Engineering a Bifunctional Smart Nanoplatform Integrating Nanozyme Activity and Self-Assembly for Kidney Cancer Diagnosis and Classification.
Dingyitai LiangShouzhi YangZiqi DingXiaoyu XuWenxuan TangYuning WangKun QianPublished in: ACS nano (2024)
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 3+ 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.
Keyphrases
- ms ms
- mass spectrometry
- healthcare
- photodynamic therapy
- multiple sclerosis
- machine learning
- early stage
- deep learning
- cancer therapy
- high throughput
- gold nanoparticles
- drug release
- hydrogen peroxide
- small molecule
- highly efficient
- adipose tissue
- type diabetes
- sensitive detection
- squamous cell
- blood pressure
- squamous cell carcinoma
- quantum dots
- radiation therapy
- insulin resistance
- weight loss
- climate change
- metal organic framework
- aqueous solution
- high density
- lymph node metastasis
- rectal cancer