FOLR1-targeted actinium-225-based alpha-particle therapy eliminates ovarian cancer.

Singh, Neetu; Need, Esther; Berndt, Ayden; Goff, Matthew; Wilson, Lydia J; Mourtada, Firas; Guo, Feng; Mastren, Tara et al. · Sci Adv · 2026

basic_science · Level V

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Abstract

Despite the advancement in therapies, ovarian cancer treatment is challenging because of poor prognosis and high relapse associated with acquired resistance. Emerging targeted alpha particles, particularly actinium-225 (<sup>225</sup>Ac), for treating refractory cancers have opened avenues for improved therapeutic options. Here, we describe a successful example of folate receptor 1 (FOLR1)-targeted <sup>225</sup>Ac alpha-particle therapy for treatment of ovarian cancer. Longitudinal positron emission tomography imaging demonstrated high tumor-specific uptake of αFOLR1 (anti-FOLR1 antibody) in SKOV3 xenografts. FOLR1-targeted <sup>225</sup>Ac demonstrated high therapeutic efficacy, achieving marked tumor regression, 80% survival, and 40% complete tumor elimination. The therapy resulted in tumor-specific double-stranded DNA damage, and no obvious toxicity was observed in normal tissues. Estimated human dosimetry showed high absorbed dose for tumor and minimal absorbed dose for healthy tissues, establishing its safety. In totality, FOLR1-targeted <sup>225</sup>Ac alpha-particle therapy is an efficacious and safe treatment with high feasibility for clinical translation to fight against ovarian cancer.

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