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Journal of the American Chemical Society|June 25, 2025
Photocatalytic 1,2-Dicarboxylation of Unactivated Alkynes with CO2Wei Wang, Si-Shun Yan, Yi Liu, et al.Journal of Cellular Biochemistry|May 26, 2018
Downregulation of ARID4A and ARID4B promote tumor progression and directly regulated by microRNA-30d in patient with prostate cancerYing-Ke Liang, Zhao-Dong Han, Jian-Ming Lu, et al.International Journal of Cancer|December 12, 2018
Expression of PD-L1 in tumor-associated nerves correlates with reduced CD8+ tumor-associated lymphocytes and poor prognosis in prostate cancerRu-Jun Mo, Zhao-Dong Han, Ying-Ke Liang, et al.Disease Markers|May 13, 2022
Tumor Suppressor Role and Clinical Significance of the FEV Gene in Prostate CancerYu-Xiang Liang, Ying-Ke Liang, Zhi-Hao Zou, et al.Angewandte Chemie (International Ed. in English)|September 25, 2025
Visible-Light-Driven α-C(sp3)-H Carboxylation of Primary Benzylamines with CO2 to Access α-Amino AcidsXin-Long Hu, Li-Li Liao, Jin-Cheng Xu, et al.Angewandte Chemie (International Ed. in English)|April 11, 2026
Formal Allylic C(sp3)-H Carboxylation With CO2 via Copper Metallaphotoredox CatalysisJun-Ping Yue, Huan-Zhen Li, Li-Cai Liu, et al.Molecular Cancer|August 8, 2019
Correction to: MicroRNA-30d promotes angiogenesis and tumor growth via MYPT1/c-JUN/VEGFA pathway and predicts aggressive outcome in prostate cancerZhuo-Yuan Lin, Guo Chen, Yan-Qiong Zhang, et al.Molecular Cancer|March 1, 2017
MicroRNA-30d promotes angiogenesis and tumor growth via MYPT1/c-JUN/VEGFA pathway and predicts aggressive outcome in prostate cancerZhuo-Yuan Lin, Guo Chen, Yan-Qiong Zhang, et al.Pageof 5