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Papaverine and its derivatives radiosensitize solid tumors by inhibiting mitochondrial metabolism.

Proc. Natl. Acad. Sci. U.S.A.. 2018; 
BenejMartin,HongXiangqian,VibhuteSandip,ScottSabina,WuJinghai,GravesEdward,LeQuynh-Thu,KoongAlbert C,GiacciaAmato J,YuBing,ChenShih-Ching,PapandreouIoanna,DenkoNichol
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Abstract

Tumor hypoxia reduces the effectiveness of radiation therapy by limiting the biologically effective dose. An acute increase in tumor oxygenation before radiation treatment should therefore significantly improve the tumor cell kill after radiation. Efforts to increase oxygen delivery to the tumor have not shown positive clinical results. Here we show that targeting mitochondrial respiration results in a significant reduction of the tumor cells' demand for oxygen, leading to increased tumor oxygenation and radiation response. We identified an activity of the FDA-approved drug papaverine as an inhibitor of mitochondrial complex I. We also provide genetic evidence that papaverine's complex I inhibition is directl... More

Keywords

hypoxia,metabolism,mitochondria,radiosensitiza