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  1. 1121

    Incorporating a guanidine-modified cytosine base into triplex-forming PNAs for the recognition of a C-G pyrimidine–purine inversion site of an RNA duplex by Toh, Desiree-Faye Kaixin, Devi, Gitali, Patil, Kiran M., Qu, Qiuyu, Maraswami, Manikantha, Xiao, Yunyun, Loh, Teck Peng, Zhao, Yanli, Chen, Gang

    Published 2017
    “…Selective binding towards an RNA duplex over a single-stranded RNA can be rationalized by the fact that alkylation of the amine of a 5-methyl C base blocks the Watson–Crick edge. PNAs incorporating multiple guanidine-modified cytosine residues are able to enter HeLa cells without any transfection agent.…”
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    Journal Article
  2. 1122
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  5. 1125

    Luteolin restricts dengue virus replication through inhibition of the proprotein convertase furin by Peng, Minhua, Watanabe, Satoru, Chan, Kitti Wing Ki, He, Qiuyan, Zhao, Ya, Zhang, Zhongde, Lai, Xiaoping, Luo, Dahai, Vasudevan, Subhash G., Li, Geng

    Published 2017
    “…In addition, ADE-mediated dengue virus infection of human cell lines and primary PBMCs was inhibited. In a time-of-drug-addition study, luteolin was found to reduce infectious virus particle formation, but not viral RNA synthesis, in Huh-7 cells. …”
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    Journal Article
  6. 1126
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  11. 1131

    Synthesis of porous, hollow metal MCO3 (M=Mn, Co, Ca) microstructures and adsorption properties thereof by Cai, Ren, Du, Yaping, Peng, Shengjie, Bi, Hengchang, Zhang, Wenyu, Yang, Dan, Chen, Jing, Lim, Tuti Mariana, Zhang, Hua, Cao, Y. Charles, Yan, Qingyu

    Published 2014
    “…For example, the porous, hollow MnCO3 microcubes show larger Brunauer–Emmett–Teller (BET) surface areas of 359.5 m2 g−1, which is much larger than that of solid MnCO3 microcubics (i.e., 12.03 m2 g−1). …”
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    Journal Article
  12. 1132
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  16. 1136
  17. 1137
  18. 1138

    Reversible-hydrogen-transfer-mediated anomerization of azaheterocyclyl 2-deoxy-C-glycosides and mechanistic studies by Mu, Qiu-Qi, Guo, Aoxin, Cai, Xin, Qin, Yang-Yang, Fang, Xin-Yu, Peng, Li-Cong, Feng, Chao, Xu, Li-Wen, Xiao, Xiong, Liu, Xue-Wei

    Published 2023
    “…The anomerization reaction plausibly proceeds through the pathway involving the activation of the C(sp3)-H bond mediated by the iridium catalyst and reversible hydrogen transfer, rather than the classical anomerization mechanisms involving the endocyclic cleavage of the C1-O5 bond or exocyclic cleavage of the glycosidic bond.…”
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    Journal Article
  19. 1139
  20. 1140