High-throughput screening of caterpillars as a platform to study host–microbe interactions and enteric immunity

Author:

Windfelder Anton G.ORCID,Müller Frank H. H.ORCID,Mc Larney Benedict,Hentschel MichaelORCID,Böhringer Anna Christina,von Bredow Christoph-RüdigerORCID,Leinberger Florian H.,Kampschulte Marian,Maier Lorenz,von Bredow Yvette M.,Flocke Vera,Merzendorfer Hans,Krombach Gabriele A.,Vilcinskas Andreas,Grimm JanORCID,Trenczek Tina E.,Flögel UlrichORCID

Abstract

AbstractMammalian models of human disease are expensive and subject to ethical restrictions. Here, we present an independent platform for high-throughput screening, using larvae of the tobacco hornworm Manduca sexta, combining diagnostic imaging modalities for a comprehensive characterization of aberrant phenotypes. For validation, we use bacterial/chemical-induced gut inflammation to generate a colitis-like phenotype and identify significant alterations in morphology, tissue properties, and intermediary metabolism, which aggravate with disease progression and can be rescued by antimicrobial treatment. In independent experiments, activation of the highly conserved NADPH oxidase DUOX, a key mediator of gut inflammation, leads to similar, dose-dependent alterations, which can be attenuated by pharmacological interventions. Furthermore, the developed platform could differentiate pathogens from mutualistic gastrointestinal bacteria broadening the scope of applications also to microbiomics and host-pathogen interactions. Overall, larvae-based screening can complement mammals in preclinical studies to explore innate immunity and host-pathogen interactions, thus representing a substantial contribution to improve mammalian welfare.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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