Multi-omics analysis reveals the chemoresistance mechanism of proliferating tissue-resident macrophages in PDAC via metabolic adaptation
Junlei Zhang(Northwestern Polytechnical University), Xueli Bai(First Affiliated Hospital Zhejiang University), Jianghui Tang(First Affiliated Hospital Zhejiang University), Jianpeng Sheng(Zhejiang Cancer Hospital), Wei Shao(Indiana University School of Medicine), Xun Wang(First Affiliated Hospital Zhejiang University), Yongtao Ji(First Affiliated Hospital Zhejiang University), Hui Zhang(First Affiliated Hospital Zhejiang University), Yaxing Zhao(Tongji University), Taohong Li(First Affiliated Hospital Zhejiang University), Jinyuan Song(First Affiliated Hospital Zhejiang University), Tingbo Liang(Zhejiang University), Shima Tang(First Affiliated Hospital Zhejiang University), Lin Wang(Women's Hospital, School of Medicine, Zhejiang University), Yandong Luo(Georgia Institute of Technology)
Cited by 54
Related Papers
Highly efficient decomposition of ammonia using high-entropy alloy catalysts
|Nature Communications|2019|815
Advantages of targeting the tumor immune microenvironment over blocking immune checkpoint in cancer immunotherapy
|Signal Transduction and Targeted Therapy|2021|594
Cyclic stability of supercapacitors: materials, energy storage mechanism, test methods, and device
|Journal of Materials Chemistry A|2021|443
Experimental and DFT insights into the visible-light driving metal-free C3N5 activated persulfate system for efficient water purification
|Applied Catalysis B: Environmental|2021|387
Oncolytic virotherapy: basic principles, recent advances and future directions
|Signal Transduction and Targeted Therapy|2023|386