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基于非线性杂交链式反应的 PN K 检测纳米流控传感平台及其在 DNA 逻辑电路中的应用。

Nanofluidic sensing platform for PNK assay using nonlinear hybridization chain reaction and its application in DNA logic circuit.

机构信息

School of Pharmaceutical and Chemical Engineering, Taizhou University, Jiaojiang, Zhejiang, 318000, China.

Zhijiang College of Zhejiang University of Technology, Shaoxing, Zhejiang, 312000, China.

出版信息

Biosens Bioelectron. 2023 Nov 15;240:115632. doi: 10.1016/j.bios.2023.115632. Epub 2023 Aug 23.

Abstract

In this study, a polyethyleneimine (PEI)/Zr-functionalized nanofluidic sensing platform based on nonlinear hybridization chain reaction (NHCR) was developed for PNK activity assay. With the existence of PNK, the hairpin H was cleaved by λ exonuclease, liberating the initiator T-DNA. Then T-DNA triggered the nonlinear HCR in solution and the reaction products were absorbed onto the nanopore, which changed the surface charge of nanofluidic device and could be detected by current-voltage characteristic curves. Compared to traditional linear HCR, the nonlinear HCR exhibits a higher sensitivity and order of growth kinetics, making it a powerful signal amplifier in bioanalysis. Due to the powerful amplification efficiency of nonlinear HCR, high sensitivity of the nanopore and specific recognition site of PNK/λ-Exo, an ultrasensitive and selective PNK sensing approach had been developed and applied to precisely quantitate the PNK activity with a LOD of 0.0001 U/mL. Moreover, utilizing this nanofluidic system as a foundation, we constructed a logic circuit that utilized PNK, adenosine diphosphate (ADP), and (NH)SO as input elements. ADP and (NH)SO had a crucial function in facilitating the PNK to regulate the DNA logic gate. By modifying the target and inhibitors, the nanofluidic device could detect a variety of stimuli and execute more advanced logical operations.

摘要

在这项研究中,开发了基于非线性杂交链式反应(NHCR)的聚乙烯亚胺(PEI)/Zr 功能化纳米流体传感平台,用于 PNK 活性测定。在存在 PNK 的情况下,发夹 H 被 λ 外切酶切割,释放出起始 T-DNA。然后 T-DNA 在溶液中引发非线性 HCR,反应产物被吸附到纳米孔上,这改变了纳米流体装置的表面电荷,可以通过电流-电压特性曲线检测到。与传统的线性 HCR 相比,非线性 HCR 具有更高的灵敏度和生长动力学阶数,使其成为生物分析中的强大信号放大器。由于非线性 HCR 的强大放大效率、纳米孔的高灵敏度和 PNK/λ-Exo 的特异性识别位点,开发了一种超灵敏和选择性的 PNK 传感方法,其检测 PNK 活性的检测限低至 0.0001 U/mL。此外,利用这个纳米流体系统作为基础,我们构建了一个逻辑电路,该电路利用 PNK、二磷酸腺苷(ADP)和(NH)SO 作为输入元件。ADP 和(NH)SO 在促进 PNK 调节 DNA 逻辑门方面起着关键作用。通过修饰靶标和抑制剂,纳米流体装置可以检测各种刺激并执行更高级的逻辑操作。

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