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Intelligent Design of Nano-Scale Molecular Imaging Agents

机译:纳米级分子显像剂的智能设计

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摘要

Visual representation and quantification of biological processes at the cellular and subcellular levels within living subjects are gaining great interest in life science to address frontier issues in pathology and physiology. As intact living subjects do not emit any optical signature, visual representation usually exploits nano-scale imaging agents as the source of image contrast. Many imaging agents have been developed for this purpose, some of which exert nonspecific, passive, and physical interaction with a target. Current research interest in molecular imaging has mainly shifted to fabrication of smartly integrated, specific, and versatile agents that emit fluorescence or luminescence as an optical readout. These agents include luminescent quantum dots (QDs), biofunctional antibodies, and multifunctional nanoparticles. Furthermore, genetically encoded nano-imaging agents embedding fluorescent proteins or luciferases are now gaining popularity. These agents are generated by integrative design of the components, such as luciferase, flexible linker, and receptor to exert a specific on–off switching in the complex context of living subjects. In the present review, we provide an overview of the basic concepts, smart design, and practical contribution of recent nano-scale imaging agents, especially with respect to genetically encoded imaging agents.
机译:在生命主体中,对细胞和亚细胞水平上的生物过程的可视化表示和量化,在生命科学领域引起了极大的兴趣,以解决病理学和生理学领域的前沿问题。由于完整的活着的受试者不会发出任何光学信号,因此视觉表示通常利用纳米级成像剂作为图像对比度的来源。为此已经开发了许多成像剂,其中一些与靶标发挥非特异性,被动和物理相互作用。当前对分子成像的研究兴趣已主要转移到制造智能整合的,特异的和通用的试剂,这些试剂会发出荧光或发光作为光学读数。这些试剂包括发光量子点(QD),生物功能抗体和多功能纳米颗粒。此外,嵌入荧光蛋白或荧光素酶的遗传编码纳米成像剂现在正变得越来越流行。这些试剂是通过荧光素酶,柔性接头和受体等成分的集成设计而产生的,以在活体受试者的复杂环境中进行特定的开关切换。在当前的审查中,我们提供了基本概念,智能设计和最新的纳米级成像剂,特别是在遗传编码成像剂方面的实际贡献的概述。

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