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A TNFR2 antibody by countering immunosuppression cooperates with HMGN1 and R848 immune stimulants to inhibit murine colon cancer Journal article
International Immunopharmacology, 2021,Volume: 101
Authors:  Jiang, Mengmeng;  Liu, Jia;  Yang, De;  Tross, Debra;  Li, Ping;  Chen, Fengyang;  Alam, Md Masud;  Faustman, Denise L.;  Oppenheim, Joost J.;  Chen, Xin
Favorite |  | TC[WOS]:0 TC[Scopus]:0 | Submit date:2021/12/08
Antitumor  cd4+foxp3+ Regulatory t Cells (Tregs)  Hmgn1 And R848  Immunotherapy  Tnfr2  
Metal-Phenolic Network-Enabled Lactic Acid Consumption Reverses Immunosuppressive Tumor Microenvironment for Sonodynamic Therapy Journal article
ACS Nano, 2021,Volume: 15,Issue: 10,Page: 16934-16945
Authors:  Zhang, Zhan;  Li, Bei;  Xie, Lisi;  Sang, Wei;  Tian, Hao;  Li, Jie;  Wang, Guohao;  Dai, Yunlu
Favorite |  | TC[WOS]:1 TC[Scopus]:1 | Submit date:2021/12/08
Antitumor Therapy  Lactic Acid  Metal-phenolic Network  Sonodynamic Therapy  Tumor Microenvironment  
APASL clinical practice guideline on hepatitis B reactivation related to the use of immunosuppressive therapy Journal article
Hepatology International, 2021,Volume: 15,Issue: 5,Page: 1031-1048
Authors:  Lau, George;  Yu, Ming Lung;  Wong, Grace;  Thompson, Alexander;  Ghazinian, Hasmik;  Hou, Jin Lin;  Piratvisuth, Teerha;  Jia, Ji Dong;  Mizokami, Masashi;  Cheng, Gregory;  Chen, Guo Feng;  Liu, Zhen Wen;  Baatarkhuu, Oidov;  Cheng, Ann Lii;  Ng, Woon Leung;  Lau, Patrick;  Mok, Tony;  Chang, Jer Ming;  Hamid, Saeed;  Dokmeci, A. Kadir;  Gani, Rino A.;  Payawal, Diana A.;  Chow, Pierce;  Park, Joong Won;  Strasser, Simone I.;  Mohamed, Rosmawaiti;  Win, Khin Maung;  Tawesak, Tanwandee;  Sarin, Shiv Kumar;  Omata, Masao
Favorite |  | TC[WOS]:3 TC[Scopus]:4 | Submit date:2021/12/08
APASL  Guideline  Hepatitis B reactivation  Immunosuppressive therapy  
Remodeling of Tumor Microenvironment by Tumor-Targeting Nanozymes Enhances Immune Activation of CAR T Cells for Combination Therapy Journal article
Small, 2021,Volume: 17,Issue: 43
Authors:  Zhu, Lipeng;  Liu, Jie;  Zhou, Guangyu;  Liu, Tzu Ming;  Dai, Yunlu;  Nie, Guangjun;  Zhao, Qi
Favorite |  | TC[WOS]:0 TC[Scopus]:0 | Submit date:2021/12/08
B7-H3 immune checkpoint  chimeric antigen receptor T cell  immunotherapy  nanozyme  photothermal-nanocatalytic effect  
Naturally occurring coumestans from plants, their biological activities and therapeutic effects on human diseases Journal article
Pharmacological Research, 2021,Volume: 169
Authors:  Tu, Yanbei;  Yang, Ying;  Li, Yanfang;  He, Chengwei
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Bone diseases  Coumestan  Mechanisms  Natural products  Organ damages  Pharmacological activity  
Specific NLRP3 inflammasome inhibitors: promising therapeutic agents for inflammatory diseases Journal article
Drug Discovery Today, 2021,Volume: 26,Issue: 6,Page: 1394-1408
Authors:  Vong, Chi Teng;  Tseng, Hisa Hui Ling;  Yao, Peifen;  Yu, Hua;  Wang, Shengpeng;  Zhong, Zhangfeng;  Wang, Yitao
Favorite |  | TC[WOS]:4 TC[Scopus]:4 | Submit date:2021/09/13
Acid-activatible micelleplex delivering siRNA-PD-L1 for improved cancer immunotherapy of CDK4/6 inhibition Journal article
Chinese Chemical Letters, 2021,Volume: 32,Issue: 6,Page: 1929-1936
Authors:  Gao, Jing;  Zhang, Hanwu;  Zhou, Fengqi;  Hou, Bo;  Chen, Meiwan;  Xie, Zhigang;  Yu, Haijun
Favorite |  | TC[WOS]:0 TC[Scopus]:3 | Submit date:2021/12/08
Acid-activatible micelleplex  Cancer immunotherapy  CDK4/6 inhibitor  PD-L1 knockdown  siRNA delivery  
Charge convertible biomimetic micellar nanoparticles for enhanced melanoma-targeted therapy through tumor cells and tumor-associated macrophages dual chemotherapy with IDO immunotherapy Journal article
Chemical Engineering Journal, 2021,Volume: 412
Authors:  Luo, Kaipei;  Lian, Yunfei;  Zhang, Min;  Yu, Hua;  Wang, Guangji;  Li, Juan
Favorite |  | TC[WOS]:2 TC[Scopus]:4 | Submit date:2021/12/07
Charge convertible biomimetic nanoparticle  Combined chemoimmunotherapy  IDO inhibition  Immunogenic cell death  M2-type tumor-associated macrophages  
Burst release of encapsulated annexin A5 in tumours boosts cytotoxic T-cell responses by blocking the phagocytosis of apoptotic cells Journal article
Nature Biomedical Engineering, 2020,Volume: 4,Issue: 11,Page: 1102-1116
Authors:  Li,Ling;  Zou,Jianhua;  Dai,Yunlu;  Fan,Wenpei;  Niu,Gang;  Yang,Zhen;  Chen,Xiaoyuan
Favorite |  | TC[WOS]:20 TC[Scopus]:23 | Submit date:2021/03/04
Nanomedicines modulating tumor immunosuppressive cells to enhance cancer immunotherapy Journal article
Acta Pharmaceutica Sinica B, 2020,Volume: 10,Issue: 11,Page: 2054-2074
Authors:  Zhu,Yuefei;  Yu,Xiangrong;  Thamphiwatana,Soracha D.;  Zheng,Ying;  Pang,Zhiqing
Favorite |  | TC[WOS]:16 TC[Scopus]:17 | Submit date:2021/03/01
Cancer Immunotherapy  Drug Delivery  Nanomedicine  Tumor Immunosuppressive Microenvironment