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FGF2-targeted Timosaponin AIII provokes ER stress and dampens PI3KAKT signaling pathway in breast cancer.

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Free radical biology & medicine 📖 저널 OA 11.9% 2023: 0/1 OA 2024: 0/2 OA 2025: 2/22 OA 2026: 6/42 OA 2023~2026 2026 Vol.247() p. 95-106
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Li Z, Zhang Z, Qian X

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Timosaponin AIII (Tim-AIII), a steroidal saponin derived from Anemarrhena asphodeloides, has emerged as a promising antitumor agent, yet its precise molecular targets and mechanisms in breast cancer r

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APA Li Z, Zhang Z, Qian X (2026). FGF2-targeted Timosaponin AIII provokes ER stress and dampens PI3KAKT signaling pathway in breast cancer.. Free radical biology & medicine, 247, 95-106. https://doi.org/10.1016/j.freeradbiomed.2026.01.043
MLA Li Z, et al.. "FGF2-targeted Timosaponin AIII provokes ER stress and dampens PI3KAKT signaling pathway in breast cancer.." Free radical biology & medicine, vol. 247, 2026, pp. 95-106.
PMID 41581576 ↗

Abstract

Timosaponin AIII (Tim-AIII), a steroidal saponin derived from Anemarrhena asphodeloides, has emerged as a promising antitumor agent, yet its precise molecular targets and mechanisms in breast cancer remain poorly defined. Here, we identify fibroblast growth factor 2 (FGF2) as a direct binding target of Tim-AIII using a combination of network pharmacology, CETSA, and surface plasmon resonance assays. Mechanistically, Tim-AIII exhibits a dual therapeutic mode of action. First, it induces reactive oxygen species (ROS)-mediated endoplasmic reticulum (ER) stress, activating the eIF2α-ATF4-CHOP axis and initiating apoptosis. Second, it dampens the FGF2-FGFR1-PI3K/AKT signaling cascade, thereby inhibiting epithelial-mesenchymal transition (EMT) and suppressing cell migration and invasion. RNA sequencing and enrichment analyses confirm that Tim-AIII regulates critical oncogenic pathways, including ER stress, calcium signaling, and PI3K/AKT. In vivo evaluations demonstrate that Tim-AIII significantly reduces tumor growth without detectable systemic toxicity in breast cancer-bearing mice. This study not only elucidates the molecular basis of Tim-AIII's antitumor efficacy but also positions it as a potential targeted therapeutic for breast cancer, with dual action on ERS-induced apoptosis and EMT suppression.

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