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Studies in Health Technology and Informatics|May 27, 2016
Micro-Nano-Bio Diagnostic System for Food Pathogen Detection Revolutionizes Food Safety Management & Protects Consumers HealthEvangelos Gogolides, Angeliki Tserepi, Gerhard Jobst, et al.Proceedings of the National Academy of Sciences of the United States of America|February 11, 2022
Bacteroides thetaiotaomicron uses a widespread extracellular DNase to promote bile-dependent biofilm formationNathalie Béchon, Jovana Mihajlovic, Anne-Aurélie Lopes, et al.Mbio|September 3, 2015
Function of the CRISPR-Cas System of the Human Pathogen Clostridium difficilePierre Boudry, Ekaterina Semenova, Marc Monot, et al.Chemical Science|June 20, 2017
A new microfluidic approach for the one-step capture, amplification and label-free quantification of bacteria from raw samplesIago Pereiro, Amel Bendali, Sanae Tabnaoui, et al.Plos Genetics|October 8, 2013
Genome-wide analysis of cell type-specific gene transcription during spore formation in Clostridium difficileLaure Saujet, Fátima C Pereira, Monica Serrano, et al.Methods in Cell Biology|September 1, 2018
A microfluidic fluidized bed to capture, amplify and detect bacteria from raw samplesLucile Alexandre, Iago Pereiro, Amel Bendali, et al.Electrophoresis|September 5, 2017
Advanced immunocapture of milk-borne Salmonella by microfluidic magnetically stabilized fluidized bedJana Srbova, Pavla Krulisova, Lucie Holubova, et al.Biosensors & Bioelectronics|April 11, 2018
Micro-nano-bio acoustic system for the detection of foodborne pathogens in real samplesGeorge Papadakis, Pavla Murasova, Audrey Hamiot, et al.Science Signaling|September 6, 2022
c-di-AMP signaling is required for bile salt resistance, osmotolerance, and long-term host colonization by Clostridioides difficileMarine Oberkampf, Audrey Hamiot, Pamela Altamirano-Silva, et al.Gut Pathogens|January 19, 2024
A monoclonal antibody collection for C. difficile typing ?Lise Hunault, Patrick England, Frédéric Barbut, et al.Pageof 10