Fast tumor accumulation and payload release of c-Met targeting aptamer-drug conjugate enables robust anti-tumor
Yuan Liu1, Jiaxuan He2, Minhui Su3
1School of Molecular Medicine, Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences, Hangzhou 310024, China; The Cancer Hospital of the Hangzhou Institute of Medicine (Zhejiang Cancer Hospital), Zhejiang Key Laboratory of Functional Nucleic Acids for Basic and Clinical Application, Hangzhou Institute of Medicine (HIM), Chinese Academy of Sciences, Hangzhou 310022, China.
Abstract:
c-Met overexpression promotes tumor progression in many cancers, yet approved inhibitors benefit only patients with MET mutation, leaving most c-Met-overexpressing patients without effective therapy. Inspired by antibody-drug conjugates (ADCs), composed of an antibody linked to cytotoxic agents, a c-Met-targeting drug conjugate enabling MET-independent cytotoxicity offers a strategy to address this gap. Here, we developed an aptamer-drug conjugate (ApDC), integrating SL1, a c-Met-targeting aptamer-short oligonucleotide with high target affinity-with monomethyl auristatin E (MMAE), via cathepsin B-sensitive linker. This ApDC selectively binds c-Met-overexpressing cells, undergoes receptor-mediated internalization, and releases MMAE to induce apoptosis. It achieves efficient tumor accumulation, sustained payload retention, rapid systemic clearance, and robust anti-tumor efficacy across multiple c-Met overexpressing tumor models. With maintained surface receptor expression, rapid tumor accumulation and active payload release, it outperforms a benchmark c-Met-targeting ADC. Combining precise targeting, potent efficacy and favorable safety, this ApDC represents a promising strategy for c-Met-targeted cancer therapy.
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