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PMID: 42699228 已发表 · epublish 英语

Tissue-derived extracellular matrix hydrogels instruct epigenetic adaptation in metastatic colonization.

Bioactive materials ·第 67 卷 ·2027-01-00

Yoon H, Kim D, Jeong HJ, Han H, Kim SJ, Jang J, Jung DB, Myung SJ, Yu CS, Song IH, Choi JH, Corces MR, Kwon T, Myung K, Joo J, Kang JH, Park TE, Cho SW

摘要

The extracellular matrix (ECM) plays a central role in regulating tumor progression and metastatic colonization by providing biochemical and mechanical signals that shape cancer cell fate. However, most organoid culture systems rely on basement membrane extracts that fail to reproduce the tissue-specific extracellular environments encountered during metastasis. Here, we develop tissue-derived decellularized matrix hydrogels to reconstruct organ-specific microenvironments and investigate epigenetic adaptation to ECM cues during metastatic colonization. Patient-derived colorectal cancer organoids cultured in colon-derived matrices exhibited enhanced maintenance of stem-like phenotypes and colon-specific chromatin accessibility landscapes compared with cultures grown in basement membrane extracts, demonstrating improved physiological relevance for primary tumor modeling. When exposed to matrices derived from secondary organs, the organoids showed distinct growth phenotypes accompanied by rapid, tissue-dependent chromatin accessibility remodeling, indicating that ECM composition alone can reshape regulatory programs governing metastatic adaptation. Notably, liver-derived matrices selectively activated hepatocyte nuclear factor 4 alpha (HNF4A)-associated transcriptional networks and created a context-specific dependence on c-MET signaling for survival. Functional perturbation of HNF4A or c-MET signaling confirmed that both are required for organoid formation specifically within the liver matrix environment. Together, these findings establish tissue-derived matrix hydrogels as instructive bioactive materials that actively regulate cancer cell epigenetic states and reveal microenvironment-specific therapeutic vulnerabilities during early metastatic colonization.

文献信息
期刊
Bioactive materials
期刊简称
Bioact Mater
ISSN
2452-199X
发表日期
2027-01-00
语言
英语
国家/地区
China
NLM ID
101685294
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