Synthesis and Preliminary Evaluations of [18F]fluorinated Pyridine-2- carboxamide Derivatives for Targeting PD-L1 in

Philipp Maier1,2, Gabriele Riehl1, Ina Israel1

  • 1Department of Nuclear Medicine, University Hospital Würzburg, 97080 Würzburg, Germany.

Abstract

Insights

New [18F]-labeled small-molecule probes, [18F]2 and [18F]3, show promise for imaging PD-1/PD-L1 expression in tumors. These novel positron emission tomography (PET) agents could aid in selecting cancer patients for immunotherapy.

Area of Science:

  • Radiochemistry
  • Molecular Imaging
  • Oncology

Background:

  • Immune checkpoint inhibitors (ICIs) improve patient survival but selecting suitable candidates remains difficult.
  • Current methods for detecting PD-L1 expression, like immunohistochemistry (IHC), have limitations for in vivo assessment.
  • Positron Emission Tomography (PET) offers a non-invasive approach for molecular imaging and patient selection for immunotherapy.

Purpose of the Study:

  • To develop novel [18F]-labeled pyridine-2-carboxamide derivatives as small-molecule probes.
  • To evaluate the potential of these probes for imaging the PD-1/PD-L1 immune checkpoint in cancer using PET.

Main Methods:

  • One-step radiofluorination of pyridine-2-carboxamide derivatives to yield [18F]2 and [18F]3.
  • Assessment of radiochemical yield, purity, and stability of the novel probes.
  • In vitro evaluation in PD-1/PD-L1 expressing cancer cells and autoradiographic analysis on tumor slices.

Main Results:

  • [18F]2 and [18F]3 were synthesized with good radiochemical yield (44 ± 5% and 30 ± 4%) and high purity (>98%).
  • Total synthesis time, including purification, was under 45 minutes.
  • Probes demonstrated excellent stability and significant accumulation in PD-1/PD-L1 expressing cancer cells and tumor tissues.

Conclusions:

  • The developed [18F]-labeled probes ([18F]2 and [18F]3) show potential for in vitro assessment of PD-L1 expression.
  • These novel PET imaging agents warrant further in vivo evaluation for clinical translation in cancer immunotherapy.