Results: Analyzing In Vivo Binding Affinity, Stability, and Imaging Capacity of [68Ga]DPA
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Conclusion
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This method uses D-peptide DPA, labeled with Gallium-68. The radio tracer Gallium-68 to label the DPA enables real-time visualization of PDL-1 expression in the whole body in a noninvasive manner. The use of D-peptide confers the radio tracer with
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This study developed a noninvasive and real-time method to evaluate the distribution of programmed death-ligand 1 in the whole body, based on positron emission tomographic imaging of [68Ga] D-dodecapeptide antagonist. This technique has advantages over conventional immunohistochemistry and improves the efficiency of identifying appropriate patients who will benefit from immune checkpoint blockade therapy.