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利用密度泛函理论分析在功能化碳纳米带上高效检测胃癌生物标志物

Efficient detection of gastric cancer biomarkers on functionalized carbon nanoribbons using DFT analysis.

作者信息

Alghoul Ibrahim, Hussain Tanveer, Nazir Shahid, Tit Nacir

机构信息

Department of Physics, College of Science, UAE University, P.O. Box 15551, Al-Ain, United Arab Emirates.

National Water and Energy Center, UAE University, P.O. Box 15551, Al-Ain, United Arab Emirates.

出版信息

Sci Rep. 2025 Apr 16;15(1):13173. doi: 10.1038/s41598-025-97518-x.

Abstract

Early diagnosis of gastric cancer (GC) is crucially important to initiate a therapy plan aiming at rescue and cure. In this regard, the detection of volatile organic compounds (VOCs), related to GC in the patient's exhaled breath, is known to be an efficient and cost-effective technique for early diagnosis. The scope of the present study is to develop a nano-biosensor with great sensitivity and suitable selectivity towards specific VOCs related to GC, such as 2-pentanone, butanone, isoprene, methylglyoxal, N-decanal, N-pentanal, and pyridine. We employed van der Waals corrected density functional theory (DFT) to study the adsorption properties of the mentioned VOCs along with interfering air molecules (N, O, HO, CO) using recently synthesized carbon nanoribbons (CNRs). We found that pristine CNRs weakly adsorbed the VOCs with adsorption energies ([Formula: see text]), which is not suitable for practical sensing applications. However, the incorporation of selected transition metals (Co, Fe, Mn, Ni) in nitrogen-functionalized CNRs (N-CNRs) enhanced the [Formula: see text] values to -0.802, -0.899, -1.566, -1.260, -1.482, -1.057, and - 0.674 eV for 2-pentanone, butanone, isoprene, methylglyoxal, N-decanal, N-pentanal, and pyridine, respectively. Appropriate [Formula: see text] values along with distinct variations in the electronic and magnetic properties, measured through band structures, density of states, work function and charge transfer analysis, validated the potential of TM-doped N-CNRs as efficient biosensors towards GC-related VOCs. Consequently, the TM-doped N-CNRs are proposed as candidates for platforms of nano biosensors to detect GC biomarkers with high selectivity.

摘要

胃癌(GC)的早期诊断对于启动旨在挽救和治愈的治疗计划至关重要。在这方面,检测患者呼出气体中与胃癌相关的挥发性有机化合物(VOCs)是一种高效且经济有效的早期诊断技术。本研究的范围是开发一种对与胃癌相关的特定挥发性有机化合物,如2-戊酮、丁酮、异戊二烯、甲基乙二醛、正癸醛、正戊醛和吡啶具有高灵敏度和适当选择性的纳米生物传感器。我们采用范德华修正密度泛函理论(DFT),使用最近合成的碳纳米带(CNRs)研究上述挥发性有机化合物以及干扰空气分子(N、O、HO、CO)的吸附特性。我们发现原始的碳纳米带对挥发性有机化合物的吸附较弱,吸附能([公式:见原文]),这不适合实际传感应用。然而,在氮功能化碳纳米带(N-CNRs)中掺入选定的过渡金属(Co、Fe、Mn、Ni),使2-戊酮、丁酮、异戊二烯、甲基乙二醛、正癸醛、正戊醛和吡啶的[公式:见原文]值分别提高到-0.802、-0.899、-1.566、-1.260、-1.482、-1.057和-0.674 eV。通过能带结构、态密度、功函数和电荷转移分析测量得到的适当[公式:见原文]值以及电子和磁性特性的明显变化,验证了过渡金属掺杂的氮功能化碳纳米带作为检测与胃癌相关挥发性有机化合物的高效生物传感器的潜力。因此,过渡金属掺杂的氮功能化碳纳米带被提议作为具有高选择性检测胃癌生物标志物的纳米生物传感器平台的候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d607/12003821/9d9de4e97be1/41598_2025_97518_Fig1_HTML.jpg

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