Marullo Rossella, Castro Monica, Yomtoubian Shira, Calvo-Vidal M Nieves, Revuelta Maria Victoria, Krumsiek Jan, Cho Andrew, Morgado Pablo Cresta, Yang ShaoNing, Medina Vanina, Roth Berta M, Bonomi Marcelo, Keshari Kayvan R, Mittal Vivek, Navigante Alfredo, Cerchietti Leandro
Hematology and Oncology Division, Weill Cornell Medicine, Cornell University, New York, NY, USA.
Translational Research Unit, Angel Roffo Cancer Institute, University of Buenos Aires, Buenos Aires, Argentina.
Sci Adv. 2021 Nov 5;7(45):eabg1964. doi: 10.1126/sciadv.abg1964.
Selected patients with brain metastases (BM) are candidates for radiotherapy. A lactatogenic metabolism, common in BM, has been associated with radioresistance. We demonstrated that BM express nitric oxide (NO) synthase 2 and that administration of its substrate l-arginine decreases tumor lactate in BM patients. In a placebo-controlled trial, we showed that administration of l-arginine before each fraction enhanced the effect of radiation, improving the control of BM. Studies in preclinical models demonstrated that l-arginine radiosensitization is a NO-mediated mechanism secondary to the metabolic adaptation induced in cancer cells. We showed that the decrease in tumor lactate was a consequence of reduced glycolysis that also impacted ATP and NAD levels. These effects were associated with NO-dependent inhibition of GAPDH and hyperactivation of PARP upon nitrosative DNA damage. These metabolic changes ultimately impaired the repair of DNA damage induced by radiation in cancer cells while greatly sparing tumor-infiltrating lymphocytes.
部分脑转移瘤(BM)患者适合接受放射治疗。BM中常见的生乳酸代谢与放射抗性有关。我们证明BM表达一氧化氮(NO)合酶2,并且给予其底物L-精氨酸可降低BM患者的肿瘤乳酸水平。在一项安慰剂对照试验中,我们表明在每次放疗前给予L-精氨酸可增强放疗效果,改善对BM的控制。临床前模型研究表明,L-精氨酸放射增敏是一种由癌细胞代谢适应介导的NO依赖性机制。我们表明肿瘤乳酸水平降低是糖酵解减少的结果,糖酵解减少还影响了ATP和NAD水平。这些效应与NO依赖性抑制甘油醛-3-磷酸脱氢酶(GAPDH)以及亚硝化DNA损伤后聚(ADP-核糖)聚合酶(PARP)的过度激活有关。这些代谢变化最终损害了癌细胞中由辐射诱导的DNA损伤的修复,同时极大地保护了肿瘤浸润淋巴细胞。