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PMID: 41750310 已发表 · epublish 英语

Induced Tumor-Suppressing (iTS) Cell-Based Approach for Protecting the Bone from Advanced Prostate Cancer.

Biomolecules ·第 16 卷 ·第 2 期 ·2026-02-03

Liu S, Wu D, Minami K, Liu J, Na S, Aryal UK, Figueiredo ML, Robling AG, Li BY, Yokota H

摘要

Advanced prostate cancer frequently metastasizes to bone, but no effective therapy exists. To seek a novel treatment option and identify a new drug target, we took an induced tumor-suppressing (iTS) cell-based approach and produced tumor-suppressing proteins and conditioned medium (CM). Notably, the overexpression of Lrp5 and β-catenin, as well as the pharmacological Wnt activator, converted osteocytes, Murine mesenchymal stem cells, mononuclear cells, and monocytes into iTS cells. While Lrp5 conditional knockout mice presented severe bone loss, Lrp5-overexpressing osteocyte-derived CM rescued tumor-induced bone damage. Whole-genome proteomics analysis revealed that Moesin (MSN), which acted as an oncogene in tumor cells, was enriched in CM as an extracellular tumor-suppressing protein. Its anti-tumor action was mediated primarily by the interaction with CD44. Consistently, FRET live-cell imaging demonstrated that extracellular MSN reduced Src tyrosine kinase activity and nuclear localization of β-catenin. Collectively, we demonstrated herein the iTS cell-based approach to protect bone from prostate cancer and showed MSN as a potent extracellular tumor-suppressing protein.

关键词
CD44 Lrp5 MSC Moesin bone iTS cells osteocytes prostate cancer
文献信息
期刊
Biomolecules
期刊简称
Biomolecules
ISSN
2218-273X
发表日期
2026-02-03
语言
英语
国家/地区
Switzerland
NLM ID
101596414
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