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Effect of Small Molecule Modification on Single Cell Pharmacokinetics of PARP Inhibitors

机译:小分子修饰对PARP抑制剂单细胞药代动力学的影响

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摘要

The heterogeneous delivery of drugs in tumors is an established process contributing to variability in treatment outcome. Despite the general acceptance of variable delivery, the study of the underlying causes is challenging given the complex tumor microenvironment including intra- and inter-tumor heterogeneity. The difficulty in studying this distribution is even more significant for small molecule drugs where radiolabeled compounds or mass spectrometry detection lack the spatial and temporal resolution required to quantify the kinetics of drug distribution in vivo. In this work, we take advantage of the synthesis of fluorescent drug conjugates that retain their target binding but are designed with different physiochemical and thus pharmacokinetic properties. Using these probes, we followed the drug distribution in cell culture and tumor xenografts with temporal resolution of seconds and subcellular spatial resolution. These measurements, including in vivo permeability of small molecule drugs, can be used directly in predictive pharmacokinetic models for the design of therapeutics and companion imaging agents as demonstrated by a finite element model.
机译:药物在肿瘤中的异质递送是导致治疗结果可变性的既定过程。尽管普遍接受可变递送,但是鉴于复杂的肿瘤微环境包括肿瘤内和肿瘤间异质性,对根本原因的研究仍具有挑战性。对于小分子药物而言,研究这种分布的难度甚至更大,因为其中放射性标记的化合物或质谱检测缺少定量体内药物分布动力学所需的时空分辨率。在这项工作中,我们利用了荧光药物偶联物的合成方法,该偶联物保留了它们的靶标结合,但设计了不同的物理化学性质和药代动力学性质。使用这些探针,我们以秒的时间分辨率和亚细胞空间分辨率跟踪了细胞培养和异种移植物中药物的分布。这些测量(包括小分子药物的体内渗透性)可直接用于预测药代动力学模型,以设计治疗剂和伴随成像剂,如有限元模型所示。

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