Title :
Development of a specific tracer for metabolic imaging of alveolar echinococcosis: A preclinical study
Author :
Porot, Clemence ; Knapp, Jenny ; Junhua Wang ; Germain, Stephane ; Camporese, Davide ; Seimbille, Yann ; Boulahdour, Hatem ; Vuitton, Dominique A. ; Gottstein, Bruno ; Blagosklonov, Oleg
Author_Institution :
WHO Collaborating Centre for Prevention & Treatment of Human Echinococcosis, Univ. of Franche-Comte, Besancon, France
Abstract :
Positron emission tomography (PET)-computed tomography (CT) using [18F]-fluorodeoxyglucose (FDG) (FDG-PET/CT) is a valuable method for initial staging and follow up of patients with alveolar echinococcosis (AE). However, the cells responsible for FDG uptake have not been clearly identified. The main goal of our study was to evaluate the uptake of PET tracers by the cells involved in the host-parasite reaction around AE lesions as the first step to develop a specific PET tracer that would allow direct assessment of parasite viability in AE. Candidate molecules ([18F]-fluorotyrosine (FET), [18F]-fluorothymidine (FLT), and [18F]-fluorometylcholine (FMC), were compared to FDG by in vitro studies on human leukocytes and parasite vesicles. Our results confirmed that FDG was mainly consumed by immune cells and showed that FLT was the best candidate tracer for parasite metabolism. Indeed, parasite cells exhibited high uptake of FLT. We also performed PET/CT scans in mice infected intraperitoneally with E. multilocularis metacestodes. PET images showed no FDG or FLT uptake in parasitic lesions. This preliminary study assessed the metabolic activity of human leukocytes and AE cells using radiolabeling. Future studies could develop a specific PET tracer for AE lesions to improve lesion detection and echinococcosis treatment in patients. Our results demonstrated that a new animal model is needed for preclinical PET imaging to better mimic human hepatic and/or periparasitic metabolism.
Keywords :
computerised tomography; diseases; microorganisms; organic compounds; positron emission tomography; radioactive tracers; 18F-fluorodeoxyglucose; 18F-fluorometylcholine; 18F-fluorothymidine; 18F-fluorotyrosine; E. multilocularis metacestodes; FDG-PET-CT; PET tracer uptake; alveolar echinococcosis; computed tomography; host-parasite reaction; human hepatic metabolism; human leukocytes; metabolic imaging; parasite metabolism; parasite vesicles; periparasitic metabolism; positron emission tomography; tracer development; Computed tomography; In vitro; Lesions; Mice; Positron emission tomography;
Conference_Titel :
Engineering in Medicine and Biology Society (EMBC), 2014 36th Annual International Conference of the IEEE
Conference_Location :
Chicago, IL
DOI :
10.1109/EMBC.2014.6944893