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7篇 您的检索式:作者名="Lingwen Zeng"
    题名 作者 年代 出处 被引量
1BMPs functionally replace KLf4, and support efficient reprogramming of mouse fibroblasts by Oct4 alone显示文摘由定义因素的导致的 pluripotent 干细胞的产生成为了一个有用模型调查 reprogramming 和房间命运决心的机制。然而,基于因素的 reprogramming 的精确机制仍然保持不清楚。这里,我们证明 Klf4 主要在 reprogramming 的起始的阶段行动开始 mesenchymal-to-epithelial 转变并且能是机能上地由骨头代替了形态基因的蛋白质(BMP ) 。BMP 增加了老鼠的 Oct4/Sox2-mediated reprogramming 的效率胚胎的成纤维细胞(MEF ) 到 ~1% 。BMP 也支持了 MEF 和尾巴的单个因素的基于 Oct4 的 reprogramming 胫骨的成纤维细胞。我们的研究在 reprogramming 澄清 Klf4 的贡献并且在区分的房间作为 pluripotency 的单个 setter 建立 Oct4。Jiekai Chen Jing Liu Jiaqi Yang You Chen Jing Chen Su Ni Hong Song Lingwen Zeng Ke Ding Duanqing Pei 2011Cell Research2011,21,1:26
2Antibacterial applications of graphene oxides: structure-activity relationships, molecular initiating events and biosafety显示文摘Bacterial infections may lead to diverse acute or chronic diseases(e.g., inflammation, sepsis and cancer).New antibiotics against bacteria are rarely discovered in recent years, which necessitates the exploration of new antibacterial agents. Engineered nanomaterials(ENMs) have been extensively studied for antibacterial use because of their long lasting killing effects in wide spectra of bacteria. Graphene oxide(GO) is one of the most widely studied ENMs and exhibit strong bactericidal effects. The physicochemical properties of GO play important roles in bacterial killing by triggering a cascade of toxic events. Many studies have explored the signaling pathways of GO in bacteria. Although molecular initiating events(MIEs) of GO in bacteria dominate its killing efficiency as well as toxicity mechanisms, they have been rarely reviewed. In this report, we discussed the structure–activity relationships(SARs) involved in GOinduced bacterial killing and the MIEs including redox reaction with biomolecules, mechanical destruction of membranes and catalysis of extracellular metabolites. Furthermore, we summarized the clinical or commercial applications of GO-based antibacterial products and discussed their biosafety in mammal.Finally, we reviewed the remaining challenges in GO for antibacterial applications, which may offer new insights for the development of nano antibacterial studies.Huizhen Zheng Ronglin Ma Meng Gao Xin Tian Yong-Qiang Li Lingwen Zeng Ruibin Li 2018Science Bulletin2018,63,2:8
3The Histone Demethylases Jhdm1a/1b Enhance Somatic Cell Reprogramming in a Vitamin-C-Dependent Manner显示文摘Tao Wang Keshi Chen Xiaoming Zeng Jianguo Yang Yun Wu Xi Shi Baoming Qin Lingwen Zeng Miguel Angel Esteban Guangjin Pan Duanqing Pei 2011Cell Stem Cell2011,,6:1
4The Histone Demethylases Jhdm1a/1b Enhance Somatic Cell Reprogramming in a Vitamin-C-Dependent Manner显示文摘Tao Wang Keshi Chen Xiaoming Zeng Jianguo Yang Yun Wu Xi Shi Baoming Qin Lingwen Zeng Miguel Angel Esteban Guangjin Pan Duanqing Pei 2011Cell Stem Cell2011,,:1
5The Histone Demethylases Jhdm1a/1b Enhance Somatic Cell Reprogramming in a Vitamin-C-Dependent Manner显示文摘Tao Wang Keshi Chen Xiaoming Zeng Jianguo Yang Yun Wu Xi Shi Baoming Qin Lingwen Zeng Miguel Angel Esteban Guangjin Pan Duanqing Pei 2011Cell Stem Cell2011,,6:1
6A Mesenchymal-to-Epithelial Transition Initiates and Is Required for the Nuclear Reprogramming of Mouse Fibroblasts显示文摘Ronghui Li Jialiang Liang Su Ni Ting Zhou Xiaobing Qing Huapeng Li Wenzhi He Jiekai Chen Feng Li Qiang Zhuang Baoming Qin Jianyong Xu Wen Li Jiayin Yang Yi Gan Dajiang Qin Shipeng Feng Hong Song Dongshan Yang Biliang Zhang Lingwen Zeng Liangxue Lai Miguel 2010Cell Stem Cell2010,,1:1
7A Mesenchymal-to-Epithelial Transition Initiates and Is Required for the Nuclear Reprogramming of Mouse Fibroblasts显示文摘Ronghui Li Jialiang Liang Su Ni Ting Zhou Xiaobing Qing Huapeng Li Wenzhi He Jiekai Chen Feng Li Qiang Zhuang Baoming Qin Jianyong Xu Wen Li Jiayin Yang Yi Gan Dajiang Qin Shipeng Feng Hong Song Dongshan Yang Biliang Zhang Lingwen Zeng Liangxue Lai Miguel 2010Cell Stem Cell2010,,1:1
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