Extracellular matrices of living tissues exhibit viscoelastic properties, yet how these properties regulate chromatin and the epigenome remains unclear. Here, we show that viscoelastic substrates induce changes in nuclear architecture and epigenome, with more pronounced effects on softer surfaces. Fibroblasts on viscoelastic substrates display larger nuclei, lower chromatin compaction, and differential expression of distinct sets of genes related to the cytoskeleton and nuclear function, compared to those on elastic surfaces. Slow-relaxing viscoelastic substrates reduce lamin A/C expression and enhance nuclear remodeling. These structural changes are accompanied by a global increase in euchromatin marks and local increase in chromatin accessibility at cis-regulatory elements associated with neuronal and pluripotent genes. Consequently, viscoelastic substrates improve the reprogramming efficiency from fibroblasts into neurons and induced pluripotent stem cells. Collectively, our findings unravel the roles of matrix viscoelasticity in epigenetic regulation and cell reprogramming, with implications for designing smart materials for cell fate engineering.
Viscoelastic extracellular matrix enhances epigenetic remodeling and cellular plasticity.
粘弹性细胞外基质增强表观遗传重塑和细胞可塑性
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作者:Wu Yifan, Song Yang, Soto Jennifer, Hoffman Tyler, Lin Xiao, Zhang Aaron, Chen Siyu, Massad Ramzi N, Han Xiao, Qi Dongping, Yeh Kun-Wei, Fang Zhiwei, Eoh Joon, Gu Luo, Rowat Amy C, Gu Zhen, Li Song
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 Apr 30; 16(1):4054 |
| doi: | 10.1038/s41467-025-59190-7 | 研究方向: | 细胞生物学、表观遗传 |
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