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Ablative Hypofractionated Radiation Therapy Enhances Non-Small Cell Lung Cancer Cell Killing via Preferential Stimulation of Necroptosis In Vitro and In Vivo

坏死性下垂 医学 离格 癌症研究 刺激 细胞 体内 程序性细胞死亡 放射治疗 体外 肺癌 细胞凋亡 病理 内科学 化学 生物技术 生物 生物化学 遗传学
作者
Huan-Huan Wang,Zhi-Qiang Wu,Dong Qian,Nicholas G. Zaorsky,Ming-Han Qiu,Jing-Jing Cheng,Chao Jiang,Juan Wang,Xian-Liang Zeng,Chun-Lei Liu,Li-Jun Tian,GuoGuang Ying,Mao-Bin Meng,Xi-Shan Hao,Zhiyong Yuan
出处
期刊:International Journal of Radiation Oncology Biology Physics [Elsevier BV]
卷期号:101 (1): 49-62 被引量:43
标识
DOI:10.1016/j.ijrobp.2018.01.036
摘要

To investigate how necroptosis (ie, programmed necrosis) is involved in killing of non-small cell lung cancer (NSCLC) after ablative hypofractionated radiation therapy (HFRT).Deoxyribonucleic acid damage, DNA repair, and the death form of NSCLC cells were assessed after radiation therapy. The overexpression and silencing of receptor-interacting protein kinases 3 (RIP3, a key protein involved activation of necroptosis)-stable NSCLC cell lines were successfully constructed. The form of cell death, the number and area of colonies, and the regulatory proteins of necroptosis were characterized after radiation therapy in vitro. Finally, NSCLC xenografts and patient specimens were used to examine involvement of necroptosis after ablative HFRT in vivo.Radiation therapy induced expected DNA damage and repair of NSCLC cell lines, but ablative HFRT at ≥10 Gy per fraction preferentially stimulated necroptosis in NSCLC cells and xenografts with high RIP3 expression, as characterized by induction and activation of RIP3 and mixed-lineage kinase domain-like protein and release of immune-activating chemokine high-mobility group box 1. In contrast, RNA interference of RIP3 attenuated ablative HFRT-induced necroptosis and activation of its regulatory proteins. Among central early-stage NSCLC patients receiving stereotactic body radiation therapy, high expression of RIP3 was associated with improved local control and progression-free survival (all P < .05).Ablative HFRT at ≥10 Gy per fraction enhances killing of NSCLC with high RIP3 expression via preferential stimulation of necroptosis. RIP3 may serve as a useful biomarker to predict favorable response to stereotactic body radiation therapy.
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