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分子影像学基础:模态、成像剂与应用。

A molecular imaging primer: modalities, imaging agents, and applications.

机构信息

Molecular Imaging Program, Department of Radiology, Stanford University, Palo Alto, CA 94305, USA.

出版信息

Physiol Rev. 2012 Apr;92(2):897-965. doi: 10.1152/physrev.00049.2010.

Abstract

Molecular imaging is revolutionizing the way we study the inner workings of the human body, diagnose diseases, approach drug design, and assess therapies. The field as a whole is making possible the visualization of complex biochemical processes involved in normal physiology and disease states, in real time, in living cells, tissues, and intact subjects. In this review, we focus specifically on molecular imaging of intact living subjects. We provide a basic primer for those who are new to molecular imaging, and a resource for those involved in the field. We begin by describing classical molecular imaging techniques together with their key strengths and limitations, after which we introduce some of the latest emerging imaging modalities. We provide an overview of the main classes of molecular imaging agents (i.e., small molecules, peptides, aptamers, engineered proteins, and nanoparticles) and cite examples of how molecular imaging is being applied in oncology, neuroscience, cardiology, gene therapy, cell tracking, and theranostics (therapy combined with diagnostics). A step-by-step guide to answering biological and/or clinical questions using the tools of molecular imaging is also provided. We conclude by discussing the grand challenges of the field, its future directions, and enormous potential for further impacting how we approach research and medicine.

摘要

分子影像学正在彻底改变我们研究人体内部运作、诊断疾病、探索药物设计以及评估疗法的方式。该领域的整体发展使得我们能够实时在活细胞、组织和完整的活体中可视化正常生理和疾病状态下涉及的复杂生化过程。在本篇综述中,我们特别关注完整活体的分子影像学。我们为分子影像学领域的新手提供了基础知识介绍,为业内人士提供了资源。我们首先描述了经典的分子影像学技术及其关键优势和局限性,然后介绍了一些最新出现的成像模式。我们概述了主要类型的分子成像剂(即小分子、肽、适体、工程蛋白和纳米颗粒),并举例说明了分子影像学如何在肿瘤学、神经科学、心脏病学、基因治疗、细胞追踪和治疗学(治疗与诊断相结合)中得到应用。我们还提供了一个使用分子影像学工具回答生物学和/或临床问题的逐步指南。最后,我们讨论了该领域的重大挑战、未来发展方向以及对我们研究和医学方法的进一步影响的巨大潜力。

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