School of Pharmaceutical and Chemical Engineering, Taizhou University, Jiaojiang, Zhejiang, 318000, China.
Zhijiang College of Zhejiang University of Technology, Shaoxing, Zhejiang, 312000, China.
Biosens Bioelectron. 2023 Nov 15;240:115632. doi: 10.1016/j.bios.2023.115632. Epub 2023 Aug 23.
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.
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。