ImmunoPET/MR imaging allows specific detection of Aspergillus fumigatus lung infection in vivo
Rolle, AM; Hasenberg, M; Thornton, CR; et al.Solouk-Saran, D; Männ, L; Weski, J; Maurer, A; Fischer, E; Spycher, PR; Schibli, R; Boschetti, F; Stegemann-Koniszewski, S; Bruder, D; Severin, GW; Autenrieth, SE; Krappmann, S; Davies, G; Pichler, BJ; Gunzer, M; Wiehr, S
Date: 23 February 2016
Article
Journal
Proceedings of the National Academy of Sciences
Publisher
National Academy of Sciences
Publisher DOI
Abstract
Invasive pulmonary aspergillosis (IPA) is a life-threatening lung disease caused by the fungus Aspergillus fumigatus, and is a leading cause of invasive fungal infection-related mortality and morbidity in patients with hematological malignancies and bone marrow transplants. We developed and tested a novel probe for noninvasive detection ...
Invasive pulmonary aspergillosis (IPA) is a life-threatening lung disease caused by the fungus Aspergillus fumigatus, and is a leading cause of invasive fungal infection-related mortality and morbidity in patients with hematological malignancies and bone marrow transplants. We developed and tested a novel probe for noninvasive detection of A. fumigatus lung infection based on antibody-guided positron emission tomography and magnetic resonance (immunoPET/MR) imaging. Administration of a [(64)Cu]DOTA-labeled A. fumigatus-specific monoclonal antibody (mAb), JF5, to neutrophil-depleted A. fumigatus-infected mice allowed specific localization of lung infection when combined with PET. Optical imaging with a fluorochrome-labeled version of the mAb showed colocalization with invasive hyphae. The mAb-based newly developed PET tracer [(64)Cu]DOTA-JF5 distinguished IPA from bacterial lung infections and, in contrast to [(18)F]FDG-PET, discriminated IPA from a general increase in metabolic activity associated with lung inflammation. To our knowledge, this is the first time that antibody-guided in vivo imaging has been used for noninvasive diagnosis of a fungal lung disease (IPA) of humans, an approach with enormous potential for diagnosis of infectious diseases and with potential for clinical translation.
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