A translational blueprint for developing intraoperative imaging agents via radiopharmaceutical-guided drug design

IF 6.9 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Teresa E. Sullivan , Servando Hernandez Vargas , Sukhen C. Ghosh , Solmaz AghaAmiri , Naruhiko Ikoma , Ali Azhdarinia
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引用次数: 0

Abstract

Cancer imaging is a rapidly evolving field due to the discovery of novel molecular targets and the availability of corresponding techniques to detect them with high precision, accuracy, and sensitivity. Nuclear medicine is the most widely used molecular imaging modality and has a growing toolkit of clinically used radiopharmaceuticals that enable whole-body tumor visualization, staging, and treatment monitoring for a variety of tumors in a non-invasive manner. The need for similar imaging capabilities in the operating room has led to the emergence of fluorescence-guided surgery (FGS) as a powerful technique that gives surgeons unprecedented ability to distinguish tumors from healthy tissues. While a variety of strategies have been used to develop contrast agents for FGS, the use of radiopharmaceuticals as models brings exceptional translational potential and has increasingly been explored. Here, we review strategies used to convert clinically used radiopharmaceuticals into fluorescent and multimodal counterparts. Unique preclinical and clinical capabilities stemming from radiopharmaceutical-based agent design are also discussed to illustrate the advantages of this approach.

通过放射性药物指导的药物设计开发术中成像剂的转化蓝图。
癌症成像是一个快速发展的领域,因为发现了新的分子靶点,并提供了相应的技术来高精度、准确度和灵敏度地检测它们。核医学是应用最广泛的分子成像模式,拥有越来越多的临床使用的放射性药物工具包,能够以非侵入性的方式对各种肿瘤进行全身肿瘤可视化、分期和治疗监测。手术室对类似成像能力的需求导致了荧光引导手术(FGS)的出现,这是一种强大的技术,使外科医生能够前所未有地区分肿瘤和健康组织。虽然已经使用了各种策略来开发FGS的造影剂,但使用放射性药物作为模型带来了非凡的转化潜力,并得到了越来越多的探索。在这里,我们回顾了用于将临床使用的放射性药物转化为荧光和多模式对应物的策略。还讨论了基于放射性药物的制剂设计所产生的独特的临床前和临床能力,以说明这种方法的优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Current Opinion in Chemical Biology
Current Opinion in Chemical Biology 生物-生化与分子生物学
CiteScore
13.30
自引率
1.30%
发文量
113
审稿时长
74 days
期刊介绍: COCHBI (Current Opinion in Chemical Biology) is a systematic review journal designed to offer specialists a unique and educational platform. Its goal is to help professionals stay informed about the growing volume of information in the field of Chemical Biology through systematic reviews.
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