Adenosine A2A Receptor Activation Enhances Blood-Tumor Barrier Permeability in a Rodent Glioma Model

Mol Cancer Res. 2021 Dec;19(12):2081-2095. doi: 10.1158/1541-7786.MCR-19-0995. Epub 2021 Sep 14.

Abstract

The blood-tumor barrier (BTB) limits the entry of effective chemotherapeutic agents into the brain for treatment of malignant tumors like glioblastoma. Poor drug entry across the BTB allows infiltrative glioma stem cells to evade therapy and develop treatment resistance. Regadenoson, an FDA-approved adenosine A2A receptor (A2AR) agonist, has been shown to increase drug delivery across the blood-brain barrier in non-tumor-bearing rodents without a defined mechanism of enhancing BTB permeability. Here, we characterize the time-dependent impact of regadenoson on brain endothelial cell interactions and paracellular transport, using mouse and rat brain endothelial cells and tumor models. In vitro, A2AR activation leads to disorganization of cytoskeletal actin filaments by 30 minutes, downregulation of junctional protein expression by 4 hours, and reestablishment of endothelial cell integrity by 8 hours. In rats bearing intracranial gliomas, regadenoson treatment results in increase of intratumoral temozolomide concentrations, yet no increased survival noted with combined temozolomide therapy. These findings demonstrate regadenoson's ability to induce brain endothelial structural changes among glioma to increase BTB permeability. The use of vasoactive mediators, like regadenoson, which transiently influences paracellular transport, should further be explored to evaluate their potential to enhance central nervous system treatment delivery to aggressive brain tumors. IMPLICATIONS: This study provides insight on the use of a vasoactive agent to increase exposure of the BTB to chemotherapy with intention to improve glioma treatment efficacy.

Publication types

  • Research Support, N.I.H., Intramural

MeSH terms

  • Animals
  • Blood-Brain Barrier / metabolism*
  • Brain Neoplasms / genetics*
  • Brain Neoplasms / mortality
  • Disease Models, Animal
  • Female
  • Glioma / genetics*
  • Glioma / mortality
  • Humans
  • Mice
  • Mice, SCID
  • Rats
  • Rats, Nude
  • Receptor, Adenosine A2A / metabolism*
  • Survival Analysis
  • Transfection

Substances

  • Receptor, Adenosine A2A