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  • × Ying Wang
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Scientific Reports,2017年

Li Li, Jianhua Wang, Riliang Gu, Tinglu Fan, Ying Wang, Xiaolin Liang, Yanbo Wang

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Scientific Reports,2017年

Jianglin Tan, Jun Wu, Menglong Liu, Rui Xu, Weifeng He, Ying Wang, Gaoxing Luo, Malcolm Xing, Yuzhen Wang

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Scientific Reports,2017年

Qinying Wang, Xiaohang Li, Gang Pei, Tingting Hu, Jing Lu, Ying Wang, Jian Zhao

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Scientific Reports,2017年

Feng Yang, Fenglin Lv, Quanming Zou, Haiming Jing, Liuyang Yang, Hao Zeng, Jiang Gu, Ying Wang, Chen Gao, Jinyong Zhang

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Scientific Reports,2017年

Sang-Choon Lee, Kyunghee Kim, Jee Young Park, Van Binh Nguyen, Tae-Jin Yang, Ying Wang, Jingzhou Dong

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Scientific Reports,2017年

Wei Zhang, Yong Jin, Lihua Zhao, Lining Zhang, Rongfeng Li, Guan Wang, Qiang Xiong, Haiyuan Yang, Ying Wang, Yifan Dai, Lisha Mou

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Abstract Complement protein C3 is the pivotal component of the complement system. Previous studies have demonstrated that C3 has implications in various human diseases and exerts profound functions under certain conditions. However, the delineation of pathological and physiological roles of C3 has been hampered by the insufficiency of suitable animal models. In the present study, we applied the clustered regularly interspaced short palindromic repeat (CRISPR)/CRISPR-associated (Cas) system to target the C3 gene in porcine fetal fibroblasts. Our results indicated that CRISPR/Cas9 targeting efficiency was as high as 84.7%, and the biallelic mutation efficiency reached at 45.7%. The biallelic modified colonies were used as donor for somatic cell nuclear transfer (SCNT) technology to generate C3 targeted piglets. A total of 19 C3 knockout (KO) piglets were produced and their plasma C3 protein was undetectable by western blot analysis and ELISA. The hemolytic complement activity and complement-dependent cytotoxicity assay further confirmed that C3 was disrupted in these piglets. These C3 KO pigs could be utilized as a valuable large animal model for the elucidation of the roles of C3.