Targeting of RGD-modified proteins to tumor vasculature: a pharmacokinetic and cellular distribution study

Astrid J Schraa1, Robbert J Kok, Henk E Moorlag

  • 1Department of Pathology and Laboratory Medicine, Medical Biology Section, Tumor Immunology Laboratory, Groningen, The Netherlands. a.j.schraa@med.rug.nl

Insights

Modified RGD peptides conjugated to a protein backbone show specific tumor endothelium targeting in mice. This RGDpep-HuMab conjugate has a prolonged circulation time, making it a promising carrier for anti-cancer drug delivery.

Area of Science:

  • Biomedical Engineering
  • Oncology
  • Pharmacology

Background:

  • Integrin alpha(v)beta(3) is upregulated on angiogenic endothelium and crucial for endothelial cell survival.
  • Cyclic RGD peptides bind alpha(v)beta(3) and induce endothelial cell apoptosis.
  • RGDpep-HuMab conjugates demonstrate increased avidity for alpha(v)beta(3)/alpha(v)beta(5) on endothelial cells.

Purpose of the Study:

  • To evaluate the pharmacokinetics and organ distribution of RGDpep-HuMab in tumor-bearing mice.
  • To assess the tumor-specific localization of RGDpep-HuMab.
  • To compare the biodistribution of RGDpep-HuMab with control conjugates.

Main Methods:

  • Intravenous and intraperitoneal injection of RGDpep-HuMab and RADpep-HuMab in B16.F10 tumor-bearing mice.
  • Immunohistochemistry to confirm conjugate localization in tumor endothelium.
  • Pharmacokinetic analysis to determine circulation half-life.

Main Results:

  • RGDpep-HuMab specifically localized to tumor endothelium.
  • Control RADpep-HuMab conjugate was not detected in tumors.
  • RGDpep-HuMab was found in liver and spleen, associated with macrophages, leading to rapid clearance.
  • The half-life of RGDpep-HuMab (90 min) was significantly longer than free RGD peptides (<10 min).

Conclusions:

  • RGD-modified proteins are suitable carriers for delivering therapeutic agents to tumor- or inflammation-induced angiogenic endothelial cells.
  • The prolonged circulation time of RGDpep-HuMab is advantageous for drug targeting strategies.
  • Specific targeting of angiogenic endothelium by RGD-modified proteins offers a potential therapeutic approach.

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