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药物研发中的非侵入性结构、功能和分子成像

Noninvasive structural, functional, and molecular imaging in drug development.

作者信息

Rudin Markus

机构信息

Institute for Biomedical Engineering, University of Zürich, HIT-E22.4, Wolfgang-Pauli-Strasse 27, CH-8093 Zürich, Switzerland.

出版信息

Curr Opin Chem Biol. 2009 Jun;13(3):360-71. doi: 10.1016/j.cbpa.2009.03.025. Epub 2009 May 14.

Abstract

Modern drug research is mechanism-based and the development of disease modifying therapies involves the identification of molecular key players in the pathological cascade. Today, noninvasive imaging tools enable the visualization and quantitative assessment of the expression of molecular targets, of their interaction with potential ligands, as well as of the functional consequence of this interaction at a molecular (e.g. activation of signaling cascades), cellular, metabolic, physiological, and morphological level in a temporo-spatially resolved manner. The ability to gather such information from the intact organism with all regulatory processes in place renders imaging highly attractive for the biomedical researcher and for the drug developer in particular. Molecular imaging is potentially capable of providing this information. Today, proof-of-principle has been established that imaging is in fact adding value to the drug discovery and development processes. Numerous studies have used structural and functional imaging readouts to document therapy efficacy, mainly during lead optimization. Similarly, major efforts have been devoted to the development and evaluation of imaging biomarkers that might serve as early readouts for therapy response with the potential of being used in the clinical drug evaluation thereby facilitating translational research. In this contribution, we illustrate the role and potential of imaging in modern drug discovery and development with selected examples. Yet, despite its huge potential the impact of imaging on drug discovery has been modest in the past; potential reasons will be discussed. Nevertheless, noninvasive imaging methods are rapidly evolving and it is beyond doubt that their importance for biomedical research will increase.

摘要

现代药物研究基于机制,疾病修饰疗法的开发涉及确定病理级联反应中的分子关键参与者。如今,非侵入性成像工具能够以时间和空间分辨的方式,在分子(如信号级联激活)、细胞、代谢、生理和形态水平上,可视化并定量评估分子靶点的表达、其与潜在配体的相互作用以及这种相互作用的功能后果。在整个调节过程正常运行的完整生物体中收集此类信息的能力,使得成像对生物医学研究人员,尤其是药物研发人员极具吸引力。分子成像有潜力提供此类信息。如今,成像实际上为药物发现和开发过程增添价值这一原理已得到验证。许多研究已使用结构和功能成像读数来记录治疗效果,主要是在先导化合物优化阶段。同样,人们也投入了大量精力来开发和评估成像生物标志物,这些标志物可能作为治疗反应的早期读数,有潜力用于临床药物评估,从而促进转化研究。在本论文中,我们通过一些实例阐述成像在现代药物发现和开发中的作用及潜力。然而,尽管成像具有巨大潜力,但过去它对药物发现的影响并不大;我们将讨论其中可能的原因。尽管如此,非侵入性成像方法正在迅速发展,毫无疑问,它们对生物医学研究的重要性将会增加。

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