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Identification of a class of potent USP25/28 inhibitors with broad-spectrum anti-cancer activity
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作者 Jin Peng Kun Jiang +7 位作者 Xiao Sun Lingzhi Wu jiewei wang Xiaomei Xi Xu Tan Tingbo Liang Changheng Tan Pumin Zhang 《Signal Transduction and Targeted Therapy》 SCIE CSCD 2023年第1期3-5,共3页
Dear Editor,An increasing body of evidence suggests that USP28 could be a target for cancer treatment^(1-4).To identify its inhibitors,we screened a 100-thousand synthetic compound library and found 3 lead compounds,C... Dear Editor,An increasing body of evidence suggests that USP28 could be a target for cancer treatment^(1-4).To identify its inhibitors,we screened a 100-thousand synthetic compound library and found 3 lead compounds,CT1001-1003,that showed significant inhibitory activity(Supplementary Fig.1a).The optimization of these compounds led to CT1018,a much stronger inhibitor(Supplementary Fig.1b). 展开更多
关键词 CANCER SPECTRUM INHIBITORS
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Improved nitrogen removal in dual-contaminated surface water by photocatalysis
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作者 Yongming ZHANG Rong YAN +2 位作者 Zhen ZOU jiewei wang Bruce E.RITTMANN 《Frontiers of Environmental Science & Engineering》 SCIE EI CAS CSCD 2012年第3期428-436,共9页
River waters in China have dual contamination by nutrients and recalcitrant organic compounds. In principle, the organic compotmds could be used to drive denitrification of nitrate, thus arresting eutrophication poten... River waters in China have dual contamination by nutrients and recalcitrant organic compounds. In principle, the organic compotmds could be used to drive denitrification of nitrate, thus arresting eutrophication potential, if the recalcitrant organics could be made bioavailable. This study investigated the potential to make the recalcitrant organics bioavailable through photocatalysis. Batch denitrification tests in a biofilm reactor demonstrated that dual-contaminated river water was short of available electron donor, which resulted in low total nitrogen (TN) removal by denitrification. However, the denitrification rate was increased signifi- cantly by adding glucose or by making the organic matters of the river water more bioavailable through photocata- lysis. Photocatalysis for 15 min increased the Chemical Oxygen Demand (COD) of the river water from 53 to 84 mg. L-1 and led to a 4-fold increase in TN removal. The increase in TN removal gave the same effect as adding 92 mg.L 1 of glucose. During the photocatalysis experi- ments, the COD increased because photocatalysis trans- formed organic molecules from those that are resistant to dichromate oxidation in the COD test to those that can be oxidized by dichromate. This phenomenon was verified by testing photocatalysis of pyridine added to the river water. These findings point to the potential for N removal via denitrification after photocatalysis, and they also suggest that the rivers in China may be far more polluted than indicated by COD assays. 展开更多
关键词 dual contamination EUTROPHICATION PHOTOCATALYSIS REMEDIATION surface water
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