Characterization of the Novel P2X7 Receptor Radioligand [3H]JNJ-64413739 in Human Brain Tissue

Jens D Mikkelsen1,2,3, Sanjay S Aripaka1, Sif Kaad1

  • 1Neurobiology Research Unit, University Hospital Rigshospitalet, Copenhagen 2100, Denmark.

ACS Chemical Neuroscience
|December 19, 2022
PubMed

Insights

This study characterized [3H]JNJ-64413739, a novel radioligand for the P2X7 receptor, in human brain tissue. It confirms the ligand

Area of Science:

  • Neuroscience
  • Radiochemistry
  • Molecular Imaging

Background:

  • Neuroinflammation detection relies on microglia-targeting radioligands.
  • Purinergic receptor P2X7R (P2X7R) expression increases with inflammation.
  • The P2X7R ligand JNJ-64413739 shows potential for neuroinflammation imaging.

Purpose of the Study:

  • To determine the in vitro binding properties (Bmax and Kd) of [3H]JNJ-64413739 in human brain tissue.
  • To explore correlations between P2X7R binding and demographic factors.
  • To investigate the relationship between P2X7R and TSPO availability.

Main Methods:

  • Autoradiography on human cortical tissue from 48 epilepsy patients.
  • Saturation binding assays to measure Bmax and Kd.
  • Displacement assays using cold ligand and P2X7R antagonists.
  • Correlation analysis with age, sex, and disease duration.
  • Simultaneous assessment of [3H]JNJ-64413739 and [123I]CLINDE binding.

Main Results:

  • [3H]JNJ-64413739 demonstrated a Kd of 5 nM in both gray and white matter.
  • Bmax was higher in white matter compared to gray matter.
  • Binding variability was 38% and not correlated with age, sex, or disease duration.
  • No significant correlation was found between [3H]JNJ-64413739 and [123I]CLINDE binding.

Conclusions:

  • [3H]JNJ-64413739 is a suitable radioligand for assessing P2X7R distribution and expression in the human brain.
  • The ligand's binding properties are consistent across gray and white matter.
  • Further research is needed to clarify the relationship between P2X7R and TSPO in neuroinflammation.