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Dual-modal tumor-selective benzofuran tracer integrating real-time imaging and anticancer effects
Ho Jin Han1, Min Su Yim2,3, Gwi Ja Hwang1
1Chemical Biology Research Center, Korea Research Institute of Bioscience and Biotechnology. Cheongju 28116, Republic of Korea.
Abstract:
Microtubule-targeting agents remain a cornerstone of cancer therapy; however, few compounds can simultaneously visualize intratumoral distribution and correlate pharmacodynamics with therapeutic response. Here, we describe BF-04, a Benzofuran-derived microtubule destabilizer that circumvents multidrug resistance and integrates anticancer efficacy with dual-modality imaging. Chemical conjugation with the Cyanine 5 fluorescent dye (Cy5) and Zirconium-89 (89Zr) provided high-contrast, real-time fluorescence and Positron emission tomography (PET) signals without the need for antibody or nanoparticle carriers, enabling direct monitoring of drug distribution and retention in tumors. Importantly, BF-04 exhibited tumor-selective accumulation independent of labeling, confirming a scaffold-driven targeting mechanism with strong translational potential for image-guided therapy. Mechanistically, BF-04 induced microtubule depolymerization, mitotic arrest, and apoptosis across multiple cancer cell lines and patient-derived organoids (PDOs). In vivo studies demonstrated selective tumor uptake and robust growth suppression with minimal systemic toxicity. Collectively, these findings establish BF-04 as a promising theranostic platform that combines potent microtubule disruption with real-time imaging to facilitate precision cancer therapy.