Double knock-in pig models with elements of binary Tet-On and phiC31 integrase systems for controllable and switchable gene expression
Qin Jin(Chinese Academy of Medical Sciences & Peking Union Medical College), Kepin Wang(Guangzhou Institutes of Biomedicine and Health), Chengdan Lai(Chinese Academy of Sciences), Hui Shi(Second Military Medical University), Xiaoyi Liu(ShanghaiTech University), Zhen Ouyang(Jiangsu University), Meng Lian(Guangzhou Institutes of Biomedicine and Health), Longquan Quan(Chinese Academy of Sciences), Zhaoming Liu(Chinese Academy of Sciences), Xiaoyu Yang(University of California, San Francisco), Jingke Xie(Chinese Academy of Sciences), Jiaowei Wang(Chinese Academy of Sciences), Weikai Ge(Guangzhou Institutes of Biomedicine and Health), Fangbing Chen(Chinese Academy of Sciences), Shixue Gou(Chinese Academy of Sciences), Nan Li(National University of Defense Technology), Yanhui Liang(Changchun Institute of Applied Chemistry), Han Wu(Chinese Academy of Sciences), Jiayuan Huang(Sun Yat-sen University), Yu Zhao(Chinese Academy of Sciences), Zhenpeng Zhuang(Guangzhou Institutes of Biomedicine and Health), Liangxue Lai(Jilin University), Lei Li(Yanshan University), Yinghua Ye(Chinese Academy of Sciences), Quanjun Zhang(Chinese Academy of Sciences), Xiaozhu Zhao(Chinese Academy of Sciences)
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