Radioiodinated Bicyclic RGD Peptide Derivatives for Enhanced Tumor Accumulation

Naoya Kondo1,2, Marika Kato1, Aoi Oshima1

  • 1Department of Biofunctional Analysis, Graduate School of Pharmaceutical Sciences, Osaka Medical and Pharmaceutical University, 4-20-1 Nasahara, Takatsuki 569-1094, Osaka, Japan.

Insights

Dimerizing RGD peptides, not albumin binding, significantly improved tumor accumulation for targeted imaging. The dimeric probe showed enhanced targeting potential for integrin αVβ3 in cancer models.

Area of Science:

  • Biomedical imaging
  • Radiopharmaceutical chemistry
  • Cancer biology

Background:

  • Integrin αVβ3 is a key target in tumor angiogenesis and cancer progression.
  • Previous radiolabeled probes like [125I]bcRGD showed selectivity but suffered from rapid blood clearance, limiting tumor accumulation.
  • Strategies to enhance tumor targeting include improving systemic circulation and binding affinity.

Purpose of the Study:

  • To develop improved radiolabeled probes targeting integrin αVβ3.
  • To investigate the efficacy of albumin-binding molecules and peptide dimerization in enhancing tumor targeting.
  • To evaluate the biodistribution and tumor-targeting capabilities of novel [125I]bcRGD derivatives.

Main Methods:

  • Synthesis of three [125I]bcRGD derivatives: [125I]bcRGDpal (albumin-binding), [125I]bcRGDiba (albumin-binding), and [125I]bcRGDdimer (dimeric).
  • In vitro and in vivo assessment of physicochemical properties, αVβ3-selectivity, albumin-binding capacity, and biodistribution.
  • Evaluation in αVβ3-high (U-87 MG) and αVβ3-low (A549) tumor-bearing mouse models.

Main Results:

  • Albumin-binding derivatives ([125I]bcRGDpal, [125I]bcRGDiba) showed prolonged blood retention but limited tumor-to-blood ratios.
  • [125I]bcRGDdimer demonstrated significantly higher tumor accumulation (4.2% ID/g at 2h) and favorable tumor-to-blood (22) and tumor-to-muscle (14) ratios.
  • The dimeric probe showed 5.4-fold higher uptake in αVβ3-high U-87 MG tumors compared to αVβ3-low A549 tumors.

Conclusions:

  • Peptide dimerization is a more effective strategy than albumin binding for enhancing the tumor-targeting potential of bcRGD probes.
  • The dimeric probe ([125I]bcRGDdimer) offers improved tumor accumulation, favorable pharmacokinetics, and maintains integrin selectivity.
  • These findings support further optimization of dimeric bicyclic RGD peptides for integrin αVβ3-targeted imaging and therapy.