化学
光热治疗
生物标志物
适体
透皮
阶段(地层学)
皮肤癌
纳米技术
生物医学工程
脚手架
胶体金
细胞
联轴节(管道)
临床诊断
纳米颗粒
癌细胞
作者
Yan Li,Xiwen Zhang,Wenjun Liao,YJ Yan,Yiyu Wang,W.-M. Yao,Yan Zhu,Qiwen Wu,Lifeng Kang,Chunyong Wu,Jing Zhang
标识
DOI:10.1021/acs.analchem.5c08278
摘要
Early stage skin cancer exhibits a high cure rate; however, conventional noninvasive screening suffers from diagnostic inaccuracies, and treatment reliant on postlesion surgery remains inherently passivity. This work develops an all-in-one platform by coupling microneedle (MN) patches with a lateral flow immunoassay (LFIA), seamlessly integrating self-powered biomarker extraction, multimodal detection, and biomarker-responsive therapy for point-of-care testing (POCT) and personalized treatment of UV-induced early stage skin cancer. It incorporates a thermogalvanic cell (TGC) MN, which leverages photothermal-thermoelectric coupling to achieve external power-free transdermal extraction of the biomarker (8-OH-dG) within 10 min. The extracted 8-OH-dG triggers the structural change of the hairpin aptamer (HA) on the PtPB@PEG@HA (PPPA) nanoparticles (NPs), initiating a cascade amplification that generates abundant DNA nanozymes for colorimetric detection (100 pM to 60 nM). A convolutional neural network (CNN) is introduced for colorimetric quantification, coupled with artificial intelligence (AI) for disease risk assessment. Once captured in the LFIA detection zone by a capture probe, the open-loop PPPA NPs permit surface-enhanced Raman spectroscopy (SERS) detection of 8-OH-dG, enabling dual-mechanism cross-verification. Under near-infrared (NIR) irradiation, the PPPA NPs also serve as photothermal actuators to trigger the controlled release of quercetin from phase-transition MNs, effectively scavenging UV-induced oxidative stress. This innovation facilitates the home-based diagnosis and management of early stage skin cancer.
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