纳米探针
磁共振成像
鉴别诊断
分子成像
癌症影像学
癌症研究
核磁共振
癌症
病理
化学
医学
材料科学
放射科
生物
纳米技术
体内
纳米颗粒
物理
生物技术
内科学
作者
Wenjun Yang,Chengbin Deng,Xing Shi,Yan Xu,Chenyu Dai,Hui Wang,Kexin Bian,Tianming Cui,Bingbo Zhang
出处
期刊:ACS Nano
[American Chemical Society]
日期:2023-02-09
卷期号:17 (4): 4009-4022
被引量:18
标识
DOI:10.1021/acsnano.2c12874
摘要
Enhanced imaging techniques using contrast agents enable high-resolution structural imaging to reveal space-occupying lesions but rarely provide detailed molecular information. To this end, we report a structural and molecular fusion magnetic resonance imaging (MRI) nanoprobe for differential diagnosis between benign and malignant tumors. This fusion nanoprobe, termed FFT NPs, follows a working mechanism involving a T1-/T2-weighted magnetic resonance tuning effect (MRET) between a magnetic Fe3O4 core and a paramagnetic Fe-tannic acid (Fe-TA) shell. The FFT NPs with an "always-on" inert T2 signal provide structural MRI (sMRI) contrast of tumors while affording an activated T1 signal in the presence of ATP, which is overproduced during the rapid growth of malignant tumors to enable molecular MRI (mMRI) of tumor lesions. We propose the use of the ratiometric mMRI:sMRI intensity to assist in the differential diagnosis of malignant 4T1 tumors from benign L929 fibroblast tumors. Furthermore, the dissociated FFT NPs were found to be able to catalyze H2O2 conversion in 4T1 tumors to generate excess reactive oxygen species (ROS) for chemodynamic therapy. The described fusion nanoprobe strategy enables the differential diagnosis of tumors from a combined spatial and molecular perspective with one-stop MRI imaging with potential applications in precision intervention.
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