可编程DNA纳米开关调节等离子体CRISPR/ cas12a金纳米报告平台,用于核酸和非核酸生物标志物分析,辅助空间限制效应

IF 9.1 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Congkai Wang, Xiaohan Xu, Wang Yao, Lei Wang, Xiaozhe Pang, Shenghao Xu* and Xiliang Luo*, 
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引用次数: 0

摘要

基于CRISPR/ cas12a系统的核酸和非核酸靶标检测面临两大挑战:(1)多种生物标志物检测需要多个crrna;(2)荧光染料的光漂白和传统单链(ssDNA)报告基因的低动力学裂解率导致灵敏度不足。为了解决这些限制,我们开发了一个可编程DNA纳米开关(NS)调控的等离子体CRISPR/ cas12a金纳米星(Au NSTs)报告平台,利用空间约束效应检测核酸和非核酸生物标志物。通过在NS中简单编程目标识别序列,只需一个crRNA即可检测核酸和非核酸生物标志物。miRNA-375的检出限降低了196倍,前列腺特异性抗原(PSA)的检出限降低了122倍。此外,还可以实现临床尿液样本中miRNA-375和PSA的多功能评估,从而很好地识别前列腺癌和健康人群。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Programmable DNA Nanoswitch-Regulated Plasmonic CRISPR/Cas12a-Gold Nanostars Reporter Platform for Nucleic Acid and Non-Nucleic Acid Biomarker Analysis Assisted by a Spatial Confinement Effect

Programmable DNA Nanoswitch-Regulated Plasmonic CRISPR/Cas12a-Gold Nanostars Reporter Platform for Nucleic Acid and Non-Nucleic Acid Biomarker Analysis Assisted by a Spatial Confinement Effect

CRISPR/Cas 12a system based nucleic acid and non-nucleic acid targets detection faces two challenges including (1) multiple crRNAs are needed for multiple biomarkers detection and (2) insufficient sensitivity resulted from photobleaching of fluorescent dyes and the low kinetic cleavage rate for a traditional single-strand (ssDNA) reporter. To address these limitations, we developed a programmable DNA nanoswitch (NS)-regulated plasmonic CRISPR/Cas12a-gold nanostars (Au NSTs) reporter platform for detection of nucleic acid and non-nucleic acid biomarkers with the assistance of the spatial confinement effect. Through simply programming the target recognition sequence in NS, only one crRNA is required to detect both nucleic acid and non-nucleic acid biomarkers. The detection limit decreased by ∼196-fold for miRNA-375 and 122-fold for prostate-specific antigen (PSA), respectively. Moreover, versatile evaluation of miRNA-375 and PSA in clinical urine samples can also be achieved, according to which prostate cancer and healthy groups can be well identified.

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来源期刊
Nano Letters
Nano Letters 工程技术-材料科学:综合
CiteScore
16.80
自引率
2.80%
发文量
1182
审稿时长
1.4 months
期刊介绍: Nano Letters serves as a dynamic platform for promptly disseminating original results in fundamental, applied, and emerging research across all facets of nanoscience and nanotechnology. A pivotal criterion for inclusion within Nano Letters is the convergence of at least two different areas or disciplines, ensuring a rich interdisciplinary scope. The journal is dedicated to fostering exploration in diverse areas, including: - Experimental and theoretical findings on physical, chemical, and biological phenomena at the nanoscale - Synthesis, characterization, and processing of organic, inorganic, polymer, and hybrid nanomaterials through physical, chemical, and biological methodologies - Modeling and simulation of synthetic, assembly, and interaction processes - Realization of integrated nanostructures and nano-engineered devices exhibiting advanced performance - Applications of nanoscale materials in living and environmental systems Nano Letters is committed to advancing and showcasing groundbreaking research that intersects various domains, fostering innovation and collaboration in the ever-evolving field of nanoscience and nanotechnology.
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