본문으로 건너뛰기
← 뒤로

Ezetimibe Engineered L14-8 Suppresses Advanced Prostate Cancer by Activating PLK1/TP53-SAT1-Induced Ferroptosis.

1/5 보강
Advanced science (Weinheim, Baden-Wurttemberg, Germany) 2025 Vol.12(29) p. e04192
Retraction 확인
출처

Zhang Y, Song XW, Zhang N, Li XH, Wu FC, Wei YA, Xu DL, Xu LF, Yuan FW

📝 환자 설명용 한 줄

Androgen receptor signaling inhibitors (ARSIs) have demonstrated a survival benefit in metastatic prostate cancer.

이 논문을 인용하기

BibTeX ↓ RIS ↓
APA Zhang Y, Song XW, et al. (2025). Ezetimibe Engineered L14-8 Suppresses Advanced Prostate Cancer by Activating PLK1/TP53-SAT1-Induced Ferroptosis.. Advanced science (Weinheim, Baden-Wurttemberg, Germany), 12(29), e04192. https://doi.org/10.1002/advs.202504192
MLA Zhang Y, et al.. "Ezetimibe Engineered L14-8 Suppresses Advanced Prostate Cancer by Activating PLK1/TP53-SAT1-Induced Ferroptosis.." Advanced science (Weinheim, Baden-Wurttemberg, Germany), vol. 12, no. 29, 2025, pp. e04192.
PMID 40536697

Abstract

Androgen receptor signaling inhibitors (ARSIs) have demonstrated a survival benefit in metastatic prostate cancer. However, patients taking these agents inevitably acquire resistance and even develop neuroendocrine prostate cancer (NEPC), in which stage the AR signaling is inactive, and therapies are limited for these lethal cases. Therefore, developing novel treatments independent of the AR signaling pathway is urgently needed. Here it is reported that L14-8, a small molecule is derived and optimized from ezetimibe, a marketed drug primarily used for intestinal cholesterol and phytosterol absorption, significantly suppresses cell growth in advanced prostate cancer by inducing ferroptosis. Mechanistically, L14-8 binds to and promotes the ubiquitin-mediated PLK1 degradation, resulting in an increase of downstream TP53 protein phosphorylation, which is further enriched at the promoter of SAT1, a well-established ferroptosis inducer, and boosting SAT1 transcription thus triggers ferroptosis-mediated cancer cell death. Importantly, in vivo studies further demonstrate a potent anti-tumor efficacy of L14-8 without obvious toxicity. Overall, this study develops a novel small molecular engineered from ezetimibe for treating lethal prostate cancer in an AR-independent manner and provides mechanistic insights into its action by triggering PLK1-TP53-SAT1 axis-mediated ferroptosis in lethal PCa models independent of the AR signaling pathway.

MeSH Terms

Male; Humans; Ferroptosis; Polo-Like Kinase 1; Prostatic Neoplasms; Proto-Oncogene Proteins; Tumor Suppressor Protein p53; Animals; Protein Serine-Threonine Kinases; Mice; Cell Cycle Proteins; Ezetimibe; Cell Line, Tumor; Signal Transduction; Mice, Nude; Xenograft Model Antitumor Assays

같은 제1저자의 인용 많은 논문 (5)