Radioimmunotherapy targeting of HER2/neu oncoprotein on ovarian tumor using lead-212-DOTA-AE1

E Horak1, F Hartmann, K Garmestani

  • 1Metabolism Branch, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.

Abstract

Insights

Radioimmunotherapy using lead-212 conjugated to an anti-HER2 antibody showed efficacy in preventing ovarian tumor development in mice. However, it had limited success against larger tumors due to the short half-life of lead-212.

Area of Science:

  • Oncology
  • Radiochemistry
  • Immunotherapy

Background:

  • Radioimmunotherapy (RIT) utilizes radiolabeled antibodies to target cancer cells.
  • Lead-212 (212Pb) offers potent alpha and beta emissions for targeted radiation therapy.
  • HER2/neu proto-oncogene is a target in certain cancers, including ovarian cancer.

Purpose of the Study:

  • To evaluate the specificity, toxicity, and efficacy of lead-212 radioimmunotherapy (212Pb-AE1) in a human ovarian tumor model (SK-OV-3) in mice.
  • To assess the potential of 212Pb-AE1 in both established and adjuvant settings for ovarian cancer treatment.

Main Methods:

  • Conjugation of 212Pb to the anti-HER2/neu monoclonal antibody AE1 using a bifunctional chelator (p-SCN-Bz-DOTA).
  • Evaluation of antibody binding affinity, pharmacokinetics, and tissue distribution.
  • Assessment of toxicity and therapeutic efficacy in nude mice bearing SK-OV-3 ovarian tumor xenografts (ascites and solid models).

Main Results:

  • The dose-limiting toxicity of 212Pb-AE1 was bone marrow suppression at doses above 25 microCi.
  • Intraperitoneal administration of 212Pb-AE1 significantly prolonged tumor-free survival in an adjuvant setting (P=0.015).
  • Intravenous treatment with 212Pb-AE1 prevented tumor development in all mice when administered 3 days after tumor inoculation (P=0.002).
  • Modest inhibition of small tumor growth was observed, but larger tumors were not affected.

Conclusions:

  • 212Pb-AE1 shows promise in the adjuvant setting for ovarian cancer therapy.
  • Its efficacy against bulky solid tumors is limited by the short physical half-life of 212Pb.
  • Potential applications include leukemia treatment, intracavitary therapy, and targeting tumor vasculature.

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