<resource xmlns:datacite="http://datacite.org/schema/kernel-4">
<creators>
<creator>
<creatorName nameType="Personal">Victoria Weissenböck</creatorName>
<givenName>Victoria</givenName>
<familyName>Weissenböck</familyName>
</creator>
<creator>
<creatorName nameType="Personal">Michaela Schlederer</creatorName>
<givenName>Michaela</givenName>
<familyName>Schlederer</familyName>
</creator>
<creator>
<creatorName nameType="Personal">Latifa Bakiri</creatorName>
<givenName>Latifa</givenName>
<familyName>Bakiri</familyName>
</creator>
<creator>
<creatorName nameType="Personal">Johanna Schaffenrath</creatorName>
<givenName>Johanna</givenName>
<familyName>Schaffenrath</familyName>
</creator>
<creator>
<creatorName nameType="Personal">Erwin F. Wagner</creatorName>
<givenName>Erwin F.</givenName>
<familyName>Wagner</familyName>
</creator>
<creator>
<creatorName nameType="Personal">Frank Rösch</creatorName>
<givenName>Frank</givenName>
<familyName>Rösch</familyName>
</creator>
<creator>
<creatorName nameType="Personal">Marcus Hacker</creatorName>
<givenName>Marcus</givenName>
<familyName>Hacker</familyName>
</creator>
<creator>
<creatorName nameType="Personal">Lukas Kenner</creatorName>
<givenName>Lukas</givenName>
<familyName>Kenner</familyName>
</creator>
<creator>
<creatorName nameType="Personal">Cécile Philippe</creatorName>
<givenName>Cécile</givenName>
<familyName>Philippe</familyName>
</creator>
</creators>
<titles>
<title>FAPI Tracer en Vogue: Evaluating [68Ga]Ga-DATA5m.SA.FAPi for Molecular Imaging of Pulmonary Fibrosis</title>
</titles>
<publisher>MDPI</publisher>
<publicationYear>2026</publicationYear>
<descriptions>
<description descriptionType="Other">Background/Objectives: Radiolabeled fibroblast activation protein inhibitors (FAPIs) are emerging as promising imaging agents assessing fibrotic diseases. This study evaluates [68Ga]Ga-DATA5m.SA.FAPi for imaging pulmonary fibrosis in two mouse models, bleomycin-induced (BLM) and a transgenic (fra-2tg) model, both displaying characteristics of human pulmonary fibrotic diseases. Methods: In the BLM model, C57BL/6 mice were treated with bleomycin or isotonic sodium chloride (controls) for 4, 5, and 6 weeks, followed by [68Ga]Ga-DATA5m.SA.FAPi PET/CT scans. Fra-2tg mice and wildtype (WT) littermates underwent at 7, 11, and 18/19 weeks of age a PET/CT scan. The selected timepoints correspond to early, middle, and late disease stages for each model. Imaging was complemented by ex vivo quantification, histological, and immunohistochemical (IHC) analyses. Results: In BLM mice, pulmonary [68Ga]Ga-DATA5m.SA.FAPi uptake showed a trend toward increase as early as 5 weeks of treatment compared with the controls, which was confirmed by ex vivo analysis (BLM: 3.31 ± 0.29%ID/g, n = 5; control: 1.61 ± 0.29%ID/g, n = 4; p = 0.0035). In fra-2tg mice, no significant differences could be detected. IHC revealed elevated pulmonary FAP expression specifically at early (BLM) and mild (fra-2tg) disease stages, whereas for BLM, tracer uptake was more pronounced at later stages. Conclusions: Our findings complement and extend observations from previous studies and support the potential of FAPI tracers as molecular imaging agents for pulmonary fibrosis.</description>
</descriptions>
<resourceType resourceTypeGeneral="Text">PDFDocument</resourceType>
<language>eng</language>
<dates>
<date dateType="Created">2026-07-22T07:53:47.576395660Z</date>
<date dateType="Issued">2026</date>
</dates>
<subjects>
<subject>FAP</subject>
<subject>Fibrosis</subject>
<subject>PET</subject>
<subject>Bleomycin</subject>
<subject>Fra-2</subject>
</subjects>
<sizes>
<size>8411901 b</size>
</sizes>
<formats>
<format>application/pdf</format>
</formats>
<rightsList>
<rights rightsURI="http://creativecommons.org/licenses/by/4.0/">http://creativecommons.org/licenses/by/4.0/</rights>
</rightsList>
</resource>
