基因敲除
基因沉默
细胞生物学
变性(医学)
椎间盘
透明质酸
小干扰RNA
细胞外基质
化学
刺
转染
炎症
阿格里坎
癌症研究
医学
生物化学
病理
生物
骨关节炎
解剖
免疫学
细胞凋亡
关节软骨
基因
航空航天工程
工程类
替代医学
作者
Jiaxin Chen,Haifeng Zhu,Yutao Zhu,Chenchen Zhao,Shengyu Wang,Yixin Zheng,Ziang Xie,Jin Yang,Honghai Song,Linjun Yang,Jin Zhang,Jiayong Dai,Zhijun Hu,Huaiyu Wang
标识
DOI:10.1016/j.bioactmat.2021.08.003
摘要
Inflammatory responses of nucleus pulposus (NP) can induce imbalanced anabolism and catabolism of extracellular matrix, and the cytosolic dsDNA accumulation and STING-NF-κB pathway activation found in NP inflammation are considered as fairly important cause of intervertebral disc (IVD) degeneration. Herein, we constructed a siSTING delivery hydrogel of aldehyde hyaluronic acid (HA-CHO) and poly(amidoamine) PAMAM/siRNA complex to intervene the abnormal STING signal for IVD degeneration treatment, where the formation of dynamic Schiff base bonds in the system (siSTING@HPgel) was able to overcome the shortcomings such as low cellular uptake, short half-life, and rapid degradation of siRNA-based strategy. PAMAM not only formed complexes with siRNA to promote siRNA transfection, but also served as dynamic crosslinker to construct hydrogel, and the injectable and self-healing hydrogel efficiently and steadily silenced STING expression in NP cells. Finally, the siSTING@HPgel significantly eased IVD inflammation and slowed IVD degeneration by prolonging STING knockdown in puncture-induced IVD degeneration rat model, revealing that STING pathway was a therapeutic target for IVD degeneration and such novel hydrogel had great potential for being applied to many other diseases for gene delivery.
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