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Mechanistic Systems Modeling to Improve Understanding and Prediction of Cardiotoxicity Caused by Targeted Cancer Therapeutics

机译:机械系统建模以提高对靶向癌症治疗药物引起的心脏毒性的理解和预测

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摘要

Tyrosine kinase inhibitors (TKIs) are highly potent cancer therapeutics that have been linked with serious cardiotoxicity, including left ventricular dysfunction, heart failure, and QT prolongation. TKI-induced cardiotoxicity is thought to result from interference with tyrosine kinase activity in cardiomyocytes, where these signaling pathways help to control critical processes such as survival signaling, energy homeostasis, and excitation–contraction coupling. However, mechanistic understanding is limited at present due to the complexities of tyrosine kinase signaling, and the wide range of targets inhibited by TKIs. Here, we review the use of TKIs in cancer and the cardiotoxicities that have been reported, discuss potential mechanisms underlying cardiotoxicity, and describe recent progress in achieving a more systematic understanding of cardiotoxicity via the use of mechanistic models. In particular, we argue that future advances are likely to be enabled by studies that combine large-scale experimental measurements with Quantitative Systems Pharmacology (QSP) models describing biological mechanisms and dynamics. As such approaches have proven extremely valuable for understanding and predicting other drug toxicities, it is likely that QSP modeling can be successfully applied to cardiotoxicity induced by TKIs. We conclude by discussing a potential strategy for integrating genome-wide expression measurements with models, illustrate initial advances in applying this approach to cardiotoxicity, and describe challenges that must be overcome to truly develop a mechanistic and systematic understanding of cardiotoxicity caused by TKIs.
机译:酪氨酸激酶抑制剂(TKIs)是一种高度有效的癌症治疗方法,与严重的心脏毒性有关,包括左心功能不全,心力衰竭和QT延长。 TKI诱导的心脏毒性被认为是心肌细胞中酪氨酸激酶活性的干扰所致,这些信号传导途径有助于控制关键过程,例如生存信号传导,能量稳态和兴奋收缩耦合。然而,由于酪氨酸激酶信号转导的复杂性以及TKIs抑制的靶标范围广泛,目前对机理的理解受到限制。在这里,我们回顾了TKIs在癌症中的使用和已报道的心脏毒性,讨论了潜在的心脏毒性机制,并描述了通过使用机械模型实现对心脏毒性的更系统的了解的最新进展。特别是,我们认为,将大规模实验测量与描述生物学机制和动力学的定量系统药理学(QSP)模型相结合的研究,很可能会推动未来的发展。由于已证明此类方法对于理解和预测其他药物毒性极其有价值,因此QSP建模很可能可以成功应用于TKI诱导的心脏毒性。最后,我们讨论了将全基因组表达测量与模型整合的潜在策略,阐明了将该方法应用于心脏毒性的初步进展,并描述了要真正发展对TKI引起的心脏毒性的机械和系统的理解所必须克服的挑战。

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