BPA-BNCT exerts potent and selective antitumor effects against cervical cancer through a dual mechanism: LAT1-mediated boron delivery ensures tumor specificity, while the resulting high-linear energy transfer radiation induces DNA damage that capitalizes on the inherent limitations of the tumor cells' DNA repair capacity, leading to catastrophic cell death. The therapy demonstrates a distinct advantage in treating adenocarcinoma subtypes, which are typically less responsive to conventional radiotherapy. These findings provide robust preclinical evidence supporting BNCT as a promising therapeutic approach, particularly for radiotherapy-resistant cervical adenocarcinoma.
Zhang et al. (Thu,) studied this question.
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