[68Ga]Ga-NODAGA-E[(cRGDyK)]2 Angiogenesis PET/MR in a Porcine Model of Chronic Myocardial Infarction.
Simon BentsenAndreas ClemmensenMathias LoftMette FlethøjKarina Poulsdóttir DebesTrine Pagh LudvigsenCecilie Bjørstrup LarsenJeppe KirchhoffLisbeth Høier OlsenJacob Eifer MøllerThomas Lund AndersenHelle Hjorth JohannesenThomas JespersenAndreas KjaerPublished in: Diagnostics (Basel, Switzerland) (2021)
Angiogenesis is crucial in tissue repair and prevents scar tissue formation following an ischemic event such as myocardial infarction. The ischemia induces formation of new capillaries, which have high expression of integrin αvβ3. [68Ga]Ga-NODAGA-E[(cRGDyK)]2 ([68Ga]Ga-RGD) is a promising PET-radiotracer reflecting angiogenesis by binding to integrin αvβ3. A Göttingen mini-pig underwent transient catheter-induced left anterior descending artery (LAD) occlusion for 120 min, and after 8 weeks was imaged on a Siemens mMR 3T PET/MR system. A large antero-septal infarction was evident by late gadolinium enhancement (LGE) on the short axis and 2-4 chamber views. The infarcted area corresponded to the area with high [68Ga]Ga-RGD uptake on the fused PET/MR images, with no uptake in the healthy myocardium. To support the hypothesis that [68Ga]Ga-RGD uptake reflects angiogenesis, biopsies were sampled from the infarct border and healthy myocardium. Expression of αvβ3 was evaluated using immunohistochemistry. The staining showed higher αvβ3 expression in the capillaries of the infarct border compared to those in the healthy myocardium. These initial data confirm in vivo detection of angiogenesis using [68Ga]Ga-RGD PET in a translational model, which overall support the method applicability when evaluating novel cardio-protective therapies.
Keyphrases
- pet ct
- positron emission tomography
- endothelial cells
- poor prognosis
- vascular endothelial growth factor
- heart failure
- magnetic resonance
- computed tomography
- deep learning
- contrast enhanced
- atrial fibrillation
- brain injury
- acute coronary syndrome
- long non coding rna
- binding protein
- drug induced
- cell migration
- sensitive detection