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Preparing a 68Ga-labeled Arginine Glycine Aspartate (RGD)-peptide for Angiogenesis
Published on: January 7, 2019
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
Abstract:
Angiogenesis-associated integrin alpha(v)beta(3) represents an attractive target for therapeutic intervention because it becomes highly upregulated on angiogenic endothelium and plays an important role in the survival of endothelial cells. Cyclic RGD peptides were prior shown to have a high affinity for alpha(v)beta(3) and can induce apoptosis of endothelial cells. In our laboratory, monocyclic RGD peptides (cRGDfK) were chemically coupled to a protein backbone. Previous results demonstrated that the resulting RGDpep-HuMab conjugate bound with increased avidity to alpha(v)beta(3)/alpha(v)beta(5) on endothelial cells. In our present study, RGDpep-HuMab was injected intravenously and intraperitoneally in B16.F10 tumor-bearing mice to determine its pharmacokinetics and organ distribution. In the tumor, the RGDpep-HuMab conjugate specifically localized at the endothelium as was demonstrated by immunohistochemistry. The control RADpep-HuMab conjugate was not detected in the tumor. Besides tumor localization RGDpep-HuMab was found in liver and spleen associated with macrophages. This uptake by macrophages is probably responsible for the more rapid clearance of RGDpep-HuMab from the circulation than HuMab and RADpep-HuMab. The half-life of RGDpep-HuMab (90 min) was still considerably longer than that of free RGD peptides (<10 min). This prolonged circulation time may be favorable for drug targeting strategies because the target cells are exposed to the conjugate for a longer time period. Taken together these results indicate that RGD-modified proteins are suitable carriers to deliver therapeutic agents into tumor or inflammation induced angiogenic endothelial cells.
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.
