基于激光组装的导电三维纳米酶薄膜硝酸纤维素传感器,用于实时检测癌细胞释放的 H2O2。

IF 10.7 1区 生物学 Q1 BIOPHYSICS Biosensors and Bioelectronics Pub Date : 2024-06-29 DOI:10.1016/j.bios.2024.116544
Qurat U.A. Bukhari , Flavio Della Pelle , Ruslan Alvarez-Diduk , Annalisa Scroccarello , Carme Nogués , Oriol Careta , Dario Compagnone , Arben Merkoci
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引用次数: 0

摘要

在这项工作中,通过激光组装技术直接制作出了具有纳米酶特征的纳米结构导电薄膜,并将其集成到完整的硝酸纤维素传感器中;纤维素基底可承载活细胞,而纳米结构薄膜的纳米酶活性则可确保在无酶的情况下实时检测活细胞释放的过氧化氢(H2O2)。具体来说,利用二氧化碳激光绘图仪,通过同时还原氧化石墨烯和铂阳离子并将其图案化,制备出了以裸铂纳米立方体为装饰的高度剥离还原氧化石墨烯三维薄膜;将纳米结构薄膜集成到硝酸纤维素基底中,并采用经济实惠的半自动打印方法制造出了完整的传感器。直接测定 H2O2 的线性范围为 0.5-80 μM(R2 = 0.9943),检测限为 0.2 μM。活细胞测量是通过将传感器置于培养液中,确保其粘附在传感器表面来实现的;两种细胞系分别用作非致瘤性(Vero 细胞)和致瘤性(SKBR3 细胞)模型。硝酸纤维素传感器可现场实时定量检测细胞释放的 H2O2,灵敏度高,选择性强,可用于区分致瘤细胞。所提出的策略允许使用简单的台式仪器低成本、系列化、半自动化地生产基于纸张的护理点设备,为方便、经济地监测癌细胞的细胞病理学状态铺平了道路。
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Laser-assembled conductive 3D nanozyme film-based nitrocellulose sensor for real-time detection of H2O2 released from cancer cells

In this work, a nanostructured conductive film possessing nanozyme features was straightforwardly produced via laser-assembling and integrated into complete nitrocellulose sensors; the cellulosic substrate allows to host live cells, while the nanostructured film nanozyme activity ensures the enzyme-free real-time detection of hydrogen peroxide (H2O2) released by the sames. In detail, a highly exfoliated reduced graphene oxide 3D film decorated with naked platinum nanocubes was produced using a CO2-laser plotter via the simultaneous reduction and patterning of graphene oxide and platinum cations; the nanostructured film was integrated into a nitrocellulose substrate and the complete sensor was manufactured using an affordable semi-automatic printing approach. The linear range for the direct H2O2 determination was 0.5–80 μM (R2 = 0.9943), with a limit of detection of 0.2 μM. Live cell measurements were achieved by placing the sensor in the culture medium, ensuring their adhesion on the sensors' surface; two cell lines were used as non-tumorigenic (Vero cells) and tumorigenic (SKBR3 cells) models, respectively. Real-time detection of H2O2 released by cells upon stimulation with phorbol ester was carried out; the nitrocellulose sensor returned on-site and real-time quantitative information on the H2O2 released proving useful sensitivity and selectivity, allowing to distinguish tumorigenic cells. The proposed strategy allows low-cost in-series semi-automatic production of paper-based point-of-care devices using simple benchtop instrumentation, paving the way for the easy and affordable monitoring of the cytopathology state of cancer cells.

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来源期刊
Biosensors and Bioelectronics
Biosensors and Bioelectronics 工程技术-电化学
CiteScore
20.80
自引率
7.10%
发文量
1006
审稿时长
29 days
期刊介绍: Biosensors & Bioelectronics, along with its open access companion journal Biosensors & Bioelectronics: X, is the leading international publication in the field of biosensors and bioelectronics. It covers research, design, development, and application of biosensors, which are analytical devices incorporating biological materials with physicochemical transducers. These devices, including sensors, DNA chips, electronic noses, and lab-on-a-chip, produce digital signals proportional to specific analytes. Examples include immunosensors and enzyme-based biosensors, applied in various fields such as medicine, environmental monitoring, and food industry. The journal also focuses on molecular and supramolecular structures for enhancing device performance.
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