作为诊断传感器的贝塔管纳米孔:工程学视角

Biosensors Pub Date : 2024-07-16 DOI:10.3390/bios14070345
Rani Wiswedel, Anh Thi Ngoc Bui, Jinhyung Kim, Mi-Kyung Lee
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引用次数: 0

摘要

生物纳米孔是超灵敏和极具吸引力的疾病诊断平台,包括病毒和微生物基因测序以及生物标记物和病原体检测。为了将生物纳米孔用作诊断传感器,人们通过各种方法对其进行了改造,从而实现了对生物标记物和疾病相关生物分子的精确、高灵敏度检测。在各种生物纳米孔中,含β管的纳米孔在纳米孔工程中具有优势,因为其结构坚固,非常适合改性。在这篇综述中,我们重点介绍了用于单分子传感的含β管纳米孔的工程方法,这些方法可应用于早期诊断和预后。在重点研究中,β 管纳米孔可以通过基因突变来改变结构;改变电荷分布;或添加酶、适配体和蛋白质探针,以提高灵敏度和准确性。此外,本综述还讨论了推进基于纳米孔的诊断传感器所面临的挑战和未来展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Beta-Barrel Nanopores as Diagnostic Sensors: An Engineering Perspective
Biological nanopores are ultrasensitive and highly attractive platforms for disease diagnostics, including the sequencing of viral and microbial genes and the detection of biomarkers and pathogens. To utilize biological nanopores as diagnostic sensors, they have been engineered through various methods resulting in the accurate and highly sensitive detection of biomarkers and disease-related biomolecules. Among diverse biological nanopores, the β-barrel-containing nanopores have advantages in nanopore engineering because of their robust structure, making them well-suited for modifications. In this review, we highlight the engineering approaches for β-barrel-containing nanopores used in single-molecule sensing for applications in early diagnosis and prognosis. In the highlighted studies, β-barrel nanopores can be modified by genetic mutation to change the structure; alter charge distributions; or add enzymes, aptamers, and protein probes to enhance sensitivity and accuracy. Furthermore, this review discusses challenges and future perspectives for advancing nanopore-based diagnostic sensors.
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