Search Results - "Lai, Weifeng"

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  1. 1

    Direct Reprogramming of Fibroblasts via a Chemically Induced XEN-like State by Li, Xiang, Liu, Defang, Ma, Yantao, Du, Xiaomin, Jing, Junzhan, Wang, Lipeng, Xie, Bingqing, Sun, Da, Sun, Shaoqiang, Jin, Xueqin, Zhang, Xu, Zhao, Ting, Guan, Jingyang, Yi, Zexuan, Lai, Weifeng, Zheng, Ping, Huang, Zhuo, Chang, Yanzhong, Chai, Zhen, Xu, Jun, Deng, Hongkui

    Published in Cell stem cell (03-08-2017)
    “…Direct lineage reprogramming, including with small molecules, has emerged as a promising approach for generating desired cell types. We recently found that…”
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  2. 2

    Chemically defined and xeno-free culture condition for human extended pluripotent stem cells by Liu, Bei, Chen, Shi, Xu, Yaxing, Lyu, Yulin, Wang, Jinlin, Du, Yuanyuan, Sun, Yongcheng, Liu, Heming, Zhou, Haoying, Lai, Weifeng, Xue, Anqi, Yin, Ming, Li, Cheng, Bai, Yun, Xu, Jun, Deng, Hongkui

    Published in Nature communications (21-05-2021)
    “…Extended pluripotent stem (EPS) cells have shown great applicative potentials in generating synthetic embryos, directed differentiation and disease modeling…”
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  3. 3
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    Chemical reprogramming of human somatic cells to pluripotent stem cells by Guan, Jingyang, Wang, Guan, Wang, Jinlin, Zhang, Zhengyuan, Fu, Yao, Cheng, Lin, Meng, Gaofan, Lyu, Yulin, Zhu, Jialiang, Li, Yanqin, Wang, Yanglu, Liuyang, Shijia, Liu, Bei, Yang, Zirun, He, Huanjing, Zhong, Xinxing, Chen, Qijing, Zhang, Xu, Sun, Shicheng, Lai, Weifeng, Shi, Yan, Liu, Lulu, Wang, Lipeng, Li, Cheng, Lu, Shichun, Deng, Hongkui

    Published in Nature (London) (12-05-2022)
    “…Cellular reprogramming can manipulate the identity of cells to generate the desired cell types 1 – 3 . The use of cell intrinsic components, including oocyte…”
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  5. 5

    CRISPR/Cas9-Mediated CCR5 Ablation in Human Hematopoietic Stem/Progenitor Cells Confers HIV-1 Resistance In Vivo by Xu, Lei, Yang, Huan, Gao, Yang, Chen, Zeyu, Xie, Liangfu, Liu, Yulin, Liu, Ying, Wang, Xiaobao, Li, Hanwei, Lai, Weifeng, He, Yuan, Yao, Anzhi, Ma, Liying, Shao, Yiming, Zhang, Bin, Wang, Chengyan, Chen, Hu, Deng, Hongkui

    Published in Molecular therapy (02-08-2017)
    “…Transplantation of hematopoietic stem cells (HSCs) with a naturally occurring CCR5 mutation confers a loss of detectable HIV-1 in the patient, making ablation…”
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  7. 7

    Targeted protein degradation reveals RNA Pol II heterogeneity and functional diversity by Li, Yuanjun, Huang, Jie, Zhu, Junyi, Bao, Lijun, Wang, Hui, Jiang, Yongpeng, Tian, Kai, Wang, Rui, Zheng, Haonan, Duan, WenJia, Lai, Weifeng, Yi, Xiao, Zhu, Yi, Guo, Tiannan, Ji, Xiong

    Published in Molecular cell (20-10-2022)
    “…RNA polymerase II (RNA Pol II) subunits are thought to be involved in various transcription-associated processes, but it is unclear whether they play different…”
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  8. 8
  9. 9

    Human pluripotent stem cell-derived eosinophils reveal potent cytotoxicity against solid tumors by Lai, Weifeng, Xie, Huangfan, Liu, Yuting, Zheng, Feng, Zhang, Yingfeng, Lei, Qi, Lv, Lejun, Dong, Jiebin, Song, Jian, Gao, Xue, Yin, Ming, Wang, Chengyan, Deng, Hongkui

    Published in Stem cell reports (13-07-2021)
    “…Eosinophils are attractive innate immune cells to use to potentiate T cell antitumor efficacy because they are capable of infiltrating tumors at early stages…”
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  10. 10

    Targeting JNK pathway promotes human hematopoietic stem cell expansion by Xiao, Xiong, Lai, Weifeng, Xie, Huangfan, Liu, Yang, Guo, Weijie, Liu, Yifang, Li, Yu, Li, Yuanjun, Zhang, Jingliang, Chen, Wenhan, Shi, Minhui, Shang, Lijun, Yin, Ming, Wang, Chengyan, Deng, Hongkui

    Published in Cell discovery (08-01-2019)
    “…The limited number of human hematopoietic stem cells (HSCs) has restrained their widespread clinical application. Despite great efforts in recent years, the in…”
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  11. 11

    Identification and characterization of the Oct4 extended transcriptional regulatory region in Guanzhong dairy goat by Cheng, Xiang, Meng, Shuyan, Deng, Jie, Lai, Weifeng, Wang, Huayan

    Published in Genome (01-10-2011)
    “…The octamer-binding transcription factor 4 gene (Oct4) plays a critical role in maintaining pluripotency during early mammalian embryonic development and…”
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