纳米团簇
无定形碳酸钙
无定形固体
钆
碳酸钙
材料科学
碳酸盐
顺磁性
无定形磷酸钙
核磁共振
化学工程
钙
化学
纳米技术
有机化学
复合材料
冶金
工程类
物理
量子力学
作者
Liang Dong,Yunjun Xu,Cong Sui,Yang Zhao,Li‐Bo Mao,Denis Gebauer,Rose Rosenberg,Jonathan Avaro,Yadong Wu,Huai‐Ling Gao,Zhao Pan,Hui-Qin Wen,Xu Yan,Fei Li,Yang Lü,Helmut Cölfen,Shu‐Hong Yu
标识
DOI:10.1038/s41467-022-32615-3
摘要
Amorphous calcium carbonate plays a key role as transient precursor in the early stages of biogenic calcium carbonate formation in nature. However, due to its instability in aqueous solution, there is still rare success to utilize amorphous calcium carbonate in biomedicine. Here, we report the mutual effect between paramagnetic gadolinium ions and amorphous calcium carbonate, resulting in ultrafine paramagnetic amorphous carbonate nanoclusters in the presence of both gadolinium occluded highly hydrated carbonate-like environment and poly(acrylic acid). Gadolinium is confirmed to enhance the water content in amorphous calcium carbonate, and the high water content of amorphous carbonate nanoclusters contributes to the much enhanced magnetic resonance imaging contrast efficiency compared with commercially available gadolinium-based contrast agents. Furthermore, the enhanced T1 weighted magnetic resonance imaging performance and biocompatibility of amorphous carbonate nanoclusters are further evaluated in various animals including rat, rabbit and beagle dog, in combination with promising safety in vivo. Overall, exceptionally facile mass-productive amorphous carbonate nanoclusters exhibit superb imaging performance and impressive stability, which provides a promising strategy to design magnetic resonance contrast agent.
科研通智能强力驱动
Strongly Powered by AbleSci AI