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Radiometallated peptides for molecular imaging and targeted therapy

机译:用于分子成像和靶向治疗的放射金属肽

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摘要

In developed countries, cancer is the second leading cause of death, being only surpassed by cardiovascular diseases. To develop tumor-targeted tools to localize and treat cancer at an early stage is a multidisciplinary area fuelled by the convergence of biology, medicine, chemistry, physics and engineering. Chemists, in particular, play a critical role in this effort, as they are continuously challenged to use innovative chemical strategies to develop 'smart drugs'. The in vitro observation that peptide receptors are overexpressed in certain tumors, as compared to endogenous expression levels, has prompted the use of such receptors as targets and the design of radiolabelled peptide-based tools for targeted nuclear molecular imaging and therapy. Such approach has gained increased interest over the last two decades, driven in particular by the success of OctreoScan? and by the increasing knowledge concerning overexpression of regulatory peptide receptors in tumor tissues. Selected peptides that target a variety of disease related receptors are in place and have been labeled with different radiometals, using mainly the bifunctional approach. This review begins by summarizing some relevant aspects of the coordination chemistry of the metals studied for labeling peptides. Then, we provide an overview of the chemical strategies explored to improve the biological performance of different families of radiometallated peptides for nuclear molecular imaging and/or targeted radionuclide tumor therapy.
机译:在发达国家,癌症是仅次于心血管疾病的第二大死亡原因。在生物学,医学,化学,物理学和工程学的融合推动下,在早期阶段开发针对肿瘤的工具来定位和治疗癌症是一个多学科领域。特别是化学家在这项工作中扮演着至关重要的角色,因为他们不断受到挑战,要求他们使用创新的化学策略来开发“智能药物”。与内源性表达水平相比,肽受体在某些肿瘤中过表达的体外观察促使人们将此类受体用作靶标,并促进了放射性核素标记的基于肽的工具的设计,用于靶向核分子成像和治疗。在过去的二十年中,这种方法引起了越来越多的关注,尤其是在OctreoScan?以及关于在肿瘤组织中过度表达调节肽受体的知识的增长。靶向多种与疾病相关的受体的选定肽已经就位,并已主要使用双功能方法用不同的放射性金属标记。这篇综述首先概述了用于标记肽的金属配位化学的一些相关方面。然后,我们概述了为改善核金属成像和/或靶向放射性核素肿瘤治疗的不同水平的放射性金属化肽的生物学性能而探索的化学策略。

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