School of Medical Imaging , Tianjin Medical University , Tianjin 300203 , China.
ACS Appl Mater Interfaces. 2018 Oct 10;10(40):34060-34067. doi: 10.1021/acsami.8b14554. Epub 2018 Sep 27.
Multimodal imaging is more suitable for disease diagnosis because of its ability to provide more complementary and accurate information over single-mode imaging. Mn-doped quantum dots (QDs), especially Mn-doped ZnS (ZnSe) QDs, possess unique fluorescent and magnetic properties and are thus attractive for fluorescence/magnetic resonance imaging (MRI) dual-mode imaging. However, the optimal dopant (Mn) concentration for maximizing the fluorescence of QDs is relatively low for the MRI imaging. Herein, based on the large Stokes shift of Mn-doped ZnSe QDs, an enrichment strategy with mesoporous silica (MSN) loading was explored for constructing a highly luminescent/paramagnetism Mn-doped ZnSe QDs assembly (MSN@QDs) for improved MRI/optical dual-model imaging. After assembly, the loading density of QDs in MSNs was estimated to be 152 ± 12. Upon loading, the fluorescence of the MSN@QDs assembly was enriched along with QDs (enrichment factor of ∼143). Because of the large Stokes shift (∼200 nm), no appreciable concentration quenching was observed. Meanwhile, the T MR contrast was also increased both in vitro and in vivo through improved local Mn concentration, realizing MRI signal enrichment. In fluorescence imaging investigations, MSN@QDs showed better performance over both single QDs and equivalent numbers of MSN-free single QD. Therefore, this enrichment strategy allowed simultaneous signal enhancement of the two imaging modes of Mn-doped ZnSe QDs.
多模态成像是一种更适合疾病诊断的方法,因为它能够提供比单模态成像更丰富、更准确的信息。锰掺杂量子点(QDs),尤其是锰掺杂的 ZnS(ZnSe)QDs,具有独特的荧光和磁学性质,因此在荧光/磁共振成像(MRI)双模态成像中具有吸引力。然而,对于 MRI 成像来说,使 QDs 荧光最大化的最佳掺杂剂(Mn)浓度相对较低。在此,基于 Mn 掺杂的 ZnSe QDs 的大斯托克斯位移,我们探索了一种基于介孔硅(MSN)负载的富集策略,用于构建具有高发光/顺磁性的 Mn 掺杂 ZnSe QDs 组装体(MSN@QDs),以改善 MRI/光学双模式成像。组装后,MSNs 中 QDs 的负载密度估计为 152±12。负载后,MSN@QDs 组装体的荧光与 QDs 一起被富集(富集因子约为 143)。由于大的斯托克斯位移(~200nm),没有观察到明显的浓度猝灭。同时,通过提高局部 Mn 浓度,在体外和体内都增加了 T 1 MR 对比,实现了 MRI 信号的富集。在荧光成像研究中,MSN@QDs 表现出比单个 QDs 和等量无 MSN 单个 QDs 更好的性能。因此,这种富集策略允许同时增强 Mn 掺杂 ZnSe QDs 的两种成像模式的信号。