脂质代谢
癌症研究
卵巢癌
转录组
脂肪酸代谢
川地163
花生四烯酸
生物
浆液性液体
化学
代谢组学
β氧化
脂滴
基因表达谱
医学
新陈代谢
浆液性卵巢癌
癌症
癌细胞
脂质信号
下调和上调
表型
肿瘤微环境
免疫印迹
鞘脂
胰岛素抵抗
碳水化合物代谢
作者
Yuxi Zhao,Junyi Li,Bo Zheng,Wanshan Liu,Yaru Wang,Shufeng Wang,Cui Y,Huiqin Guo,Hongxia Wang,Ting Xiao,Kun Qian,Jing Zuo
摘要
ABSTRACT Ovarian cancer is the deadliest gynecological malignancy. The main obstacle in treating high‐grade serous ovarian cancer (HGSOC) is platinum resistance. The mechanistic interface between tumor metabolic reprogramming and platinum resistance remains undefined. We integrated proteomic and metabolomic profiling of 97 primary HGSOC tumors to map the molecular landscape. Unsupervised clustering identified three subtypes. Subtype 3 exhibited a higher platinum resistance rate (64.5%), as well as worse overall ( p = 0.001) and recurrence‐free ( p = 0.0001) survival. At the molecular level, both Subtypes 2 and 3 tumors displayed phenotypes of activated lipid metabolism. However, Subtype 3 tumors were unique, exhibiting potential divergence between lipid metabolism and bioenergetics. The arachidonic acid metabolism pathway was upregulated ( p = 2.0 × 10 −6 ), and the key enzyme cyclooxygenase‐2 (COX‐2) was overexpressed ( p < 0.001). Subtype 3 tumors exhibited an inflammation‐associated state with the highest infiltration of M2‐like macrophages ( p = 0.007). Single‐cell transcriptomics revealed increased expression of PTGS2 (encoding COX‐2, p = 0.001) and CD163 ( p < 2.2 × 10 −16 ) in macrophages from platinum‐resistant HGSOC. Multiplex immunofluorescence confirmed that platinum‐resistant tumors had a higher proportion of COX‐2 + cells in M2‐like macrophages ( p = 0.010). These findings define a high‐risk HGSOC subtype characterized by inflammation‐related lipid metabolism. This suggests targeting the arachidonic acid metabolism pathway as a way to overcome platinum resistance.
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