磁共振成像
钆
对比度(视觉)
肾
生物医学工程
医学
核磁共振
材料科学
放射科
计算机科学
内科学
人工智能
物理
冶金
作者
Yuxia Liu,Duyang Gao,Yuanyuan He,Wei Ma,Suet Yen Chong,Xinyi Qi,Hui Jun Ting,Zichao Luo,Zhigao Yi,Jingyu Tang,Chao Chang,Jiong‐Wei Wang,Zonghai Sheng,Hairong Zheng,Xiaogang Liu
标识
DOI:10.1038/s41467-024-54167-4
摘要
Abstract Magnetic resonance imaging contrast agents can enhance diagnostic precision but often face limitations such as short imaging windows, low tissue specificity, suboptimal contrast enhancement, or potential toxicity, which affect resolution and long-term monitoring. Here, we present a protein contrast agent based on lanmodulin, engineered with a single-point mutation at position 108 from N to D to yield maximum gadolinium binding sites. After loading with Gd 3+ ions, the resulting protein complex, LanND-Gd, exhibits efficient renal clearance, high relaxivity, and prolonged renal retention compared to commercial agents. LanND-Gd enables high-performance visualization of whole-body structures and brain vasculature in male mice at a resolution finer than one hundred micrometers. In male ischemia mouse models, LanND-Gd also improves kidney dysfunction monitoring while minimizing risks of neural toxicity or immunogenic reactions. This protein-based contrast agent offers superior image quality, improved biocompatibility, and extended imaging timeframes, promising significant advancements in magnetic resonance-based diagnostics and patient outcomes.
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