机械转化
细胞生物学
转染
生物物理学
化学
寡核苷酸
核定位序列
DNA
纳米技术
生物
材料科学
核心
生物化学
基因
作者
Huize Li,Lok Wai Cola Ho,Leo Kit Cheung Lee,Shaorui Liu,Cecilia Ka Wing Chan,Xiao Yu Tian,Chung Hang Jonathan Choi
出处
期刊:Nano Letters
[American Chemical Society]
日期:2022-04-18
卷期号:22 (8): 3400-3409
被引量:9
标识
DOI:10.1021/acs.nanolett.2c00667
摘要
DNA nanostructures are attractive gene carriers for nanomedicine applications, yet their delivery to the nucleus remains inefficient. We present the application of extracellular mechanical stimuli to activate cellular mechanotransduction for boosting the intranuclear delivery of DNA nanostructures. Treating mammalian cells with polythymidine-rich spherical nucleic acids (poly(T) SNAs) under gentle compression by a single coverslip leads to up to ∼50% nuclear accumulation without severe endosomal entrapment, cytotoxicity, or long-term membrane damage; no chemical modification or transfection reagent is needed. Gentle compression activates Rho-ROCK mechanotransduction and causes nuclear translocation of YAP. Joint compression and treatment with poly(T) oligonucleotides upregulate genes linked to myosin, actin filament, and nuclear import. In turn, Rho-ROCK, myosin, and importin mediate the nuclear entry of poly(T) SNAs. Treatment of endothelioma cells with poly(T) SNAs bearing antisense oligonucleotides under compression inhibits an intranuclear oncogene. Our data should inspire the marriage of DNA nanotechnology and cellular biomechanics for intranuclear applications.
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