脂肪组织
血管生成
β氧化
脂质代谢
癌症研究
癌症
肉碱
细胞生长
药理学
医学
内分泌学
癌细胞
新陈代谢
内科学
生物
生物化学
作者
Hideki Iwamoto,Mitsuhiko Abe,Yunlong Yang,Dongmei Cui,Takahiro Seki,Masaki Nakamura,Kayoko Hosaka,Sharon Lim,Jieyu Wu,Xingkang He,Xiaoting Sun,Yongtian Lu,Qingjun Zhou,Weiyun Shi,Takuji Torimura,Guohui Nie,Qi Li,Yihai Cao
出处
期刊:Cell Metabolism
[Cell Press]
日期:2018-06-01
卷期号:28 (1): 104-117.e5
被引量:300
标识
DOI:10.1016/j.cmet.2018.05.005
摘要
Intrinsic and evasive antiangiogenic drug (AAD) resistance is frequently developed in cancer patients, and molecular mechanisms underlying AAD resistance remain largely unknown. Here we describe AAD-triggered, lipid-dependent metabolic reprogramming as an alternative mechanism of AAD resistance. Unexpectedly, tumor angiogenesis in adipose and non-adipose environments is equally sensitive to AAD treatment. AAD-treated tumors in adipose environment show accelerated growth rates in the presence of a minimal number of microvessels. Mechanistically, AAD-induced tumor hypoxia initiates the fatty acid oxidation metabolic reprogramming and increases uptake of free fatty acid (FFA) that stimulates cancer cell proliferation. Inhibition of carnitine palmitoyl transferase 1A (CPT1) significantly compromises the FFA-induced cell proliferation. Genetic and pharmacological loss of CPT1 function sensitizes AAD therapeutic efficacy and enhances its anti-tumor effects. Together, we propose an effective cancer therapy concept by combining drugs that target angiogenesis and lipid metabolism.
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