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含氧和含氮基团在石墨烯量子点中的协同效应:具有高弛豫率的红光发射双模式磁共振成像对比剂。

Synergistic Effect of Oxygen- and Nitrogen-Containing Groups in Graphene Quantum Dots: Red Emitted Dual-Mode Magnetic Resonance Imaging Contrast Agents with High Relaxivity.

机构信息

State Key Laboratory of Functional Materials of Informatics, Shanghai Institute of Microsystem and Information Technology (SIMIT), Chinese Academy of Sciences (CAS), Shanghai 200050, P. R. China.

CAS Center for ExcelleNce in Superconducting Electronics (CENSE), CAS, Shanghai 200050, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2022 Sep 7;14(35):39885-39895. doi: 10.1021/acsami.2c12719. Epub 2022 Aug 29.

DOI:10.1021/acsami.2c12719
PMID:36031928
Abstract

Contrast agents (CAs) in magnetic resonance imaging generally involve the dissociative Gd. Because of the limited ligancy of Gd, the balance between Gd coordination stability (reducing the concentration of dissociative Gd) and increases in the number of coordination water molecules (enhancing the relaxivity) becomes crucial. Herein, the key factor of the synergistic effect between the O- and N-containing groups of graphene quantum dots for the structural design of CAs with both high relaxivity and low toxicity was obtained. The nitrogen-doped graphene quantum dots (NGQDs) with an O/N ratio of 0.4 were selected to construct high-relaxivity magnetic resonance imaging (MRI)-fluorescence dual-mode CAs. The coordination stability of Gd can be increased through the synergetic coordination of O- and N-containing groups. The synergetic coordination of O- and N-containing groups can result in the short residency time of the water ligand and achieve high relaxivity. The resulting CAs (called NGQDs-Gd) exhibit a high relaxivity of 32.04 mM s at 114 μT. Meanwhile, the NGQDs-Gd also emit red fluorescence (614 nm), which can enable the MRI-fluorescence dual-mode imaging as the CAs. Moreover, the bio-toxicity and tumor-targeting behavior of NGQDs-Gd were also evaluated, and NGQDs-Gd show potential in MRI-fluorescence imaging .

摘要

造影剂(CA)在磁共振成像中通常涉及到 Gd 的解离。由于 Gd 的配位有限,因此 Gd 配位稳定性(降低解离 Gd 的浓度)和配位水分子数量的增加(增强弛豫率)之间的平衡变得至关重要。本文中,通过含 O 和 N 的石墨烯量子点的协同作用获得了结构设计 CA 的关键因素,这种 CA 同时具有高弛豫率和低毒性。选择具有 O/N 比为 0.4 的氮掺杂石墨烯量子点(NGQDs)构建高弛豫率磁共振成像(MRI)-荧光双模 CA。通过 O-和 N-含基团的协同配位可以增加 Gd 的配位稳定性。O-和 N-含基团的协同配位可以导致水配体的短停留时间,并实现高弛豫率。所得 CA(称为 NGQDs-Gd)在 114 μT 下表现出 32.04 mM s 的高弛豫率。同时,NGQDs-Gd 还发出红色荧光(614nm),这使其可以作为 CA 实现 MRI-荧光双模成像。此外,还评估了 NGQDs-Gd 的生物毒性和肿瘤靶向行为,NGQDs-Gd 在 MRI-荧光成像中具有潜在的应用前景。

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