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原位 PLL-g-PEG 功能化纳米孔用于增强蛋白质表征。

In-situ PLL-g-PEG Functionalized Nanopore for Enhancing Protein Characterization.

机构信息

Department Of Physics And Astronomy, University of Bologna, Bologna, Italy.

Elements srl, Cesena, Italy.

出版信息

Chem Asian J. 2023 Sep 1;18(17):e202300515. doi: 10.1002/asia.202300515. Epub 2023 Jul 27.

Abstract

Single-molecule nanopore detection technology has revolutionized proteomics research by enabling highly sensitive and label-free detection of individual proteins. Herein, we designed a small, portable, and leak-free flowcell made of PMMA for nanopore experiments. In addition, we developed an in situ functionalizing PLL-g-PEG approach to produce non-sticky nanopores for measuring the volume of diseases-relevant biomarker, such as the Alpha-1 antitrypsin (AAT) protein. The in situ functionalization method allows continuous monitoring, ensuring adequate functionalization, which can be directly used for translocation experiments. The functionalized nanopores exhibit improved characteristics, including an increased nanopore lifetime and enhanced translocation events of the AAT proteins. Furthermore, we demonstrated the reduction in the translocation event's dwell time, along with an increase in current blockade amplitudes and translocation numbers under different voltage stimuli. The study also successfully measures the single AAT protein volume (253 nm ), which closely aligns with the previously reported hydrodynamic volume. The real-time in situ PLL-g-PEG functionalizing method and the developed nanopore flowcell hold great promise for various nanopores applications involving non-sticky single-molecule characterization.

摘要

单分子纳米孔检测技术通过对单个蛋白质进行高灵敏度、无标记检测,彻底改变了蛋白质组学研究。本文设计了一种由 PMMA 制成的小型、便携且无泄漏的纳米孔流池。此外,我们还开发了一种原位功能化 PLL-g-PEG 方法,以产生非粘性纳米孔,用于测量与疾病相关的生物标志物(如α-1 抗胰蛋白酶(AAT)蛋白)的体积。原位功能化方法可实现连续监测,确保充分的功能化,可直接用于易位实验。功能化纳米孔表现出改善的特性,包括纳米孔寿命增加和 AAT 蛋白的易位事件增强。此外,我们证明了在不同电压刺激下,易位事件的停留时间减少,电流阻断幅度和易位数量增加。该研究还成功测量了单个 AAT 蛋白的体积(253nm),与先前报道的流体力学体积非常吻合。实时原位 PLL-g-PEG 功能化方法和开发的纳米孔流池在涉及非粘性单分子特性的各种纳米孔应用中具有广阔的应用前景。

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