A dual-action niclosamide-based prodrug that targets cancer stem cells and inhibits TNBC metastasis.

Kim, Ji Hyeon; Park, Soeun; Jung, Eunsun; Shin, Jinwoo; Kim, Yoon-Jae; Kim, Ji Young; Sessler, Jonathan L; Seo, Jae Hong et al. · Proc Natl Acad Sci U S A · 2023

basic_science · Level V

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Abstract

Chemotherapy typically destroys the tumor mass but rarely eradicates the cancer stem cells (CSCs) that can drive metastatic recurrence. A key current challenge is finding ways to eradicate CSCs and suppress their characteristics. Here, we report a prodrug, <b>Nic-A</b>, created by combining a carbonic anhydrase IX (CAIX) inhibitor, acetazolamide, with a signal transducer and transcriptional activator 3 (STAT3) inhibitor, niclosamide. <b>Nic-A</b> was designed to target triple-negative breast cancer (TNBC) CSCs and was found to inhibit both proliferating TNBC cells and CSCs via STAT3 dysregulation and suppression of CSC-like properties. Its use leads to a decrease in aldehyde dehydrogenase 1 activity, CD44<sup>high</sup>/CD24<sup>low</sup> stem-like subpopulations, and tumor spheroid-forming ability. TNBC xenograft tumors treated with <b>Nic-A</b> exhibited decreased angiogenesis and tumor growth, as well as decreased Ki-67 expression and increased apoptosis. In addition, distant metastases were suppressed in TNBC allografts derived from a CSC-enriched population. This study thus highlights a potential strategy for addressing CSC-based cancer recurrence.

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