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Molecular advances in pretargeting radioimunotherapy with bispecific antibodies
Chien-Hsing Chang1, Robert M Sharkey, Edmund A Rossi
1IBC Pharmaceuticals, L. L. C., Morris Plains, New Jersey 07950, USA.
Abstract:
The use of antibodies against tumor-associated cell surface antigens for the targeted delivery of radionuclides was introduced >20 years ago. Although encouraging results have been achieved with radiolabeled antibodies in the management of hematopoietic malignancies, there remains a need for successfully treating solid tumors with this modality. One promising approach involving pretargeted delivery of radionuclides has been shown to be capable of significantly increasing the radioactive uptake in tumor relative to normal organs, thereby potentially improving the efficacy of both detection and therapy of cancer. Uncoupling of the radionuclide from the tumor-targeting antibody allows the relatively slow process of antibody localization and clearance to occur before a very rapid and highly specific delivery of the radioactive payload carried on a small molecule, such as a peptide. This minireview discusses the various strategies and advancements made since the concept of pretargeting was proposed in the mid-1980s, with emphasis on those comprising bispecific antibodies for cancer therapy. Critical aspects of these pretargeting systems for achieving higher tumor:nontumor ratios are considered. In addition, both preclinical and clinical results obtained from a pretargeting method known as the Affinity Enhancement System are presented. Future directions of pretargeting technology are also suggested.
Insights
Pretargeted radionuclide delivery enhances cancer detection and therapy by uncoupling antibodies from radioactive payloads. This approach improves tumor uptake, offering a promising strategy for treating solid tumors.
Area of Science:
- Oncology
- Radiochemistry
- Immunotherapy
Background:
- Antibody-based radionuclide delivery has shown success in hematopoietic malignancies but faces challenges in solid tumors.
- Pretargeted radionuclide delivery aims to improve tumor-specific uptake and reduce off-target effects.
Purpose of the Study:
- To review advancements in pretargeted radionuclide delivery strategies for cancer therapy.
- To highlight the use of bispecific antibodies and the Affinity Enhancement System.
Main Methods:
- Review of pretargeting strategies, focusing on bispecific antibodies.
- Discussion of critical aspects for achieving high tumor:nontumor ratios.
- Presentation of preclinical and clinical data for the Affinity Enhancement System.
Main Results:
- Pretargeting significantly increases radioactive uptake in tumors relative to normal organs.
- The Affinity Enhancement System demonstrates promising preclinical and clinical results.
- Uncoupling the radionuclide allows for optimized antibody localization and payload delivery.
Conclusions:
- Pretargeted radionuclide delivery is a promising approach for improving cancer detection and therapy, particularly for solid tumors.
- Further development of pretargeting systems, including bispecific antibodies, is crucial for clinical success.