透皮
生物物理学
RNA干扰
化学
甲壳素
RNA沉默
纳米技术
渗透(战争)
蜡
核糖核酸
昆虫
材料科学
纳米载体
细胞生物学
小干扰RNA
基因敲除
机制(生物学)
诱饵
微乳液
染色体易位
药物输送
表皮(毛发)
生物
脂质双层
控制释放
作者
Mei Guan,Yang Xue,Jie Pei,Meizhen Yin,Xiaorong Tao,Shuo Yan,Jie Shen
标识
DOI:10.1021/acs.jafc.6c03387
摘要
RNA interference (RNAi) provides a powerful tool for functional gene identification and pest management, and nanocarriers have recently enabled noninvasive transdermal RNAi delivery. However, the mechanism of nanocarrier-mediated double-stranded RNA (dsRNA) translocation across the insect cuticle remains unknown. We used a star cationic polymer (SPc) as a model to visualize this process and elucidate its interactions with aphid cuticle components. SPc self-assembled with dsRNA to form stable nanocomplexes via electrostatic and hydrophobic interactions. This assembly altered the wax layer morphology and increased chitin interfibrillar spacing, creating a permissive interface for dsRNA translocation. SPc also increased the contact area, reduced the contact angle, and significantly improved penetration through artificial wax/cuticle. Furthermore, SPc interacted with major cuticle components through various intermolecular forces, causing wax dissolution and reduced interfacial resistance at the chitin layer. These findings demonstrate that nanocarrier-mediated wax dissolution and chitin-layer barrier reduction facilitate dsRNA translocation across the insect cuticle, providing a theoretical foundation for transdermal delivery systems.
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