细胞生物学
再生(生物学)
神经突
胞外囊泡
再生医学
细胞外基质
间充质干细胞
角膜
生物
小RNA
神经损伤
干细胞
神经营养因子
组织工程
微泡
神经营养素
三叉神经节
神经科学
体外
外体
伤口愈合
白癜风
骨髓
细胞外
神经系统
神经组织工程
化学
免疫学
视神经
雪旺细胞
病理
睫状神经营养因子
神经退行性变
作者
Hamed Massoumi,Eitan Katz,Melinda Alviar,Qiang Zhou,Mauricio Gonzalez Oyarzun,Deepshikha Tewari,Makayla Dove,Hanieh Niktinat,Tara Nguyen,Seyed Mahbod Baharnoori,Khandaker N. Anwar,Mark Cline,Yuanxiang Li,Xiaowei Wang,Victor H. Guaiquil,Mark I. Rosenblatt,Ali R. Djalilian,Elmira Jalilian
出处
期刊:Small
[Wiley]
日期:2025-12-03
卷期号:22 (6): e07451-e07451
被引量:2
标识
DOI:10.1002/smll.202507451
摘要
Extracellular vesicles (EVs) are emerging as critical mediators of intercellular communication and tissue repair, offering a promising cell-free platform for regenerative therapies. In the cornea, sensory nerves are critical for maintaining epithelial integrity and ocular homeostasis. Nerve injury resulting from trauma, surgery, or disease leads to persistent epithelial defects and impaired vision, with limited treatment options. Here, the neuro-regenerative potential of mesenchymal stem cell-derived EVs (MSC-EVs) isolated from human cornea (Co-MSC) and bone marrow (BM-MSC) cultured under 2D and 3D conditions is investigated. EVs are characterized by nanoparticle tracking analysis, ExoView profiling, and Western blot, and their effects on nerve regeneration are evaluated using primary trigeminal ganglion neurons in vitro and a murine corneal injury model in vivo. EVs from both tissue sources promoted neurite outgrowth; however, 3D-derived EVs demonstrate superior efficacy compared to 2D-derived EVs in vitro and in vivo. Co-MSC-EVs show a consistent trend toward enhanced regenerative effects over BM-MSC-EVs. Small RNA sequencing reveals that EV cargo is influenced by both tissue origin and culture dimensionality, with Co-MSC-EVs enriched in miRNAs regulating the extracellular matrix and immune pathways, while BM-MSC-EVs are enriched in neurotrophic signaling miRNAs. These findings support the rational design of MSC-EV-based therapies for neuro-ophthalmic repair.
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