[ 64 Cu]Cu-PEG-FUD peptide for noninvasive and sensitive detection of murine pulmonary fibrosis

Hye Jin Lee,Ksenija Bernau, Thomas J. Harr,Zachary T. Rosenkrans, Grace A. Kessler, Kristen Stott, Angie Tebon Oler, Babita Rahar, Terry Zhu, Yadira Medina-Guevara, Nikesh Gupta, Inyoung Cho, Metti K. Gari,Brian M. Burkel,Justin J. Jeffery,Ashley M. Weichmann,Bianca R. Tomasini-Johansson,Suzanne M. Ponik,Jonathan W. Engle,Reinier Hernandez,Glen S. Kwon,Nathan Sandbo

Science Advances(2024)

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摘要
Idiopathic pulmonary fibrosis (IPF) is a chronic lung disease resulting in irreversible scarring within the lungs. However, the lack of biomarkers that enable real-time assessment of disease activity remains a challenge in providing efficient clinical decision-making and optimal patient care in IPF. Fibronectin (FN) is highly expressed in fibroblastic foci of the IPF lung where active extracellular matrix (ECM) deposition occurs. Functional upstream domain (FUD) tightly binds the N-terminal 70-kilodalton domain of FN that is crucial for FN assembly. In this study, we first demonstrate the capacity of PEGylated FUD (PEG-FUD) to target FN deposition in human IPF tissue ex vivo. We subsequently radiolabeled PEG-FUD with 64 Cu and monitored its spatiotemporal biodistribution via μPET/CT imaging in mice using the bleomycin-induced model of pulmonary injury and fibrosis. We demonstrated [ 64 Cu]Cu-PEG-FUD uptake 3 and 11 days following bleomycin treatment, suggesting that radiolabeled PEG-FUD holds promise as an imaging probe in aiding the assessment of fibrotic lung disease activity.
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