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Pretargeted Radioimmunotherapy Based on the Inverse Electron Demand Diels-Alder Reaction
Published on: January 29, 2019
A 177Lu-Labeled Circular Bivalent Aptamer for PTK7-Targeting Radionuclide Therapy in Ovarian Cancer and Orthotopic
Xiaoning Tong1, Yi He1,2, Heng Liu1,2
1Department of Clinical Laboratory, Zhejiang Cancer Hospital, Zhejiang Key Laboratory of Functional Nucleic Acids for Basic and Clinical Application, Hangzhou Institute of Medicine (HIM), Chinese Academy of Sciences, Hangzhou310022, China.
Abstract:
Targeted radionuclide therapy (TRT) is a promising strategy for precision oncology but is limited by the lack of high-performance targeting ligands. Here, we report a lutetium-177 (177Lu)-labeled PTK7-targeted cyclized bivalent aptamer (CBSgc8) for treating an orthotopic hepatoblastoma. The cyclized multivalent design enhances biostability and binding affinity, while 177Lu labeling preserves its functional properties. The resulting 177Lu-CBSgc8 exhibited high serum stability, strong specificity for PTK7-positive cells, efficient internalization, and dose-dependent cytotoxicity in vitro. In vivo, 177Lu-CBSgc8 inhibited tumor growth in an OVCAR3 ovarian cancer model, although tumor accumulation remained limited. Given its PTK7-targeting capability and preferential hepatic distribution, we further evaluated its therapeutic potential in an orthotopic HepG2 hepatoblastoma model. In this setting, 177Lu-CBSgc8 achieved 76.6% tumor growth inhibition with a favorable safety. These findings demonstrate the potential of exploiting tissue distribution characteristics together with molecular targeting to expand the applicability of aptamer-based TRTs.
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