纳米载体
遗传增强
基因传递
材料科学
静电纺丝
生物医学工程
粘附
纳米技术
生物物理学
药物输送
细胞生物学
化学
基因
医学
聚合物
生物
生物化学
复合材料
作者
Jingwen Liu,Liang Chen,Zhenyu Sun,Zaijin Tao,Volotovski Pavel,Yu‐Sheng Li,Fei Wang,Wenguo Cui,Shen Liu
标识
DOI:10.1016/j.bioactmat.2024.03.008
摘要
Gene therapy is capable of efficiently regulating the expression of abnormal genes in diseased tissues and expected to be a therapeutic option for refractory diseases. However, unidirectional targeting gene therapy is always desired at the tissue interface. In this study, inspired by the principle that like charges repulse each other, a positively charged micro-nano electrospun fibrous membrane with dual-layer structure was developed by electrospinning technology to achieve unidirectional delivery of siRNA-loaded cationic nanocarriers, thus realizing unidirectional gene therapy at the tendon-paratenon interface. Under the charge repulsion of positively charged layer, more cationic COX-2 siRNA nanocarriers were enriched in peritendinous tissue, which not only improved the bioavailability of the gene drug to prevent the peritendinous adhesion formation, but also avoided adverse effects on the fragile endogenous healing of tendon itself. In summary, this study provides an innovative strategy for unidirectional targeting gene therapy of tissue interface diseases by utilizing charge repulsion to facilitate unidirectional delivery of gene drugs.
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