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基于具有双酶活性的新型CoB纳米片和用于读数的便携式智能手机/气压计的用于双模式肺癌ctDNA检测的纸质弹出式生物传感器。

Pop-Up Paper-Based Biosensor for a Dual-Mode Lung Cancer ctDNA Assay Based on Novel CoB Nanosheets with Dual-Enzyme Activities and a Portable Smartphone/Barometer for Readout.

作者信息

Yang Siyi, Zhu Jiajia, Yang Liyu, Fa Huanbao, Wang Yongzhong, Huo Danqun, Hou Changjun, Zhong Daidi, Yang Mei

机构信息

Key Laboratory of Biorheological Science and Technology, Ministry of Education, College of Bioengineering, Chongqing University, Chongqing 400044, PR China.

College of Chemistry and Chemical Engineering, Chongqing University, Chongqing 400044, PR China.

出版信息

ACS Sens. 2025 Jan 24;10(1):133-147. doi: 10.1021/acssensors.4c01470. Epub 2024 Dec 18.

DOI:10.1021/acssensors.4c01470
PMID:39692882
Abstract

Timely monitoring of circulating tumor DNA (ctDNA) in serum is meaningful for personalized diagnosis and treatment for lung cancer. Cheap and efficient point-of-care testing (POCT) has emerged as a promising method, especially in a low-resource setting. Herein, (i) a 3D pop-up paper-based POCT device was designed and manufactured via a cheap method; it was used for saving time and efficiently building a biosensor; (ii) a novel cobalt boride nanosheet (CoB NS) nanozyme with abundant groups was used for POCT dual-mode signal transduction and then a portable smartphone/pressure meter to readout; (iii) a user-friendly smartphone app was fabricated for achieving more convenient POCT. Detailly, the dual-mode signal generated was based on the CoB NS with peroxidase activity to catalyze a chromogenic agent to develop color and with catalase activity to catalyze decomposition of HO to O. Density functional theory (DFT) and experimental results showed a good catalysis performance of the CoB NS via studying its five possible catalytic pathways, in which the metal Co is the catalytic active site center that acts as the electron donor and promotes electron transfer between the CoB NS and the adsorbed substrates. Benefiting from that, the proposed method showed good analytical ability in detecting ctDNA. Besides, its accuracy was valued by comparing it with the standard qPCR method to detect real samples from tumor cells and tumor-bearing mice, which showed a consistent result and potential practical applicability of the proposed method for POCT ctDNA. In general, this work not only provided a dual-mode POCT platform that could also be applied for other analytes but also first revealed the nanozyme properties of the CoB NS and inspired its new application from electrocatalysis, energy, etc. to biomedicine.

摘要

及时监测血清中的循环肿瘤DNA(ctDNA)对肺癌的个性化诊断和治疗具有重要意义。廉价且高效的即时检测(POCT)已成为一种有前景的方法,尤其是在资源匮乏的环境中。在此,(i)通过一种廉价方法设计并制造了一种基于三维弹出式纸的POCT装置;它用于节省时间并高效构建生物传感器;(ii)一种具有丰富基团的新型硼化钴纳米片(CoB NS)纳米酶用于POCT双模式信号转导,然后使用便携式智能手机/压力计进行读数;(iii)制作了一个用户友好的智能手机应用程序,以实现更便捷的POCT。具体而言,产生的双模式信号基于具有过氧化物酶活性的CoB NS催化显色剂显色以及具有过氧化氢酶活性催化HO分解为O。密度泛函理论(DFT)和实验结果通过研究其五种可能的催化途径表明CoB NS具有良好的催化性能,其中金属Co是催化活性位点中心,作为电子供体促进CoB NS与吸附底物之间的电子转移。受益于此,所提出的方法在检测ctDNA方面显示出良好的分析能力。此外,通过与标准qPCR方法比较检测来自肿瘤细胞和荷瘤小鼠的真实样本评估了其准确性,结果显示所提出的POCT ctDNA方法具有一致的结果和潜在的实际适用性。总体而言,这项工作不仅提供了一个可用于其他分析物的双模式POCT平台,还首次揭示了CoB NS的纳米酶特性,并激发了其从电催化、能源等领域到生物医学的新应用。

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