脂肪酸代谢
骨髓
骨转移
癌症研究
转移
医学
脂肪酸
肺癌
骨重建
癌症
抗药性
肺
药品
合成代谢
β氧化
癌细胞
新陈代谢
骨癌
脂肪酸合成
碳水化合物代谢
分解代谢
化学
药理学
体内
肿瘤微环境
脂质代谢
内科学
体外
脂肪酸合酶
肺癌的治疗
联合疗法
作者
Jian Dong,Hanying Ding,Shuoer Wang,Shengzhe Ruan,Jianxin Ye,Peng Hu,Tong Meng,Wangjun Yan,Lei Zhou,Changping Wang,Dianwen Song
标识
DOI:10.1186/s12951-025-03792-2
摘要
Lung cancer remains a leading cause of cancer-related mortality worldwide, with bone metastasis presenting a significant challenge due to its association with severe skeletal complications and therapy resistance. This study investigates the role of bone marrow adipocytes (BMAs) in modulating fatty acid metabolism within the bone metastatic niche of lung cancer. Utilizing single-cell sequencing and in vitro co-culture models, we identified critical interactions between BMAs and metastatic lung cancer cells that enhance fatty acid metabolism, promoting tumor survival and drug resistance. To target this metabolic axis, we screened a library of fatty acid synthesis inhibitors, and developed a nanoparticle system encapsulating kaempferol, and cisplatin, surface-modified with poly-aspartic acid for efficient bone targeting. The nanoparticles release their therapeutic payload in the acidic tumor microenvironment, disrupting fatty acid metabolism and overcoming chemoresistance. Our findings highlight the metabolic reprogramming driven by BMAs in bone metastasis and propose a novel therapeutic strategy to improve outcomes for patients with metastatic lung cancer.
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