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Proteins, air and water: reporter genes for ultrasound and magnetic resonance imaging

机译:蛋白质,空气和水:超声波和磁共振成像报告基因

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摘要

A long-standing goal of molecular imaging is to visualize cellular function within the context of living animals, necessitating the development of reporter genes compatible with deeply penetrant imaging modalities such as ultrasound and magnetic resonance imaging (MRI). Until recently, no reporter genes for ultrasound were available, and most genetically encoded reporters for MRI were limited by metal availability or relatively low sensitivity. Here we review how these limitations are being addressed by recently introduced reporter genes based on air-filled and water-transporting biomolecules. We focus on gas-filled protein nanostructures adapted from buoyant microbes, which scatter sound waves, perturb magnetic fields and interact with hyperpolarized nuclei, as well as transmembrane water channels that alter the effective diffusivity of water in tissue.
机译:分子成像的长期目标是在活性动物的背景下可视化细胞功能,需要与诸如超声和磁共振成像(MRI)的深度渗透成像模态相容的报告基因的发展。 直到最近,没有用于超声的报告基因可用,并且MRI的大多数遗传编码记者受金属可用性或相对低的敏感性的限制。 在这里,我们回顾了最近引入了基于充满空气和水运的生物分子的报告基因的这些限制。 我们专注于燃气蛋白纳米结构,其适应浮力微生物,其散射声波,扰动磁场并与超极化核相互作用,以及改变组织中水的有效扩散性的跨膜水通道。

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