PET Imaging of the Natural Killer Cell Activation Receptor NKp30

Travis M Shaffer1, Amin Aalipour2, Christian M Schürch3

  • 1Department of Radiology, Stanford University, Stanford, California.

Insights

New PET imaging probes targeting NKp30 offer a way to track natural killer (NK) cells in cancer immunotherapy. This method accurately visualizes NK cell infiltration in tumors, improving treatment monitoring.

Area of Science:

  • Immunology
  • Oncology
  • Radiochemistry

Background:

  • Cancer immunotherapies, particularly those involving natural killer (NK) cells, show promise but require effective monitoring methods.
  • Current monitoring techniques like peripheral NK cell counts or tumor volume changes are insufficient for assessing immunotherapy efficacy.
  • Novel imaging strategies are needed to visualize NK cell activity and trafficking at tumor sites.

Purpose of the Study:

  • To develop and validate antibody-based positron emission tomography (PET) probes for imaging NK cells.
  • To assess the specificity and efficacy of these probes in preclinical cancer models.
  • To establish NKp30 as a viable imaging target for monitoring NK cell-based immunotherapies.

Main Methods:

  • Development of PET probes targeting NKp30, an activation receptor on human NK cells.
  • Quantitative flow cytometry to assess NKp30 expression under various activation conditions.
  • Radiolabeling of an NKp30 antibody with 64Cu or 89Zr for PET imaging.
  • In vivo evaluation in xenograft and adoptive cell transfer mouse models, alongside immunofluorescence staining of human renal cell carcinoma (RCC) samples.

Main Results:

  • Consistent NKp30 receptor expression was observed on NK cells during activation.
  • Human RCC samples confirmed NKp30 and NKp46 co-expression on tumor-infiltrating NK cells.
  • Both 64Cu- and 89Zr-labeled NKp30 antibody PET probes demonstrated high stability and specificity in vitro and in vivo.
  • 89Zr-NKp30Ab showed superior on-target contrast compared to 64Cu-NKp30Ab.
  • 64Cu-NKp30Ab successfully visualized NK cell trafficking to the liver and spleen.

Conclusions:

  • NKp30 is a reliable target for quantitative PET imaging of NK cells.
  • Targeting NKp30 offers advantages over CD56 for detecting tumor-infiltrating NK cells in human cancers.
  • These novel PET imaging agents represent a significant advancement for monitoring NK cell immunotherapies.