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PiRNA-4447944 promotes castration-resistant growth and metastasis of prostate cancer by inhibiting NEFH expression through forming the piRNA-4447944-PIWIL2-NEFH complex Journal article
Peng, Qiang, Chen, Yu, Xie, Tingting, Pu, Dandan, Ho, Vincy Wing Sze, Sun, Jingkai, Liu, Kang, Chan, Ronald Cheong Kin, Ding, Xiaofan, Teoh, Jeremy Yuen Chun, Wang, Xin, Chiu, Peter Ka Fung, Ng, Chi Fai. PiRNA-4447944 promotes castration-resistant growth and metastasis of prostate cancer by inhibiting NEFH expression through forming the piRNA-4447944-PIWIL2-NEFH complex[J]. International journal of biological sciences, 2024, 20(9), 3638-3655.
Authors:  Peng, Qiang;  Chen, Yu;  Xie, Tingting;  Pu, Dandan;  Ho, Vincy Wing Sze; et al.
Favorite | TC[WOS]:0 TC[Scopus]:1  IF:8.2/8.3 | Submit date:2024/08/05
Castration Resistance  Nefh  Pir-4447944  Piwi-interacting Rnas  Prostate Cancer  
Self-Assembled Micelles Based on Ginsenoside Rg5 for the Targeted Treatment of PTX-Resistant Tumors Journal article
Gao, Feiyan, Ma, Zhongyi, Luo, Xing, Wang, Yahua, Liu, Xinlong, Tang, Mei, Chen, Junyu, Tu, Liangxing, Ouyang, Defang, Zheng, Ji, Li, Chong. Self-Assembled Micelles Based on Ginsenoside Rg5 for the Targeted Treatment of PTX-Resistant Tumors[J]. Molecular Pharmaceutics, 2024, 21(7), 3502-3512.
Authors:  Gao, Feiyan;  Ma, Zhongyi;  Luo, Xing;  Wang, Yahua;  Liu, Xinlong; et al.
Favorite | TC[WOS]:1 TC[Scopus]:1  IF:4.5/4.6 | Submit date:2024/07/04
Chemotherapy Resistance  Paclitaxel  Paclitaxel-ginsenoside Micelles  Prostate Cancer Treatment  Severe Neurotoxicity  
Stratification of risk based on immune signatures and prediction of the efficacy of immune checkpoint inhibitors in prostate cancer Journal article
Sun, Yidan, Yang, Xinyu, Ren, Shiqi, Lu, Zhichao, Liu, Zongheng, Kong, Fanming, Wang, Ziheng, Yang, Yang. Stratification of risk based on immune signatures and prediction of the efficacy of immune checkpoint inhibitors in prostate cancer[J]. Journal of Men's Health, 2023, 19(11), 16-33.
Authors:  Sun, Yidan;  Yang, Xinyu;  Ren, Shiqi;  Lu, Zhichao;  Liu, Zongheng; et al.
Favorite | TC[WOS]:4 TC[Scopus]:4  IF:0.6/0.6 | Submit date:2024/01/10
Immune Checkpoint Inhibitor  Immunotherapy  Prognostic Model  Prostate Cancer  Tumor Immune Microenvironment  
A cell-impermeable luminogenic probe for near-infrared imaging of prostate-specific membrane antigen in prostate cancer microenvironments Journal article
Yang,Xifang, Nao,Sang Cuo, Lin,Chuankai, Kong,Lingtan, Wang,Jing, Ko,Chung Nga, Liu,Jinbiao, Ma,Dik Lung, Leung,Chung Hang, Wang,Wanhe. A cell-impermeable luminogenic probe for near-infrared imaging of prostate-specific membrane antigen in prostate cancer microenvironments[J]. European Journal of Medicinal Chemistry, 2023, 259, 115659.
Authors:  Yang,Xifang;  Nao,Sang Cuo;  Lin,Chuankai;  Kong,Lingtan;  Wang,Jing; et al.
Favorite | TC[WOS]:6 TC[Scopus]:6  IF:6.0/6.1 | Submit date:2023/08/03
Nir  Luminogenic Probe  Cell Impermeability  Wash-free  Iridium(Iii) Complex  Prostate Cancer  Prostate-specific Membrane Antigen  
TRIM33 drives prostate tumor growth by stabilizing androgen receptor from Skp2-mediated degradation Journal article
Mi Chen, Shreyas Lingadahalli, Nitin Narwade, Kate Man Kei Lei, Shanshan Liu, Zuxianglan Zhao, Yimin Zheng, Qian Lu, Alexander Hin Ning Tang, Terence Chuen Wai Poon, Edwin Cheung. TRIM33 drives prostate tumor growth by stabilizing androgen receptor from Skp2-mediated degradation[J]. EMBO Reports, 2022, 23(8), e53468.
Authors:  Mi Chen;  Shreyas Lingadahalli;  Nitin Narwade;  Kate Man Kei Lei;  Shanshan Liu; et al.
Favorite | TC[WOS]:12 TC[Scopus]:13  IF:6.5/8.3 | Submit date:2022/08/05
Androgen Signaling  Prostate Cancer  Transcriptional Regulation  Trim33  
Sequential Release of Pooled siRNAs and Paclitaxel by Aptamer-Functionalized Shell-Core Nanoparticles to Overcome Paclitaxel Resistance of Prostate Cancer Journal article
Guo, Qianqian, Dong, Yang, Zhang, Yanhua, Fu, Hao, Chen, Chuanrong, Wang, Liting, Yang, Xupeng, Shen, Ming, Yu, Jian, Chen, Meiwan, Zhang, Jiali, Duan, Yourong. Sequential Release of Pooled siRNAs and Paclitaxel by Aptamer-Functionalized Shell-Core Nanoparticles to Overcome Paclitaxel Resistance of Prostate Cancer[J]. ACS Applied Materials and Interfaces, 2021, 13(12), 13990-14003.
Authors:  Guo, Qianqian;  Dong, Yang;  Zhang, Yanhua;  Fu, Hao;  Chen, Chuanrong; et al.
Favorite | TC[WOS]:31 TC[Scopus]:32  IF:8.3/8.7 | Submit date:2021/12/07
Epithelial-mesenchymal Transition  Ptx-resistant Prostate Cancer  Aptamer  Sequential Release  Combinational Therapy  
An Enhancer-Based Analysis Revealed a New Function of Androgen Receptor in Tumor Cell Immune Evasion Journal article
Wang,Yuan, Li,Jiajia, Li,Jingjing, Li,Peipei, Wang,Li, Di,Lijun. An Enhancer-Based Analysis Revealed a New Function of Androgen Receptor in Tumor Cell Immune Evasion[J]. Frontiers in Genetics, 2020, 11.
Authors:  Wang,Yuan;  Li,Jiajia;  Li,Jingjing;  Li,Peipei;  Wang,Li; et al.
Favorite | TC[WOS]:5 TC[Scopus]:6  IF:2.8/3.3 | Submit date:2021/03/04
Enhancer  Gro-seq  Prostate Cancer  Androgen Receptor  Immune Evading  
LncRNA UCA1 maintains the low-tumorigenic and nonmetastatic status by stabilizing E-cadherin in primary prostate cancer cells Journal article
Zhao,Xian, Wang,Yanli, He,Jianfeng, Deng,Rong, Huang,Xiaojun, Guo,Yanmin, Li,Lian, Xie,Ruiyu, Yu,Jianxiu. LncRNA UCA1 maintains the low-tumorigenic and nonmetastatic status by stabilizing E-cadherin in primary prostate cancer cells[J]. MOLECULAR CARCINOGENESIS, 2020, 59(10), 1174-1187.
Authors:  Zhao,Xian;  Wang,Yanli;  He,Jianfeng;  Deng,Rong;  Huang,Xiaojun; et al.
Favorite | TC[WOS]:13 TC[Scopus]:14  IF:3.0/3.8 | Submit date:2021/03/04
E-cadherin  Lncrna Uca1  Mdm2  Mir-296-3p  Primary Prostate Cancer Cells  
Cooperation of endogenous and exogenous reactive oxygen species induced by zinc peroxide nanoparticles to enhance oxidative stress-based cancer therapy Journal article
Lin, L., Wang, J., Song, J., Liu, Y., Zhu, G., Dai, Y., Shen, Z., Tian, R., Song, J., Wang, Z., Tang, W., Yu, G., Zhou, Z., Yang, Z., Huang, T., Niu, G., Yang, H., Chen, Z., Chen, X.. Cooperation of endogenous and exogenous reactive oxygen species induced by zinc peroxide nanoparticles to enhance oxidative stress-based cancer therapy[J]. Theranostics, 2019, 7200-7209.
Authors:  Lin, L.;  Wang, J.;  Song, J.;  Liu, Y.;  Zhu, G.; et al.
Favorite | TC[WOS]:125 TC[Scopus]:123  IF:12.4/12.0 | Submit date:2022/08/01
Tumor-targeted Delivery  Photodynamic Therapy  Prostate-cancer  Ros Generation  Cells  Mitochondria  Transporters  Nanocarriers  Doxorubicin  Activation  
Single cell gene co-expression network reveals fech/crot signature as a prognostic marker Journal article
Chen, Xin, Hu, Lingling, Wang, Yuan, Sun, Weijun, Yang, Chao. Single cell gene co-expression network reveals fech/crot signature as a prognostic marker[J]. Cells, 2019, 8(7).
Authors:  Chen, Xin;  Hu, Lingling;  Wang, Yuan;  Sun, Weijun;  Yang, Chao
Favorite | TC[WOS]:18 TC[Scopus]:19  IF:5.1/6.0 | Submit date:2022/05/17
Co-expression  Crot  Fech  Prognostic  Prostate Cancer  Single Cell