allows for forecasting how two proteins have to be fitted together at the molecular level from individual parts – subunits – in order to engineer a functional, adjustable new protein.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/playing-dominos-how-artificial-protein-emerges-fitting-together-individual-components
  • Press release - 04/08/2025

    FOXP1 syndrome: Potential therapeutic approach discovered for rare language development disorder

    FOXP1 syndrome is a congenital disorder in which the brain development of affected children is severely impaired due to a genetic variant. A research team from the Medical Faculty Heidelberg at Heidelberg University has now demonstrated in mice, that the inhibition of a specific enzyme in the brain can improve abnormal behavior and immune cell dysfunction in the brain. The results have been published in the journal Advanced Science.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/foxp1-syndrome-potential-therapeutic-approach-discovered-rare-language-development-disorder
  • Press release - 29/07/2025

    New method to design custom protein binder

    Designing protein binders from scratch has long been a daunting challenge within the field of computational biology. Researchers have now developed an innovative, training-free pipeline that uses the fundamental principle of shape complementarity to design site-specific protein binders, which are then optimised to fit precisely onto chosen target sites. The researchers tested this on proteins linked to cancer.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/new-method-design-custom-protein-binder
  • Press release - 24/07/2025

    What makes cells migrate – and what can stop them

    Konstanz researchers identify an enzyme that plays a role in the migration of cells in our body - not only during normal tissue formation and wound healing, but also when tumor cells metastasize. This makes the enzyme an interesting candidate for potential future therapeutic approaches.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/what-makes-cells-migrate-and-what-can-stop-them
  • Press release - 23/07/2025

    Floppy and flexible: How Machine Learning helps to build new proteins

    A team of researchers from HITS and MPIP have developed a model that learns how to generate proteins whose structures are highly flexible, even with patterns that are uncommon in natural proteins. Their work, presented at the International Conference on Machine Learning (ICML), marks a step towards the goal of designing new proteins for applications in biotechnology, therapeutics and environmental research.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/floppy-and-flexible-how-machine-learning-helps-build-new-proteins
  • Press release - 23/07/2025

    Study finds caffeine can weaken effectiveness of certain antibiotics

    ngredients of our daily diet – including caffeine – can influence the resistance of bacteria to antibiotics. This has been shown in a new study by a team of researchers at the Universities of Tübingen and Würzburg. They discovered bacteria such as E. coli orchestrate complex regulatory cascades to react to chemical stimuli from their direct environment which can influence the effectiveness of antimicrobial drugs.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/study-finds-caffeine-can-weaken-effectiveness-certain-antibiotics
  • Press release - 21/07/2025

    Cancer Cachexia: Liver Identified as Driver of Body Wasting

    Many people with cancer experience dramatic loss of muscle and fat tissue. In many cases, even the heart muscle is affected. This wasting syndrome, affects around half of all cancer patients. Researchers from Helmholtz Munich, in collaboration with Heidelberg University Hospital, the Technical University of Munich, and the German Center for Diabetes Research, have now identified a previously overlooked driver of cachexia: the liver.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/cancer-cachexia-liver-identified-driver-body-wasting
  • Press release - 18/07/2025

    Faster sepsis diagnosis through hyperspectral imaging and AI

    Sepsis is one of the most dangerous medical emergencies. The condition is the result of a misdirected immune response to an infection, which can quickly lead to organ failure and death. Every hour counts – but early detection is difficult. A new study from Heidelberg now presents an innovative approach: artificial intelligence (AI) and hyperspectral imaging of the skin enable immediate and non-invasive sepsis diagnosis directly at the bedside.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/faster-sepsis-diagnosis-through-hyperspectral-imaging-and-ai
  • Press release - 15/07/2025

    ERC funding for research into improved cancer immunotherapies

    With its Proof of Concept grants, the European Research Council (ERC) supports scientists in further developing the economic potential of their research results. Two scientists from the German Cancer Research Center (DKFZ) have now received this coveted funding for the second time.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/erc-funding-research-improved-cancer-immunotherapies
  • Press release - 14/07/2025

    Faster and brighter protein labeling with new tool SNAP-tag2

    The protein SNAP-tag is a powerful tool for labeling proteins with synthetic fluorophores for bioimaging. Scientists at the Max Planck Institute for Medical Research in Heidelberg have engineered a much improved version named SNAP-tag2 as well as optimized substrates for faster labeling in live cells.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/faster-and-brighter-protein-labeling-new-tool-snap-tag2
  • Press release - 11/07/2025

    Molecular arms race: How the genome defends itself against internal enemies

    An international research team has deciphered a mechanism of evolutionary arms race in human cells. The findings provide insights into how mobile elements in DNA hijack cellular functions – and how cells can defend themselves against this in order to prevent conditions such as tumour formation or chronic inflammation.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/molecular-arms-race-how-genome-defends-itself-against-internal-enemies
  • Press release - 10/07/2025

    Investigating kinase activity in living cells

    The ability of protein kinases to transfer a phosphate group to target proteins plays an important role in many cellular processes. Scientists at the Max Planck Institute for Medical Research have now developed a novel molecular tool that can monitor these kinase activities both spatially and temporally. This makes it possible to investigate the link between kinase activities and cellular phenotypes in heterogenous cell populations and in vivo.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/investigating-kinase-activity-living-cells
  • Press release - 09/07/2025

    A new drug target for treating cancer and viral infections

    An international team of researchers led by Konstanz biologists has identified a molecular mechanism that regulates the activity of N-myristoyltransferases. This enzyme plays a role in biological signalling pathways, where dysregulation can lead to serious illness.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/new-drug-target-treating-cancer-and-viral-infections
  • Press release - 03/07/2025

    Focus on Muscle Metabolism: Sex Differences in Sport and Obesity

    The skeletal muscles of men and women process glucose and fats in different ways. A study provides the first comprehensive molecular analysis of these differences. The results possibly give an explanation why metabolic diseases such as diabetes manifest differently in women and men – and why they respond differently to physical activity.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/focus-muscle-metabolism-sex-differences-sport-and-obesity
  • Press release - 25/06/2025

    Otto Hahn Medal for Jonas Wilhelm

    For his outstanding achievements in his doctorate at the interface between chemistry and biology, Jonas Wilhelm is awarded an Otto Hahn Medal 2025 by the Max Planck Society. He wrote his thesis in the department Chemical Biology of Kai Johnsson at the Max Planck Institute for Medical Research. In his doctorate, Jonas Wilhelm developed a molecular tool, a biosensor that records and permanently stores biological activities at the cellular level.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/otto-hahn-medal-jonas-wilhelm
  • Press release - 19/05/2025

    How the Epstein-Barr virus promotes its spread in the body

    Many people are infected with the Epstein-Barr virus (EBV), and most are unaware of it. However, EBV can sometimes cause cancer, and this pathogen also appears to play an important role in multiple sclerosis and other autoimmune diseases. Researchers have discovered that EBV increases the ability of infected immune cells to migrate. In this way, the pathogen promotes its spread in the body – a discovery that may have therapeutic implications.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/how-epstein-barr-virus-promotes-its-spread-body
  • Animal-free testing of chemicals and cosmetics - 07/05/2025 A histological section of human skin showing the different layers of the epidermis, including the keratinizing squamous epithelium

    Human reporter skin for visualsing skin reactions

    Before new cosmetics can be placed on the market, all ingredients must undergo rigorous testing for safety and efficacy. Dr. Anke Burger-Kentischer of the Fraunhofer IGB has long been at the forefront of animal-free research and has developed an innovative method to quickly and reliably test cosmetics and other chemicals without using animals. She was awarded the 2024 Hamburg Research Prize for her groundbreaking ‘reporter skin’ in vitro model.

    https://www.gesundheitsindustrie-bw.de/en/article/news/human-reporter-skin-visualsing-skin-reactions
  • Press release - 16/04/2025

    Hereditary Alzheimer’s: Blood Marker for Defective Neuronal Connections Rises Early

    Individuals with a genetic predisposition to Alzheimer’s disease show altered blood levels indicating damaged neuronal contacts as early as 11 years before the expected onset of dementia symptoms. This is evident in the levels of the protein “beta-synuclein”. An international team report these findings in the journal “Alzheimer’s & Dementia”. The biomarker studied here could potentially help to detect neurodegeneration at an early stage.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/hereditary-alzheimers-blood-marker-defective-neuronal-connections-rises-early
  • Press release - 03/04/2025

    Heinz Maier-Leibnitz Prize for Lukas Bunse

    Germany's most important award for young scientists honors the development of immunotherapies against malignant brain tumors.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/heinz-maier-leibnitz-prize-lukas-bunse
  • Press release - 28/03/2025

    Quality Assurance in the Cell: Preventing Defective Protein Blueprints

    Two molecular control factors play a decisive role in what is known as splicing, the cutting and assembly of mature messenger RNA – a prerequisite for protein synthesis in the cell. The poorly characterized factors are crucial to ensuring that the molecular machine responsible for splicing is working correctly. A research team has deciphered how the two cellular quality inspectors work.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/quality-assurance-cell-preventing-defective-protein-blueprints
  • Press release - 24/03/2025

    Resistance mechanism in chronic lymphocytic leukemia identified

    Researchers at the German Cancer Research Center (DKFZ) have succeeded in identifying a resistance mechanism that often occurs in a specific targeted therapy against chronic lymphocytic leukemia (CLL). The drug ibrutinib is effective in many cases, but therapy resistance often develops during the course of treatment. In cell culture experiments and in mice, the resistance mechanism was successfully overcome using a second drug.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/resistance-mechanism-chronic-lymphocytic-leukemia-identified
  • Press release - 17/03/2025

    New approach for T-cell immunotherapy against malignant brain tumors

    Researchers have developed a promising cellular immunotherapy for the treatment of glioblastomas: They equipped T cells with a receptor that recognizes a protein of the brain tumors that is responsible for the dangerous stem cell properties. The therapeutic T cells directed against this target structure were able to specifically destroy human brain tumors in laboratory experiments and in mice.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/new-approach-t-cell-immunotherapy-against-malignant-brain-tumors
  • Press release - 17/03/2025

    RNA Origami: Artificial Cytoskeletons to Build Synthetic Cells

    With the goal of creating living cells from non-living components, scientists in the field of synthetic biology work with RNA origami. This tool uses RNA biomolecule to fold new building blocks, making protein synthesis superfluous. In pursuit of the artificial cell, a research team has cleared a crucial hurdle. Using the new RNA origami technique, they succeeded in producing nanotubes that fold into cytoskeleton-like structures.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/rna-origami-artificial-cytoskeletons-build-synthetic-cells
  • 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
  • Press release - 13/03/2025

    Dieter Schwarz Foundation provides long-term funding for application-oriented basic research and innovative talent pool

    The Max Planck Society and the Dieter Schwarz Foundation (DSS) have embarked on a groundbreaking initiative. On March 13, 2025, they signed an agreement through which the foundation will support an innovative approach by the Max Planck Institute for Medical Research in Heidelberg to translate basic research findings into practical applications. As part of this endeavour, two new departments of the institute will be established in Heilbronn.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/dieter-schwarz-foundation-provides-long-term-funding-application-oriented-basic-research-and-innovative-talent-pool
  • 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 - 12/03/2025

    Hepatic stellate cells control liver function and regeneration

    Until now, doctors knew hepatic stellate cells mainly as drivers of liver fibrosis. The actual functions have hardly been studied to date. Researchers from the German Cancer Research Center, the Mannheim Medical Faculty and Columbia University have now published that hepatic stellate cells control liver metabolism as well as liver regeneration and size. The results of the study could contribute to new therapeutic approaches for liver diseases.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/hepatic-stellate-cells-control-liver-function-and-regeneration
  • Press release - 06/03/2025

    NMI TT in Reutlingen and Düsseldorf University Women's Hospital develop high-precision method for analyzing individual circulating tumor cells

    Researchers have developed a new method that enables a more precise analysis of individual tumor cells circulating in the blood. This allows not only the previously possible genomic investigation of such tumor cells, but also the focused analysis of single-cell signaling pathways at the functional protein level. The combined analysis of the mutated genome and signaling proteins opens up new avenues for more targeted treatment methods.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/nmi-tt-reutlingen-and-duesseldorf-university-womens-hospital-develop-high-precision-method-analyzing-individual-circulating-tumo
  • Press release - 28/02/2025

    Scientists discover the function of a mysterious HIV component

    A research team including scientists from Heidelberg University Hospital has gained new insights into HIV-1. Researchers have discovered the mechanism behind an important step in the life cycle of HIV. Working together with teams at Heidelberg and Yale Universities, they found that the enigmatic “spacer peptide 2”, one of the virus components, plays a key role in converting immature HIV-1 particles into infectious particles.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/scientists-discover-function-mysterious-hiv-component
  • 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 - 25/02/2025

    Protein with contradictory properties: secret revealed

    A protein with contradictory properties: Despite its large negative surface charge, it has a strong tendency to take up electrons, which are also negatively charged. The researchers discovered positively charged calcium ions inside the protein very near the electrons, counteracting their charge. They see this as a natural way of handling opposing electrical charges and allowing the protein to optimally fulfill its biological function.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/protein-contradictory-properties-secret-revealed
  • Press release - 13/02/2025

    Guardian molecule keeps cells on track – new perspectives for the treatment of liver cancer

    A guardian molecule ensures that liver cells do not lose their identity. The discovery is of great importance for cancer medicine because a change of identity of cells has come into focus as a fundamental principle of carcinogenesis for several years. The research team was able to show that the newly discovered guardian is so powerful that it can slow down highly potent cancer drivers and cause malignant liver tumors to regress in mice.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/guardian-molecule-keeps-cells-track-new-perspectives-treatment-liver-cancer
  • Press release - 12/02/2025

    Therapeutic Designer Peptide to Combat Acute Heart Muscle Weakness

    Researchers of the Heidelberg University, Heidelberg University Hospital (UKHD) and Heidelberg Institute for Theoretical Studies (HITS) have developed a synthetic peptide based on the natural protein S100A1, a nearly universal “fuel” for weakened hearts. The researchers combined computer-aided methods with lab studies to investigate the therapeutic effect of the so called S100A1ct peptide molecule.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/therapeutic-designer-peptide-combat-acute-heart-muscle-weakness
  • 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
  • Press release - 13/01/2025

    New tool for synthetic biology

    Scientists at the University of Stuttgart have succeeded in controlling the structure and function of biological membranes with the help of "DNA origami". The system they developed may facilitate the transportation of large therapeutic loads into cells. This opens up a new way for the targeted administration of medication and other therapeutic interventions.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/new-tool-synthetic-biology
  • 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 - 03/01/2025

    New approaches against metastatic breast cancer: mini-tumors from circulating cancer cells

    Tumor cells circulating in the blood are the "germ cells" of breast cancer metastases. They are rare and could not be propagated in the culture dish until now, which made research into therapy resistance difficult. A team from the DKFZ, the Heidelberg Stem Cell Institute HI-STEM and the NCT Heidelberg has now succeeded for the first time in cultivating stable tumor organoids directly from blood samples of breast cancer patients.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/new-approaches-against-metastatic-breast-cancer-mini-tumors-circulating-cancer-cells
  • Press release - 19/12/2024

    Antibody that neutralizes inhibitory factors involved in nerve regeneration leads to enhanced motor function after acute spinal cord injury

    Antibodies can improve the rehabilitation of people with acute spinal cord injury. Researchers at 13 clinics in Germany, Switzerland, the Czech Republic and Spain have investigated this with promising results. For the first time, it was possible to identify patient groups that displayed a clinically relevant treatment effect. A follow-up study will start in December 2024.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/antibody-neutralizes-inhibitory-factors-involved-nerve-regeneration-leads-enhanced-motor-function-after-acute-spinal-cord-injury

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