GelMA/HA-NB hydrogel encapsulating adipose-derived chondrogenic exosomes enhances enthesis regeneration in chronic rotator cuff tears

热情 肩袖 软骨发生 微泡 眼泪 再生(生物学) 脂肪组织 化学 细胞生物学 医学 解剖 间充质干细胞 外科 小RNA 生物 生物化学 基因 肌腱
作者
Yan Xu,Xin Shi,Haofeng Lin,Siqi Li,Zhiyuan Zhang,Fuxin Wei,Yang Chen
出处
期刊:International Journal of Biological Macromolecules [Elsevier BV]
卷期号:309 (Pt 2): 142800-142800 被引量:8
标识
DOI:10.1016/j.ijbiomac.2025.142800
摘要

Chronic rotator cuff tears (RCTs) often lead to poor surgical outcomes, requiring innovative therapies. This study explores the potential of exosomes from chondrogenic stem/progenitor cells (CSPCs), encapsulated in a GelMA/HA-NB hydrogel, to improve rotator cuff healing. Adipose-derived stem cells (ASCs) were isolated and sorted to obtain CSPCs, from which exosomes (sub-Exos) were extracted and characterized. Unsorted ASCs exosomes (un-Exos) were also isolated for comparison. The hydrogel-exosome system was evaluated for biocompatibility, chondrogenic differentiation, and sustained release in vitro and in a chronic RCT rat model. 112 rats were divided into four groups: control, hydrogel alone, un-Exos with hydrogel, and sub-Exos with hydrogel. Healing was assessed at 4 and 8 weeks using micro-CT, histology, and biomechanical testing. In vitro, sub-Exos with hydrogel demonstrated excellent biocompatibility and enhanced chondrogenic potential. In vivo, sub-Exos were retained at the injury site for up to 14 days, significantly improving histological scores, bone mineral density, bone volume/total volume, and trabecular thickness. Biomechanical tests revealed superior failure load and stiffness in the sub-Exos group. These findings demonstrate that localized delivery of GelMA/HA-NB hydrogel-encapsulated sub-Exos significantly enhances enthesis healing, offering a promising cell-free therapeutic strategy for chronic RCTs.
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