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Increased Afterload Augments Sunitinib-Induced Cardiotoxicity in an Engineered Cardiac Microtissue Model

机译:在工程心脏微观模型中增加了孙尼替尼诱导的仙毒毒性

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摘要

Summary: Sunitinib, a multitargeted oral tyrosine kinase inhibitor, used widely to treat solid tumors, results in hypertension in up to 47% and left ventricular dysfunction in up to 19% of treated individuals. The relative contribution of afterload toward inducing cardiac dysfunction with sunitinib treatment remains unknown. We created a preclinical model of sunitinib cardiotoxicity using engineered microtissues that exhibited cardiomyocyte death, decreases in force generation, and spontaneous beating at clinically relevant doses. Simulated increases in afterload augmented sunitinib cardiotoxicity in both rat and human microtissues, which suggest that antihypertensive therapy may be a strategy to prevent left ventricular dysfunction in patients treated with sunitinib. Key Words: afterload, apoptosis, cardiotoxicity, sunitinib, tissue engineering, toxicology, tyrosine kinase inhibitors
机译:概述:桑顿,一种多元的口服酪氨酸激酶抑制剂,广泛用于治疗实体肿瘤,导致高达47%的高血压,左心室功能障碍高达19%的治疗个体。与孙尼替尼治疗诱导心脏功能障碍的接近贡献仍然未知。我们使用设计的微小诱导,在临床相关剂量下产生了表现出心肌细胞死亡的工程学微小,在阳光尼菌心脏毒性的临床前模型。在大鼠和人类微生物调节中的uniTloInded Sunitinib心脏毒性的模拟增加,表明抗高血压治疗可能是预防桑顿治疗患者患者左心室功能障碍的策略。关键词:余量,细胞凋亡,心脏毒性,孙氨inib,组织工程,毒理学,酪氨酸激酶抑制剂

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