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长度小于20纳米的偶氮聚甲基丙烯酸纳米孔用于核酸和蛋白质的单分子分辨率分析。

Azo-PMA nanopores of sub-20 nm length for unimolecular resolution of nucleic acids and proteins.

作者信息

Qi Guodong, Chen Xun, Liu Daixin, Ren Meili, Tian Rong, Liang Liyuan

机构信息

Chongqing Institute of Green and Intelligent Technology, Chinese Academy of Sciences & Chongqing School, University of Chinese Academy of Science, Chongqing, 400714, PR China; School of Chemical Engineering, Northeast Electric Power University, Jilin, 132012, PR China.

Chongqing Institute of Green and Intelligent Technology, Chinese Academy of Sciences & Chongqing School, University of Chinese Academy of Science, Chongqing, 400714, PR China.

出版信息

Talanta. 2025 Apr 1;285:127402. doi: 10.1016/j.talanta.2024.127402. Epub 2024 Dec 16.

Abstract

Owing to the facile fabrication and surface modification, the cost-effective polymer nanopores are widely employed in unimolecular determination of biomacromolecules and selective sensing of small molecules, nanoparticles and biomarkers. However, the documented polymer nanochannels are generally microscale in length with low spatial resolution. We herein synthesized azobenzene side-chain polymer (Azo-PMA) and spin-coated on silicon nitride membrane to obtain a polymer film of nanoscale thickness for further nanopore generation via controlled dielectric breakdown (CDB) approach. The Azo-PMA nanopores demonstrate good ions transporting activities, pH tolerance and stability in high concentration of electrolyte with low ionic current noise. In addition, the azobenzene-containing polymer nanopores exhibit photo-response upon UV/Vis. light irradiation. The Azo-PMA nanopore devices are utilized for linear and quadruple nucleic acids discrimination, sensing of proteins with distinct shapes and sizes, as well as the single amino acid resolution with good capture rate and sensitivity. We established an unimolecular sensing platform using polymer nanopores for nucleic acids and proteins detection with good spatial resolution, which will be an addition for the nanopore-carrier material exploration and applications in potential genomics and proteomics with high spatiotemporal resolution and low cost.

摘要

由于制备简便且易于表面修饰,具有成本效益的聚合物纳米孔被广泛应用于生物大分子的单分子测定以及小分子、纳米颗粒和生物标志物的选择性传感。然而,已报道的聚合物纳米通道长度一般为微米级,空间分辨率较低。我们在此合成了偶氮苯侧链聚合物(Azo-PMA),并旋涂在氮化硅膜上,以获得纳米级厚度的聚合物薄膜,进而通过控制介电击穿(CDB)方法生成纳米孔。Azo-PMA纳米孔在高浓度电解质中表现出良好的离子传输活性、pH耐受性和稳定性,且离子电流噪声低。此外,含偶氮苯的聚合物纳米孔在紫外/可见光照射下呈现光响应。Azo-PMA纳米孔器件用于线性和四重核酸鉴别、不同形状和大小蛋白质的传感,以及具有良好捕获率和灵敏度的单氨基酸分辨率测定。我们建立了一个使用聚合物纳米孔进行核酸和蛋白质检测的单分子传感平台,具有良好的空间分辨率,这将为纳米孔载体材料的探索以及在具有高时空分辨率和低成本的潜在基因组学和蛋白质组学中的应用增添助力。

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