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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.
Abstract:
Background/Objectives: Integrin αVβ3 plays a crucial role in tumor angiogenesis and cancer progression, making it a key target for radiolabeled probes used in imaging and therapy. A previously developed probe, [125I]bcRGD, exhibited high selectivity for αVβ3 but limited tumor accumulation due to rapid blood clearance. This study aimed to address this issue through two strategies: (1) conjugating albumin-binding molecules to enhance systemic circulation and (2) dimerizing RGD peptides to improve binding affinity via multivalency effects. Methods: Three [125I]bcRGD derivatives were synthesized: [125I]bcRGDpal (with palmitic acid), [125I]bcRGDiba (with 4-(p-iodophenyl)butyric acid), and [125I]bcRGDdimer (a dimeric bicyclic RGD peptide). Their physicochemical properties, αVβ3-selectivity, albumin-binding capacity, and biodistribution were assessed in vitro and in vivo using tumor-bearing mice. Tumor models included αVβ3-high U-87 MG and αVβ3-low A549 xenografts. Results: [125I]bcRGDpal and [125I]bcRGDiba exhibited prolonged blood retention (30-fold and 55-fold vs. [125I]bcRGD, respectively) and increased tumor accumulation (3.9% ID/g and 3.6% ID/g at 2 h, respectively). Despite improved systemic circulation, tumor-to-blood ratios remained low (<1), indicating limited tumor retention. [125I]bcRGDdimer achieved significantly greater tumor accumulation (4.2% ID/g at 2 h) and favorable tumor-to-blood (22) and tumor-to-muscle (14) ratios, with a 5.4-fold higher uptake in U-87 MG tumors compared to A549 tumors. Conclusions: Dimerization was more effective than albumin binding in enhancing bcRGD's tumor-targeting potential. The dimeric probe demonstrated improved tumor accumulation, favorable pharmacokinetics, and preserved integrin selectivity. These findings provide a foundation for further structural optimization of bicyclic RGD peptides for integrin αVβ3-targeted imaging and therapy applications.
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.

