肺癌
自噬
代谢组
体内
缺血
肺
生物
癌症研究
细胞周期
癌症
病理
癌细胞
医学
代谢组学
内科学
生物信息学
生物化学
细胞凋亡
生物技术
作者
Naohiko Kikuchi,Tomoyoshi Soga,Miyuki Nomura,Taku Sato,Yohei Sakamoto,Ryota Tanaka,Jiro Abe,Mami Morita,Hiroshi Shima,Yoshinori Okada,Nobuhiro Tanuma
标识
DOI:10.1016/j.bbrc.2020.07.082
摘要
Recent advances in cancer biology reveal the importance of metabolic changes in cancer; however, less is known about how metabolic pathways in tumors are regulated in vivo. Here, we report analysis of the lung cancer metabolism based on different surgical procedures, namely lobectomy and partial resection. In lobectomy, but not in partial resection, pulmonary arteries and veins are ligated prior to removal of tissues, rendering tissues ischemic. We show that tumors indeed undergo ischemia upon lobectomy and that the tumor metabolome differs markedly from that of tumors removed by partial resection. Comparison of the responses to ischemia in tumor and normal lung tissues revealed that lung cancer tissue exhibits greater TCA cycle and autophagic activity than do normal lung tissues in vivo in patients. Finally, we report that deleting ATG7, which encodes a protein essential for autophagy, antagonizes growth of tumors derived from lung cancer cell lines, suggesting that autophagy confers metabolic advantages to lung cancer. Our findings shed light on divergent metabolic responses to ischemia seen in tumors and normal tissues.
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