纳米载体
癌症研究
医学
一氧化氮
血管生成
免疫疗法
癌症
免疫系统
药理学
肿瘤微环境
免疫学
内科学
药品
作者
Yun‐Chieh Sung,Pei-Ru Jin,Li‐An Chu,Fu‐Fei Hsu,Mei-Ren Wang,C. S. Chang,Show-Jen Chiou,Jian‐Tai Qiu,Dong-Yu Gao,Chu-Chi Lin,Yu-Sing Chen,Yi‐Chiung Hsu,Jane Wang,Fu-Nien Wang,Pei-Lun Yu,Ann‐Shyn Chiang,Anthony Yan-Tang Wu,John Jun-Sheng Ko,Charles P. Lai,Tsai‐Te Lu
标识
DOI:10.1038/s41565-019-0570-3
摘要
Abnormal tumour vasculature has a significant impact on tumour progression and response to therapy. Nitric oxide (NO) regulates angiogenesis and maintains vascular homeostasis and, thus, can be delivered to normalize tumour vasculature. However, a NO-delivery system with a prolonged half-life and a sustained release mechanism is currently lacking. Here we report the development of NanoNO, a nanoscale carrier that enables sustained NO release to efficiently deliver NO into hepatocellular carcinoma. Low-dose NanoNO normalizes tumour vessels and improves the delivery and effectiveness of chemotherapeutics and tumour necrosis factor-related, apoptosis-inducing, ligand-based therapy in both primary tumours and metastases. Furthermore, low-dose NanoNO reprogrammes the immunosuppressive tumour microenvironment toward an immunostimulatory phenotype, thereby improving the efficacy of cancer vaccine immunotherapy. Our findings demonstrate the ability of nanoscale NO delivery to efficiently reprogramme tumour vasculature and immune microenvironments to overcome resistance to cancer therapy, resulting in a therapeutic benefit.
科研通智能强力驱动
Strongly Powered by AbleSci AI