CRISPR-Cas12a驱动的MXene-PEDOT:PSS压阻式无线生物传感器

ty10086 提交于 周三, 08/25/2021 - 16:25
文章英文标题
CRISPR-Cas12a-driven MXene-PEDOT:PSS piezoresistive wireless biosensor
正文
CRISPR-Cas相关生物技术凭借其固有的高效酶切活性和鲁棒性,超越了非凡的体内精确基因编辑和调控能力,开创了体外核酸传感的新时代。然而,现有CRISPR-Cas系统大多涉及荧光记录仪或侧流条生物传感器,由于缺乏有效的信号传导和智能手机读出的无线数据传输,无法充分发掘其潜在应用(灵敏度和现场可部署性)。设计了一种基于柔性叉指电极修饰的压阻块[纸模微结构聚二甲基硅氧烷( PDMS )和MXene ( Ti3C2Tx ) - PEDOT:PSS薄膜]的CRISPR - Cas12a介导的免检仪,用于集成模块智能手机视觉读出人乳头瘤病毒( HPV )相关DNA。生物素/巯基修饰的单链DNA ( ssDNA )作为连接Au @ Pt纳米颗粒( Au @ PtNPs )和链霉亲和素包被磁珠( MB )的纽带,当导向RNA与靶HPV-DNA结合时,被Cas12a非特异性切割。释放分离的Au @ PtNPs有效地催化H2O2生成O2,并进一步将Ti3C2Tx-PEDOT:PSS / PDMS压缩在自制的3D打印耐压容器中,由于Ti3C2Tx-PEDOT:PSS / PDMS模块与叉指电极接触变形,导致整个电路电流增大。在电路中集成蓝牙设备和无线传感技术后,可对目标DNA的电流信号进行无线实时采集和记录,并进一步传输/显示到智能手机的移动终端。这种一体式检测模式不仅弥合了生物信号传导、无线传输和智能手机接口之间的技术鸿沟,而且提高了便携性和灵敏度(比传统CRISPR-Cas12a生物传感器低一个数量级以上)。我们期望,一个强大的CRISPR-Cas12a系统与压阻式传感器结合的无线传输技术将成为一个巨大的示范,并广泛应用于实时无线生物医学分析、便携式医疗点健康监测和分子诊断。
文章内容(英文)
Beyond extraordinary in vivo accurate gene editing and regulation capabilities, the CRISPR-Cas-associated biotechnology has created a new era of in vitro nucleic acid sensing due to its inherent high-efficiency enzyme cleavage activity and robustness. However, most of the existing CRISPR-Cas systems are largely involve fluorescent reporters or lateral flow strips biosensor and can't fully explore their potential applications (sensitivity and field-deployable) due to the lack of effective signal transduction and wireless data transmission with smartphone readout. Herein, a CRISPR-Cas12a-mediated instrument-free based on flexible interdigitated electrodes-modified piezoresistive block [abrasive paper-molded microstructure polydimethylsiloxane (PDMS) and MXene (Ti 3 C 2 T x )-PEDOT:PSS film] was designed for point-of-care of human papillomavirus (HPV)-related DNA with integrated-module smartphone visual readout. Biotin/thiol-modification single-stranded DNA (ssDNA), acts as a linker between Au@Pt nanoparticles (Au@PtNPs) and streptavidin-coated magnetic bead (MB), are non-specifically cleaved by Cas12a when the guide RNA binds to the target HPV-DNA. Released and separated Au@PtNPs efficiently catalyzes H 2 O 2 to O 2 , and further compress the Ti 3 C 2 T x -PEDOT:PSS/PDMS in a 3D-printed home-made pressure-tight vessel, thus causing the increasing current of the whole circuit thanks to contacting deformation of Ti 3 C 2 T x -PEDOT:PSS/PDMS module and interdigital electrode. After integrating the Bluetooth device and wireless sensing technology in the circuit, the current signal of the target DNA can be wirelessly collected and recorded in real-time and further transmitted/displayed to the mobile terminal of the smartphone. This all-in-one detection mode not only bridges the technological gap between biological signal conduction, wireless transmission, and smartphone interface but also improves the portability and the sensitivity (more than one order of magnitude lower than that of traditional CRISPR-Cas12a biosensors). We expect that a powerful CRISPR-Cas12a system coupled with piezoresistive sensor with wireless transmission technology will become a great demonstration and widely used in real-time wireless biomedical analysis, portable point-of-care health monitoring, and molecular diagnostics.
来源出处
Journal|[J]Nano EnergyVolume 82, 2021.
DOI
https://doi.org/10.1016/J.NANOEN.2020.105711

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信息更新:

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此链接为PDMS-微流控芯片/PDMS/道康宁SYLGARD184/小桶0.5KG装的链接。

一般性的产品性能参数表参考以下小桶装的参数:

微流控芯片/PDMS/道康宁SYLGARD184;微流控芯片/PDMS/道康宁SYLGARD184;微流控芯片/PDMS/道康宁SYLGARD184;

品牌型号:道康宁SYLGARD184

包装规格:0.5KG/罐[含有45.4g固化剂,总重量为0.5KG]

产品颜色:保质期限:36个月

存放环境说明:室温,阴凉处保存

备注说明:

美国道康宁道康宁SYLGARD 184硅橡胶是由液体组分组成的双组分套件产品,包括基本组分与固化剂。基本组分与固化剂按10:1重量比完全混合,中等粘度混合液的稠度与SAE 40机油相似。无论厚薄,混合液将固化成为具有韧性的透明弹性体,最适用于电子/电气方面的封装与灌封应用。 道康宁SYLGARD 184硅橡胶在25~150℃的温度范围内固化,无放热现象,无需二次固化。固化过程完成后,可立即在-55~200℃的温度范围内使用。 产品特性:低毒性,在常规的工业操作中,无特别的注意事项; 无溶剂或固化副产物, 固化时不放热;无需特殊的通风条件,不会产生腐蚀;固化时,收缩量小; 固化后, 透明具有弹性;抗震与减缓机械震动;振动的传递性能小;元件可裸视检查与易修补性; 环保性能;低吸水性,良好的耐辐射性能;高真空状态下的低漏气性; 优异的电性能;较大温度范围内的稳定性, 抗解聚;在-55~200℃范围内,甚至在密闭状态下保持弹性与柔韧性,性能稳定; 阻燃性,UL可燃性分级为94 V-1,温度等级:130℃ 产品用途: 道康宁SYLGARD 184硅橡胶在电气/电子的封装与灌封方面有广泛的应用。