#Pathoblocker
Im ständigen Wettlauf zwischen #Antibiotikaresistenzen & neuen Wirkstoffen braucht es neue Strategien. 🦠 HZI-Forschende entwickeln einen #Pathoblocker gegen Staphylococcus aureus, der ein wichtiges Toxin neutralisiert & den Selektionsdruck verringern könnte. #AMR www.helmholtz-hzi.de/media-center...
September 22, 2026 at 9:52 AM
🔬 Neuer Pathoblocker stoppt Salmonelleninfektion, bevor sie beginnt

Mögliche alternative Behandlungsmethode für Infektionen mit antibiotikaresistenten Keimen.

Studie: doi.org/10.1126/scia...

#Pathoblocker #Salmonellen #Pathogenität #AMR @dzif.bsky.social @cmfi.bsky.social @mpi-bio-fml.bsky.social
April 14, 2025 at 11:23 AM
🔬 New pathoblocker is to stop Salmonella infections early on

Possible alternative treatment method for infections with antibiotic-resistant germs.

📖 Study: tinyurl.com/2s3u4hwj

#Pathoblocker #Salmonella #Pathogenicity #AMR @dzif.bsky.social @unituebingen.bsky.social @mpi-bio-fml.bsky.social
April 14, 2025 at 11:29 AM
Das HZI-Projekt #PROTON hat bei den German Biotech Days #DBT2026 den Innovationspreis 2026 gewonnen! Das Team entwickelt einen Hemmstoff gegen ein Toxin von S. aureus. Ihr innovativer #Pathoblocker kann schwere Infektionen bei Hochrisikopatient:innen verhindern.
📷InfectoGnostics/Zöhre Kurc
April 23, 2026 at 6:21 AM
A new synthetic substance, C26, has been identified to inhibit Salmonella's infection process by targeting the central regulator HilD, offering a potential alternative to antibiotics. doi.org/g9fjsr
New pathoblocker can stop Salmonella infections early on
Pathogenic Salmonella injects effector proteins into the cells of the gastrointestinal tract to penetrate and multiply within them.
phys.org
April 15, 2025 at 1:47 AM
The team, inc. Prof. Samuel Wagner from the Uni of Tübingen & Dr. Marcus Hartmann from @mpi-bio-fml.bsky.social, highlights that this pathoblocker could revolutionize treatment and preserve beneficial microbiota, unlike traditional antibiotics. #Salmonella #InfectionResearch #ScienceAdvances
April 14, 2025 at 8:43 AM
Der #Pathoblocker soll nur einen bestimmten Giftstoff von S. aureus neutralisieren. Dadurch wird ein krank machender Mechanismus adressiert, den die Bakterien aber nicht per se zum Wachsen/Überleben brauchen, anstatt das Wachstum der Bakterien zu hemmen. Das ist ein grundlegend neuer Ansatz.
August 31, 2026 at 1:56 PM
Happy that we could contribute to the story:
From Bones to Bugs: Structure-Based Development of Raloxifene-Derived Pathoblockers That Inhibit Pyocyanin Production in Pseudomonas aeruginosa | Journal of Medicinal Chemistry pubs.acs.org/doi/full/10....
From Bones to Bugs: Structure-Based Development of Raloxifene-Derived Pathoblockers That Inhibit Pyocyanin Production in Pseudomonas aeruginosa
The human pathogen Pseudomonas aeruginosa is particularly notorious for its multiple resistance mechanisms. A new concept for anti-infectives is the “pathoblocker” approach, which targets virulence factors to disarm rather than kill pathogens and thus attenuates the development of resistance. Based on the estrogen receptor modulator raloxifene, which had previously been identified as a potential biosynthesis inhibitor of the virulence factor pyocyanin via in silico screening, analogues have been developed as pathoblockers against P. aeruginosa. These compounds reduce the production of pyocyanin by binding to the phenazine biosynthesis enzyme PhzB. Structure–activity relationships (SAR) were explored using nano differential scanning fluorimetry, isothermal titration calorimetry, and 12 X-ray cocrystal structures. Compared to raloxifene, congener 20c shows a 60-fold lower affinity for the human estrogen receptor with a 15-fold increase in pyocyanin inhibitory activity. The comprehensive structural information gathered in this study paves the way for the development of improved pathoblockers with increased potency and selectivity.
pubs.acs.org
April 8, 2025 at 4:40 PM