纳米材料
锰
纳米技术
磁共振成像
对比度(视觉)
化学
钆
材料科学
核磁共振
计算机科学
医学
物理
放射科
人工智能
有机化学
作者
Lorena García‐Hevia,Manuel Bañobre‐López,Juan Gallo
标识
DOI:10.1002/chem.201802851
摘要
Abstract Manganese‐based nanostructured contrast agents (CAs) entered the field of medical diagnosis through magnetic resonance imaging (MRI) some years ago. Although some of these Mn‐based CAs behave as classic T 1 contrast enhancers in the same way as clinical Gd‐based molecules do, a new type of Mn nanomaterials have been developed to improve MRI sensitivity and potentially gather new functional information from tissues by using traditional T 1 contrast enhanced MRI. These nanomaterials have been designed to respond to biological environments, mainly to pH and redox potential variations. In many cases, the differences in signal generation in these responsive Mn‐based nanostructures come from intrinsic changes in the magnetic properties of Mn cations depending on their oxidation state. In other cases, no changes in the nature of Mn take place, but rather the nanomaterial as a whole responds to the change in the environment through different mechanisms, including changes in integrity and hydration state. This review focusses on the chemistry and MR performance of these responsive Mn‐based nanomaterials.
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