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Facile Synthesis of Gd-Cu-In-S/ZnS Bimodal Quantum Dots with Optimized Properties for Tumor Targeted Fluorescence/MR In Vivo Imaging

机译:简便合成具有优化特性的Gd-Cu-In-S / ZnS双峰量子点用于肿瘤靶向荧光/ MR体内成像

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Dual-modal imaging techniques have gained intense attention for their potential role in the dawning era of tumor early accurate diagnosis. Chelate-free robust dual-modal imaging nanoprobes with high efficiency and low toxicity are of essential importance for tumor targeted dual-modal in vivo imaging. It is still a crucial issue to endow Cd-free dual-modal nanoprobes with bright fluorescence as well as high relaxivity. Herein, a facile synthetic strategy was developed to prepare Gd-doped CuInS/ZnS bimodal quantum dots (GCIS/ZnS, BQDs) with optimized properties. The fluorescent properties of the GCIS/ZnS BQDs can be thoroughly optimized by varying reaction temperature, aging time, and ZnS coating. The amount of Gd precursor can be well-controlled to realize the optimized balance between the MR relaxivity and optical properties. The obtained hydrophobic GCIS/ZnS BQDs were surface engineered into aqueous phase with PEGylated dextran-stearyl acid polymeric lipid vesicles (PEG-DS PLVs). Upon the phase transfer, the hydrophilic GCIS/ZnS@PLVs exhibited pronounced near-infrared fluorescence as well as high longitudinal relaxivity (r(1)= 9.45 mM(-1) S-1) in water with good colloidal stability. In vivo tumor-bearing animal experiments further verified GCIS/ZnS@PLVs could achieve tumor-targeted MR/fluorescence dual-modal imaging. No toxicity was observed in the in vivo and ex vivo experiments. The GCIS/ZnS@PLVs present great potential as bimodal imaging contrast agents for tumor diagnosis.
机译:双模式成像技术因其在肿瘤早期准确诊断的曙光时代的潜在作用而受到广泛关注。具有高效率和低毒性的无螯合鲁棒双模态成像纳米探针对于靶向肿瘤的双模态体内成像至关重要。赋予无镉双峰纳米探针明亮的荧光以及高弛豫性仍然是一个关键问题。本文中,开发了一种简便的合成策略来制备具有优化性能的掺Gd的CuInS / ZnS双峰量子点(GCIS / ZnS,BQDs)。通过改变反应温度,老化时间和ZnS涂层,可以完全优化GCIS / ZnS BQD的荧光性质。可以很好地控制Gd前体的量,以实现MR弛豫度和光学性能之间的最佳平衡。将获得的疏水性GCIS / ZnS BQDs与PEG化的葡聚糖-硬脂酸聚合物脂质囊泡(PEG-DS PLVs)表面工程化为水相。相转移后,亲水性GCIS / ZnS @ PLVs在水中具有明显的近红外荧光以及高纵向弛豫性(r(1)= 9.45 mM(-1)S-1),具有良好的胶体稳定性。体内荷瘤动物实验进一步验证了GCIS / ZnS @ PLVs可以实现靶向肿瘤的MR /荧光双峰成像。在体内和体外实验中均未观察到毒性。 GCIS / ZnS @ PLVs作为用于肿瘤诊断的双峰成像造影剂具有巨大的潜力。

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