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工程化双功能智能纳米平台,集纳米酶活性和自组装于一体,用于肾癌的诊断和分类。

Engineering a Bifunctional Smart Nanoplatform Integrating Nanozyme Activity and Self-Assembly for Kidney Cancer Diagnosis and Classification.

机构信息

State Key Laboratory of Systems Medicine for Cancer, School of Biomedical Engineering and Institute of Medical Robotics, Division of Cardiology, Renji Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai 200030, P. R. China.

Shanghai Jiao Tong University Sichuan Research Institute, Chengdu 610213, P. R. China.

出版信息

ACS Nano. 2024 Aug 27;18(34):23625-23636. doi: 10.1021/acsnano.4c08085. Epub 2024 Aug 16.

Abstract

Accurate diagnosis and classification of kidney cancer are crucial for high-quality healthcare services. However, the current diagnostic platforms remain challenges in the rapid and accurate analysis of large-scale clinical biosamples. Herein, we fabricated a bifunctional smart nanoplatform based on tannic acid-modified gold nanoflowers (TA@AuNFs), integrating nanozyme catalysis for colorimetric sensing and self-assembled nanoarray-assisted LDI-MS analysis. The TA@AuNFs presented peroxidase (POD)- and glucose oxidase-like activity owing to the abundant galloyl residues on the surface of AuNFs. Combined with the colorimetric assay, the TA@AuNF-based sensing nanoplatform was used to directly detect glucose in serum for kidney tumor diagnosis. On the other hand, TA@AuNFs could self-assemble into closely packed and homogeneous two-dimensional (2D) nanoarrays at liquid-liquid interfaces by using Fe as a mediator. The self-assembled TA@AuNFs (SA-TA@AuNFs) arrays were applied to assist the LDI-MS analysis of metabolites, exhibiting high ionization efficiency and excellent MS signal reproducibility. Based on the SA-TA@AuNF array-assisted LDI-MS platform, we successfully extracted metabolic fingerprints from urine samples, achieving early-stage diagnosis of kidney tumor, subtype classification, and discrimination of benign from malignant tumors. Taken together, our developed TA@AuNF-based bifunctional smart nanoplatform showed distinguished potential in clinical disease diagnosis, point-of-care testing, and biomarker discovery.

摘要

准确的肾癌诊断和分类对于高质量的医疗保健服务至关重要。然而,当前的诊断平台在快速准确地分析大规模临床生物样本方面仍然存在挑战。在此,我们构建了一种基于单宁酸修饰的金纳米花(TA@AuNFs)的双功能智能纳米平台,集成了纳米酶催化用于比色传感和自组装纳米阵列辅助的 LDI-MS 分析。由于 AuNFs 表面存在丰富的没食子酰基,TA@AuNFs 表现出过氧化物酶(POD)和葡萄糖氧化酶样活性。结合比色测定法,TA@AuNF 基传感纳米平台用于直接检测血清中的葡萄糖,以进行肾肿瘤诊断。另一方面,TA@AuNFs 可以通过使用 Fe 作为介导物在液-液界面自组装成紧密堆积且均匀的二维(2D)纳米阵列。自组装的 TA@AuNFs(SA-TA@AuNFs)阵列用于辅助代谢物的 LDI-MS 分析,表现出高的离子化效率和优异的 MS 信号重现性。基于 SA-TA@AuNF 阵列辅助的 LDI-MS 平台,我们成功地从尿液样本中提取代谢指纹,实现了肾肿瘤的早期诊断、亚型分类以及良性和恶性肿瘤的鉴别。总之,我们开发的基于 TA@AuNF 的双功能智能纳米平台在临床疾病诊断、即时检测和生物标志物发现方面显示出了显著的潜力。

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