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dc.contributor.authorMerk, Helena-
dc.contributor.authorAmran-Gealia, Tehila-
dc.contributor.authorFinkelmeier, Doris-
dc.contributor.authorKohl, Christina-
dc.contributor.authorPichota, Isabelle-
dc.contributor.authorStern, Noa-
dc.contributor.authorRupp, Steffen-
dc.contributor.authorGoldblum, Amiram-
dc.contributor.authorBurger-Kentischer, Anke-
dc.date.accessioned2024-09-27T14:01:27Z-
dc.date.available2024-09-27T14:01:27Z-
dc.date.issued2022de
dc.identifier.issn2076-2607-
dc.identifier.urihttp://nbn-resolving.de/urn:nbn:de:bsz:93-opus-ds-150032de
dc.identifier.urihttp://elib.uni-stuttgart.de/handle/11682/15003-
dc.identifier.urihttp://dx.doi.org/10.18419/opus-14984-
dc.description.abstractInfectious diseases are still a major problem worldwide. This includes microbial infections, with a constant increase in resistance to the current anti-infectives employed. Toll-like receptors (TLRs) perform a fundamental role in pathogen recognition and activation of the innate immune response. Promising new approaches to combat infections and inflammatory diseases involve modulation of the host immune system via TLR4. TLR4 and its co-receptors MD2 and CD14 are required for immune response to fungal and bacterial infection by recognition of microbial cell wall components, making it a prime target for drug development. To evaluate the efficacy of anti-infective compounds early on, we have developed a series of human-based immune responsive infection models, including immune responsive 3D-skin infection models for modeling fungal infections. By using computational methods: pharmacophore modeling and molecular docking, we identified a set of 46 potential modulators of TLR4, which were screened in several tests systems of increasing complexity, including immune responsive 3D-skin infection models. We could show a strong suppression of cytokine and chemokine response induced by lipopolysacharide (LPS) and Candida albicans for individual compounds. The development of human-based immune responsive assays provides a more accurate and reliable basis for development of new anti-inflammatory or immune-modulating drugs.en
dc.description.sponsorshipFraunhofer ICON grantde
dc.description.sponsorshipInternational Cooperation and Networking grantde
dc.description.sponsorshipYissumde
dc.language.isoende
dc.relation.uridoi:10.3390/microorganisms10020243de
dc.rightsinfo:eu-repo/semantics/openAccessde
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/de
dc.subject.ddc570de
dc.subject.ddc610de
dc.titleHuman-based immune responsive in vitro infection models for validation of novel TLR4 antagonists identified by computational discoveryen
dc.typearticlede
dc.date.updated2023-11-14T03:01:14Z-
ubs.fakultaetEnergie-, Verfahrens- und Biotechnikde
ubs.fakultaetExterne wissenschaftliche Einrichtungende
ubs.fakultaetFakultätsübergreifend / Sonstige Einrichtungde
ubs.institutInstitut für Grenzflächenverfahrenstechnik und Plasmatechnologiede
ubs.institutFraunhofer Institut für Grenzflächen- und Bioverfahrenstechnik (IGB)de
ubs.institutFakultätsübergreifend / Sonstige Einrichtungde
ubs.publikation.noppnyesde
ubs.publikation.seiten15de
ubs.publikation.sourceMicroorganisms 10 (2022), No. 243de
ubs.publikation.typZeitschriftenartikelde
Enthalten in den Sammlungen:04 Fakultät Energie-, Verfahrens- und Biotechnik

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