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Updated: May 18, 2026

Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
Tumor targeting using anti-epidermal growth factor receptor (ior egf/r3) immunoconjugate with a tetraaza macrocyclic
Gauri Mishra1, Puja Panwar, Anil K Mishra
1Department of Cyclotron and Radiopharmaceuticals, Institute of Nuclear Medicine and Allied Sciences, Brig. S. K. Mazumdar Road, Delhi-110054, India.
Abstract:
Epidermal growth factor receptor (EGFR) signaling inhibition represents a highly promising arena for the application of molecularly targeted cancer therapies. EGFR conjugated metal chelates have been proposed as potential imaging agents for cancers that overexpress EGFR receptors. Through improved understanding of EGFR biology in human cancers, there is anticipation that more tumor-selective therapy approaches with diminished collateral normal tissue toxicity can be advanced. We report here on the results with a thermodynamically stable chelate, 1,4,7-tris(carboxymethyl)-10-(2-aminoethyl)-1,4,7,10-tetraazacyclododecane (DO3A-EA) and anti-EGFr (ior egf/r3) conjugate to develop immunospecific imaging agent. Conjugation and labelling with anti-EGFr was performed using standard procedure and subjected to purification on size exclusion chromatography. The conjugated antibodies were labeled with a specific activity 20-30 mCi/mg of protein. Labeling efficiencies were measured by ascending paper chromatography on ITLC-SG strips. Radiolabeling of the immunoconjugate was found to be 98.5 ± 0.30%. (99m)Tc-DO3A-EA-EGFr conjugate was studied in athymic mice bearing U-87MG, MDA-MB-468 tumors following intravenous injection. Pharmacokinetic and biodistribution studies confirmed long circulation times (t(1/2)(fast) = 45 min and t1/2(slow) = 4 hours 40 min) and efficient accumulation in tumors. Biodistribution studies in athymic mice grafted with U-87MG human glioblastoma multiforme and Hela human cervical carcinoma tumors revealed significant localization of (99m)Tc-labeled antibodies conjugate in tumors and reduced accumulation in normal organs. This new chelating agent is promising for immunoscintigraphy since good tumour-to-normal organ contrast could be demonstrated. These properties can be exploited for immunospecifc contrast agents in nuclear medicine and SPECT imaging.
Insights
Researchers developed a new imaging agent by conjugating a metal chelate with an anti-EGFR antibody. This agent shows promising tumor targeting and accumulation for cancer imaging applications.
Area of Science:
- Oncology
- Radiochemistry
- Molecular Imaging
Background:
- Epidermal growth factor receptor (EGFR) signaling is crucial in many cancers.
- Targeting EGFR offers a promising avenue for molecularly targeted cancer therapies.
- Current imaging agents require improvement for tumor selectivity and reduced normal tissue toxicity.
Purpose of the Study:
- To develop and evaluate a novel immunospecific imaging agent for EGFR-overexpressing cancers.
- To assess the efficacy of a new chelate, DO3A-EA, conjugated to an anti-EGFR antibody for SPECT imaging.
- To determine the pharmacokinetic and biodistribution profile of the novel imaging agent.
Main Methods:
- Conjugation of 1,4,7-tris(carboxymethyl)-10-(2-aminoethyl)-1,4,7,10-tetraazacyclododecane (DO3A-EA) with anti-EGFr (ior egf/r3) antibody.
- Radiolabeling of the immunoconjugate with Technetium-99m ((99m)Tc).
- In vivo studies in athymic mice bearing human tumor xenografts (U-87MG, MDA-MB-468, Hela) to evaluate biodistribution and pharmacokinetics.
Main Results:
- High radiolabeling efficiency (98.5 ± 0.30%) was achieved.
- The (99m)Tc-labeled conjugate exhibited long circulation times (t(1/2)(fast) = 45 min, t1/2(slow) = 4 hours 40 min).
- Significant accumulation of the imaging agent was observed in tumors, with reduced uptake in normal organs, demonstrating good tumor-to-normal organ contrast.
Conclusions:
- The (99m)Tc-DO3A-EA-EGFr conjugate is a promising candidate for immunoscintigraphy.
- The developed agent shows potential for immunospecifc contrast in nuclear medicine and SPECT imaging.
- This approach may lead to more tumor-selective imaging with diminished normal tissue toxicity.
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