Evaluation of VLA-4 (Integrin α4β1) as a Shared Target for Radiopharmaceutical Therapy across Solid Tumors

Jeyshka M Reyes-González1, Harikrishnan Rajkumar2, Woonghee Lee3

  • 1Pediatric Oncology Branch, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, Maryland.

PubMed

Insights

Vascular cell adhesion molecule 1 (VLA-4) is a promising target for radiopharmaceutical therapy (RPT) in solid tumors. Preclinical studies show [67Cu]Cu-LLP2A is well-tolerated and effective, warranting further investigation.

Area of Science:

  • Oncology
  • Radiopharmaceutical Therapy
  • Molecular Imaging

Background:

  • Radiopharmaceutical therapy (RPT) faces challenges due to the lack of broadly expressed targets in solid tumors.
  • Vascular cell adhesion molecule 1 (VLA-4), also known as integrin α4β1, is explored as a potential pan-cancer target.
  • ITGA4 gene expression, encoding the VLA-4 alpha 4 subunit (CD49d), is evaluated across various cancer types.

Purpose of the Study:

  • To assess VLA-4 as a target for RPT in solid tumors.
  • To evaluate the efficacy and safety of [67Cu]Cu-LLP2A, a VLA-4-targeting peptidomimetic, for preclinical imaging and RPT.

Main Methods:

  • Analyzed ITGA4 gene expression in public cancer datasets.
  • Determined VLA-4 protein expression via flow cytometry in 22 cancer cell lines.
  • Conducted in vivo PET/CT imaging, biodistribution, dosimetry, tolerability, and efficacy studies using [64Cu]Cu-LLP2A and [67Cu]Cu-LLP2A in preclinical cancer models.

Main Results:

  • ITGA4 is overexpressed in various solid tumors and hematological malignancies.
  • VLA-4 protein expression was high in 77% of tested cancer cell lines.
  • [64Cu]Cu-LLP2A PET/CT showed tumor uptake, and [67Cu]Cu-LLP2A demonstrated an acceptable toxicity profile with thymic atrophy as the main side effect, showing a dose-dependent tumor response.

Conclusions:

  • VLA-4 is broadly expressed in diverse cancer tissues and cell lines, supporting its potential as an RPT target.
  • [67Cu]Cu-LLP2A exhibits on-target, on-tumor effects, favorable dosimetry, and an acceptable toxicity profile in preclinical models.
  • Further investigation of [67Cu]Cu-LLP2A for RPT in solid tumors is warranted.

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