靶向细胞外囊泡的氮化钛元生物传感器用于高灵敏度前列腺癌检测

IF 10.5 1区 生物学 Q1 BIOPHYSICS
Fajun Li , Yuanyuan Jiang , Xuegang Wang , Yuan Gao , Ching Shu Lo , Shengdong Su , Zhilin Wu , Bingliang Jiang , Zhongjie Zhao , Shaowei Lin , Yinong Xie , Junjie Chen , Qiwei Guo , Zhaogang Dong , Jinfeng Zhu
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引用次数: 0

摘要

具有高生物传感性能的一次性等离子体超表面是临床无标签检测的迫切需要。低成本的铝(Al)和氮化钛(TiN)为构建这些超表面提供了有希望的贵金属替代品。然而,Al具有有限的化学稳定性,而TiN表现出较弱的等离子体效应,这两者都阻碍了它们在元生物传感中的应用。在此,我们整合了它们的互补优势,提出了TiN/Al元生物传感器。它们不仅为TiN/Al混合等离子体模式的传感提供了独特的近场增强,而且还在生物检测过程中构建了坚固的TiN装甲,以抵抗外部磨损、热、湿和腐蚀。与传统的金基传感器相比,我们的元生物传感器以更低的成本和更少的预处理步骤提供了卓越的光学灵敏度。优异的生物传感性能促进了血清小细胞外囊泡(sev)高通量检测系统的发展,有助于前列腺癌的诊断和随访。sev元生物传感技术在显著区分早期癌症方面的诊断灵敏度为100%,突破了传统检测的限制。此外,它使手术后癌症复发风险的预测准确性提高了一倍。我们的研究强调了大规模开发基于非贵金属材料的强大元生物传感器的潜力,为癌症诊断和预后开辟了重要的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Titanium nitride meta-biosensors targeting extracellular vesicles for high-sensitivity prostate cancer detection
Disposable plasmonic metasurfaces with high biosensing performance are urgently sought for clinical label-free detection. Low-cost aluminum (Al) and titanium nitride (TiN) offer promising alternatives to noble metals for constructing these metasurfaces. However, Al suffers from limited chemical stability, and TiN exhibits weak plasmonic effects, both of which hinder their application in meta-biosensing. Here we integrate their complementary advantages and propose the TiN/Al meta-biosensors. They not only empower the unique near-field enhancement for sensing by TiN/Al hybrid plasmonic modes, but also construct a robust TiN armor against external wear, heat, moisture and corrosion during the bio-detection process. Compared to traditional gold-based counterparts, our meta-biosensors offer superior optical sensitivity at a much lower cost and with fewer pretreatment steps. The excellent biosensing performance facilitates the development of a high-throughput detection system for serum small extracellular vesicles (sEVs), aiding in the diagnosis and follow-up of prostate cancer. The sEVs meta-biosensing demonstrates a diagnostic sensitivity of 100% for significantly distinguishing early cancer, breaking through the conventional testing limitation. Moreover, it doubles the prediction accuracy of cancer recurrence risk following surgery. Our research highlights the potential for large-scale development of powerful meta-biosensors based on non-noble materials, opening up significant opportunities in cancer diagnosis and prognosis.
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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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