Synthesis and Evaluation of 18F-Radiotracers for Imaging of Pulmonary Fibrosis
Harhellier, Maxime
Promoteur(s) :
Gendron, Thibault
Date de soutenance : 19-jan-2026 • URL permanente : http://hdl.handle.net/2268.2/25431
Détails
| Titre : | Synthesis and Evaluation of 18F-Radiotracers for Imaging of Pulmonary Fibrosis |
| Auteur : | Harhellier, Maxime
|
| Date de soutenance : | 19-jan-2026 |
| Promoteur(s) : | Gendron, Thibault
|
| Membre(s) du jury : | Dammicco, Sylvestre
Francotte, Pierre
Monbaliu, Jean-Christophe
|
| Langue : | Anglais |
| Discipline(s) : | Physique, chimie, mathématiques & sciences de la terre > Chimie |
| Institution(s) : | Université de Liège, Liège, Belgique |
| Diplôme : | Master en sciences chimiques, à finalité spécialisée |
| Faculté : | Mémoires de la Faculté des Sciences |
Résumé
[en] Pulmonary fibrosis is a progressive disease with limited diagnostic tools for early detection.
Positron Emission Tomography (PET) enables molecular imaging using radiotracers labeled
with fluorine-18, a radionuclide offering optimal half-life and imaging resolution. This work
aimed to design and synthesize novel radiotracers targeting human neutrophil elastase
(HNE), a key enzyme implicated in fibrotic remodeling. Several candidate molecules were
prepared and evaluated for chemical stability and biological activity. The oxazinone
derivative demonstrated significant inhibitory potency toward HNE and acceptable stability
under radiolabeling conditions, justifying its selection for precursor synthesis. An
arylstannane derivative was successfully obtained and submitted to automated [18F]
fluorination, achieving a radiochemical conversion of 85% and a pre-purification non-decay
corrected yield of 53%. These results confirm the feasibility of the proposed strategy and
the potential of PET imaging in fibrosis diagnosis. Future work will focus on purification
optimization and preclinical validation to advance fibrosis imaging.
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Maxime Harhellier-Memoire-2026.pdf
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