材料科学
干细胞
体内
间充质干细胞
体外
细胞毒性
松弛法
磁共振成像
钆
生物医学工程
移植
纳米颗粒
生物物理学
骨髓
纳米技术
化学
病理
医学
细胞生物学
生物化学
生物
放射科
生物技术
冶金
自旋回波
外科
作者
Wenwen Cai,Lingjie Wang,Si‐Jin Li,Xiping Zhang,Tingting Li,Ying‐Hua Wang,Xi Yang,Jun Xie,Jian‐Ding Li,Shi‐Jie Liu,Wen Xu,Sheng He,Zhen Cheng,Quli Fan,Ruiping Zhang
摘要
Tracking transplanted stem cells is necessary to clarify cellular properties and improve transplantation success. In this study, we designed and synthesized melanin-based gadolinium3+ (Gd3+ )-chelate nanoparticles (MNP-Gd3+ ) of ∼7 nm for stem cell tracking in vivo. MNP-Gd3+ possesses many beneficial properties, such as its high stability and sensitivity, shorter T1 relaxation time, higher cell labeling efficiency, and lower cytotoxicity compared with commercial imaging agents. We found that the T1 relaxivity (r1 ) of MNP-Gd3+ was significantly higher than that of Gd-DTPA; the nanoparticles were taken up by bone mesenchymal stem cells (BMSCs) via endocytosis and were broadly distributed in the cytoplasm. Based on an in vitro MTT assay, no cytotoxicity of labeled stem cells was observed for MNP-Gd3+ concentrations of less than 800 µg/mL. Furthermore, we tracked MNP-Gd3+ -labeled BMSCs in vivo using 3.0T MRI equipment. After intramuscular injection, MNP-Gd3+ -labeled BMSCs were detected, even after four weeks, by 3T MRI. We concluded that MNP-Gd3+ nanoparticles at appropriate concentrations can be used to effectively monitor and track BMSCs in vivo. MNP-Gd3+ nanoparticles have potential as a new positive MRI contrast agent in clinical applications. © 2016 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 131-137, 2017.
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