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祝贺赵丹、肖含章同学ACS Applied Bio Materials文章上线
High-Performance T1T2 Dual-Modal MRI Contrast Agents through Interface Engineering
Dan Zhao, Shibo Peng, Hanzhang Xiao, Qilong Li, Yahong Chai, Hongxia Sun, Ruping Liu, Li Yao, and Lin Ma
   
    Iron oxide nanoparticles (IONPs) have been developed as contrast agents for T1- or T2-weighted magnetic resonance imaging (MRI) on account of their excellent physicochemical and biological properties. However, general strategies to improve longitudinal relaxivity (r1) often decrease transverse relaxivity (r2), thus synchronously strengthening the Tand Tenhancement effect of IONPs remains a challenge. Here, we report interface regulation and size tailoring of a group of FePt@Fe3Ocoreshell nanoparticles (NPs), which possess high rand rrelaxivities. The increase of rand ris due to the enhancement of the saturation magnetization (Ms), which is a result of the strengthened exchange coupling across the coreshell interface. In vivo subcutaneous tumor study and brain glioma imaging revealed that FePt@Fe3ONPs can serve as a favorable T1Tdual-modal contrast agent. We envision that the coreshell NPs, through interface engineering, have great potential in preclinical and clinical MRI applications.