重编程
细胞生物学
干细胞
免疫系统
化学
间充质干细胞
双金属
细胞分化
细胞
干细胞疗法
生物
骨髓
活性氧
细胞疗法
转分化
作者
Jinzheng Liu,Ziyan Yu,Zhe Hao,Fanghua Zhang,Huan Guo,Xiyan Li,Ruizhong Zhang,Libing Zhang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2026-03-19
卷期号:26 (12): 4061-4070
标识
DOI:10.1021/acs.nanolett.5c05320
摘要
Reprogramming the immune microenvironment is intricately associated with the regulation of stem cell behavior and tissue regeneration. However, precise control remains difficult due to complex immune-matrix interactions and limited multifunctional platforms. Herein, we report a polyphenol-engineered bimetallic oxide nanoplatform (MnCo 3 O x -TA) that enables coordinated immune modulation to direct stem cell differentiation. Mn doping and TA functionalization endow MnCo 3 O x -TA with an enhanced capacity to efficiently scavenge reactive oxygen and nitrogen species (ROS/RNS), thereby restoring the osteogenic potential of bone marrow mesenchymal stem cells (BMSCs) under inflammatory stress. It also reduces oxidative damage in inflamed tissues and shifts macrophages from pro-inflammatory (M1) to pro-regenerative (M2) phenotypes, reprogramming the immune microenvironment. Coculture experiments confirm that this immunoregulatory effect boosts osteogenic gene expression and differentiation. These results demonstrate that MnCo 3 O x -TA is a multifunctional antioxidant nanoplatform combining ROS/RNS scavenging with immune remodeling, offering a promising approach for immune-guided stem cell differentiation and tissue regeneration.
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