医学
外体
纤维化
间充质干细胞
波形蛋白
子宫内膜
养生
不育
微泡
癌症研究
内科学
病理
生物
怀孕
小RNA
免疫组织化学
生物化学
遗传学
基因
作者
Yifeng Lin,Yaoshen Li,Panpan Chen,Yanye Zhang,Jie Sun,Xiaofeng Sun,Jiaqun Li,Jiani Jin,Jinglei Xue,Junyan Zheng,Xinyi Jiang,Chuan Chen,Xiaoqing Li,Yiqing Wu,Wei Zhao,Juan Liu,Xiaohang Ye,Runju Zhang,Gao J,Dan Zhang
标识
DOI:10.1093/stcltm/szad007
摘要
Intrauterine adhesions (IUA), which is characterized by endometrial fibrosis, continue to be the most common cause of uterine infertility globally. Our work revealed that 3 fibrotic progression markers (Vimentin, COL5A2, and COL1A1) were significantly increased in the endometrium of IUA patients. Mesenchymal stem cell-derived exosomes (EXOs) have been recently revealed as a cell-free therapy for fibrosis diseases. Nevertheless, the application of EXOs is restricted by the short residency duration in the target tissue. To overcome this limitation, herein, we reported an exosome-based regimen (EXOs-HP) that thermosensitive poloxamer hydrogel possessed the ability to efficiently promote the residency duration of EXOs in the uterine cavity. By downregulating fibrotic progression markers (Vimentin, COL5A2, and COL1A1), EXOs-HP could significantly restore the function and structure of the injured endometrium in the IUA model. Our work provides the theoretical and experimental foundation of EXOs-HP in treating IUA, highlighting the clinical potential of topical EXOs-HP delivery system in IUA patients.
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