细胞生物学
破骨细胞
化学
输送系统
生物
遗传学
药理学
体外
作者
Qingqing Wang,Xianfeng Lin,Huige Yan,Hongsen Tian,Yining Wang,Wei Yu,Zhanqiu Dai,Pengfei Chen,Zhaoming Liu,Ruikang Tang,Chao Jiang,Shunwu Fan,Xin Liu,Xianfeng Lin
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2022-07-01
卷期号:8 (26)
被引量:17
标识
DOI:10.1126/sciadv.abn3333
摘要
Redundancy of multinucleated mature osteoclasts, which results from the excessive fusion of mononucleated preosteoclasts (pOCs), leads to osteolytic diseases such as osteoporosis. Unfortunately, the currently available clinical drugs completely inhibit osteoclasts, thus interfering with normal physiological bone turnover. pOC-specific regulation may be more suitable for maintaining bone homeostasis. Here, circBBS9, a previously unidentified circular RNA, was found to exert regulatory effects via the circBBS9/miR-423-3p/Traf6 axis in pOCs. To overcome the long-standing challenge of spatiotemporal RNA delivery to cells, we constructed biomimetic nanoparticles to achieve the pOC-specific targeted delivery of circBBS9. pOC membranes (POCMs) were extracted to camouflage cationic polymer for RNA interference with circBBS9 (POCM-NPs@siRNA/shRNAcircBBS9). POCM-NPs endowed the nanocarriers with improved stability, accurate pOC targeting, fusogenic uptake, and reactive oxygen species-responsive release. In summary, our findings may provide an alternative strategy for multinucleated cell-related diseases that involves restriction of mononucleated cell multinucleation through a spatiotemporally selective delivery system.
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