中文 | English
Return
Total: 1238 , 1/124
Show Home Prev Next End page: GO
Author:( Tong DONG)

1.Cuproptosis: A novel therapeutic target for non-small cell lung cancer

Dong DONG ; Yajie ZHANG ; Hecheng LI

Chinese Journal of Clinical Thoracic and Cardiovascular Surgery 2026;33(05):826-832

2.The magnetic compression technique in the treatment of severe mid-ureteral stricture

Fanchao WEI ; Zhaoxiang WANG ; Shichao HAN ; Zhiwen DONG ; Yuxin FU ; Ruochen QI ; Guohui WANG ; Xiaoyan ZHANG ; Tong XU ; Jingliang ZHANG ; Weijun QIN ; Lijun YANG ; Shuaijun MA

Journal of Modern Urology 2026;31(2):182-186

3.Effect and mechanism of the azo-podophyllotoxin derivative SU056 in a mouse model of carbon tetrachloride-induced liver fibrosis

Qichao GE ; Rui CHEN ; Yufei YANG ; Yuecheng GUO ; Dihanjing ZHANG ; Hui DONG ; Lungen LU

Journal of Clinical Hepatology 2026;42(6):1310-1320

4.Prognostic value of quantitative flow ratio measured immediately after percutaneous coronary intervention for chronic total occlusion.

Zheng QIAO ; Zhang-Yu LIN ; Qian-Qian LIU ; Rui ZHANG ; Chang-Dong GUAN ; Sheng YUAN ; Tong-Qiang ZOU ; Xiao-Hui BIAN ; Li-Hua XIE ; Cheng-Gang ZHU ; Hao-Yu WANG ; Guo-Feng GAO ; Ke-Fei DOU

Journal of Geriatric Cardiology 2025;22(4):433-442

6.Association between sodium-glucose co-transporter-2 inhibitors and cardiac outcomes in cancer patients: a systematic review and meta-analysis.

Xin-Yu ZHENG ; Nan ZHANG ; Bing-Xin XIE ; Guang-Ping LI ; Jian-Dong ZHOU ; Gary TSE ; Tong LIU

Journal of Geriatric Cardiology 2025;22(10):844-858

8.Dual activation of GCGR/GLP1R signaling ameliorates intestinal fibrosis via metabolic regulation of histone H3K9 lactylation in epithelial cells.

Han LIU ; Yujie HONG ; Hui CHEN ; Xianggui WANG ; Jiale DONG ; Xiaoqian LI ; Zihan SHI ; Qian ZHAO ; Longyuan ZHOU ; JiaXin WANG ; Qiuling ZENG ; Qinglin TANG ; Qi LIU ; Florian RIEDER ; Baili CHEN ; Minhu CHEN ; Rui WANG ; Yao ZHANG ; Ren MAO ; Xianxing JIANG

Acta Pharmaceutica Sinica B 2025;15(1):278-295

10.Design, synthesis, and antitumor activity of novel thioheterocyclic nucleoside derivatives by suppressing the c-MYC pathway.

Xian-Jia LI ; Ke-Xin HUANG ; Ke-Xin WANG ; Ru LIU ; Dong-Chao WANG ; Yu-Ru LIANG ; Er-Jun HAO ; Yang WANG ; Hai-Ming GUO

Acta Pharmaceutica Sinica B 2025;15(7):3685-3707

Sort by Result Analysis

Display Mode

Output Records




File Type





Total: 1238 , 1/124 Show Home Prev Next End page: GO