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Mechanistic and quantitative insight into cell surface targeted molecular imaging agent design

机译:机械和定量洞察细胞表面靶向分子成像剂设计

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摘要

Molecular imaging agent design involves simultaneously optimizing multiple probe properties. While several desired characteristics are straightforward, including high affinity and low non-specific background signal, in practice there are quantitative trade-offs between these properties. These include plasma clearance, where fast clearance lowers background signal but can reduce target uptake, and binding, where high affinity compounds sometimes suffer from lower stability or increased non-specific interactions. Further complicating probe development, many of the optimal parameters vary depending on both target tissue and imaging agent properties, making empirical approaches or previous experience difficult to translate. Here, we focus on low molecular weight compounds targeting extracellular receptors, which have some of the highest contrast values for imaging agents. We use a mechanistic approach to provide a quantitative framework for weighing trade-offs between molecules. Our results show that specific target uptake is well-described by quantitative simulations for a variety of targeting agents, whereas non-specific background signal is more difficult to predict. Two in vitro experimental methods for estimating background signal in vivo are compared – non-specific cellular uptake and plasma protein binding. Together, these data provide a quantitative method to guide probe design and focus animal work for more cost-effective and time-efficient development of molecular imaging agents.
机译:分子成像剂设计涉及同时优化多个探针特性。尽管几个所需的特性很简单,包括高亲和力和低非特异性背景信号,但实际上,这些特性之间存在定量权衡。这些因素包括血浆清除率(快速清除率会降低背景信号,但会降低目标摄取)和结合(其中高亲和力化合物有时会降低稳定性或增加非特异性相互作用)。进一步使探针开发复杂化的是,许多最佳参数取决于靶组织和成像剂的性质而变化,这使得经验方法或以前的经验难以翻译。在这里,我们重点研究针对细胞外受体的低分子量化合物,这些化合物对成像剂的对比度最高。我们使用一种机械方法来提供定量框架,以权衡分子之间的权衡。我们的结果表明,针对各种靶向剂的定量模拟可以很好地描述特异性靶标的摄取,而更难以预测非特异性背景信号。比较了两种用于估算体内背景信号的体外实验方法-非特异性细胞摄取和血浆蛋白结合。这些数据加在一起提供了一种定量方法,可指导探针设计并集中动物工作,以提高成本效益和时间效益,以开发分子显像剂。

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