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Approaching sites of action of drugs in clinical pharmacology: New analytical options and their challenges

机译:临床药理学中药物作用途径:新的分析选择及其挑战

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Clinical pharmacology is an important discipline for drug development aiming to define pharmacokinetics (PK), pharmacodynamics (PD) and optimum exposure to drugs, i.e. the concentration–response relationship and its modulators. For this purpose, information on drug concentrations at the anatomical, cellular and molecular sites of action is particularly valuable. In pharmacological assays, the limited accessibility of target cells in readily available samples (i.e. blood) often hampers mass spectrometry‐based monitoring of the absolute quantity of a compound and the determination of its molecular action at the cellular level. Recently, new sample collection methods have been developed for the specific capture of rare circulating cells, especially for the diagnosis of circulating tumour cells. In parallel, new advances and developments in mass spectrometric instrumentation now allow analyses to be scaled down to the cellular level. Together, these developments may permit the monitoring of minute drug quantities and show their effect at the cellular level. In turn, such PK/PD associations on a cellular level would not only enrich our pharmacological knowledge of a given compound but also expand the basis for PK/PD simulations. In this review, we describe novel concepts supporting clinical pharmacology at the anatomical, cellular and molecular sites of action, and highlight the new challenges in mass spectrometry‐based monitoring. Moreover, we present methods to tackle these challenges and define future needs.
机译:临床药理学是药物发展的重要学科,旨在定义药代动力学(PK),药效学(PD)和最佳暴露于药物,即浓度 - 反应关系及其调节剂。为此目的,有关解剖学,细胞和分子产动的药物浓度的信息特别有价值。在药理测定中,靶细胞在易于获得的样品(即血液)的有限可加工性经常吸收基于质谱的基于化合物的绝对量的监测和在细胞水平下的分子作用的测定。最近,已经为稀有循环细胞的特异性捕获开发了新的样品收集方法,特别是对于循环肿瘤细胞的诊断。同时,质谱仪器的新进展和发展现在允许分析缩小到蜂窝水平。这些发展在一起可以允许监测微小药量并显示它们在细胞水平的作用。反过来,这种PK / PD关联对细胞水平不仅可以丰富给定化合物的药理知识,而且扩大PK / PD仿真的基础。在本次综述中,我们描述了在解剖学,细胞和分子部位的临床药理学支持临床药理学的新颖概念,并突出了基于质谱的监测中的新挑战。此外,我们提出了解决这些挑战并定义未来需求的方法。

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