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Chao Qu

Showing results (271-280 of 282) with videos related to

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Scientific Reports|January 21, 2016
Whole-exome Sequencing Analysis Identifies Mutations in the EYS Gene in Retinitis Pigmentosa in the Indian PopulationYanan Di, Lulin Huang, Periasamy Sundaresan, et al.
Cell Death and Differentiation|May 12, 2018
Trabid inhibits hepatocellular carcinoma growth and metastasis by cleaving RNF8-induced K63 ubiquitination of Twist1Yuekun Zhu, Chao Qu, Xuehui Hong, et al.
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|December 6, 2014
NLRP3 mediates osteolysis through inflammation-dependent and -independent mechanismsChao Qu, Sheri L Bonar, Cynthia L Hickman-Brecks, et al.
The Journal of Experimental Medicine|May 27, 2020
Targeting CLK3 inhibits the progression of cholangiocarcinoma by reprogramming nucleotide metabolismQingxin Zhou, Meihua Lin, Xing Feng, et al.
Breast Cancer Research : BCR|June 16, 2025
Discovery and validation of cell-free DNA methylation markers for specific diagnosis, differentiation from benign tumors, and prognosis of breast cancerLijing Gao, Lei Zhang, Jinyin Liu, et al.
Science China. Life Sciences|September 17, 2022
Deep Sc-RNA sequencing decoding the molecular dynamic architecture of the human retinaLulin Huang, Runze Li, Lin Ye, et al.
Nature Biotechnology|April 24, 2024
Author Correction: Adenine transversion editors enable precise, efficient A•T-to-C•G base editing in mammalian cells and embryosLiang Chen, Mengjia Hong, Changming Luan, et al.
Journal of Hepatology|January 19, 2016
Salt-inducible Kinase (SIK1) regulates HCC progression and WNT/β-catenin activationChao Qu, De He, Xiaoling Lu, et al.
Nature Biotechnology|June 15, 2023
Adenine transversion editors enable precise, efficient A•T-to-C•G base editing in mammalian cells and embryosLiang Chen, Mengjia Hong, Changming Luan, et al.
Cell Research|April 22, 2017
CRISPR-Cas9-mediated genome editing in one blastomere of two-cell embryos reveals a novel Tet3 function in regulating neocortical developmentLingbo Wang, Min-Yin Li, Chao Qu, et al.
Pageof 29

Showing results (271-280 of 282) with videos related to

Sort By:
Pageof 29
Scientific Reports|January 21, 2016
Whole-exome Sequencing Analysis Identifies Mutations in the EYS Gene in Retinitis Pigmentosa in the Indian PopulationYanan Di, Lulin Huang, Periasamy Sundaresan, et al.
Cell Death and Differentiation|May 12, 2018
Trabid inhibits hepatocellular carcinoma growth and metastasis by cleaving RNF8-induced K63 ubiquitination of Twist1Yuekun Zhu, Chao Qu, Xuehui Hong, et al.
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|December 6, 2014
NLRP3 mediates osteolysis through inflammation-dependent and -independent mechanismsChao Qu, Sheri L Bonar, Cynthia L Hickman-Brecks, et al.
The Journal of Experimental Medicine|May 27, 2020
Targeting CLK3 inhibits the progression of cholangiocarcinoma by reprogramming nucleotide metabolismQingxin Zhou, Meihua Lin, Xing Feng, et al.
Breast Cancer Research : BCR|June 16, 2025
Discovery and validation of cell-free DNA methylation markers for specific diagnosis, differentiation from benign tumors, and prognosis of breast cancerLijing Gao, Lei Zhang, Jinyin Liu, et al.
Science China. Life Sciences|September 17, 2022
Deep Sc-RNA sequencing decoding the molecular dynamic architecture of the human retinaLulin Huang, Runze Li, Lin Ye, et al.
Nature Biotechnology|April 24, 2024
Author Correction: Adenine transversion editors enable precise, efficient A•T-to-C•G base editing in mammalian cells and embryosLiang Chen, Mengjia Hong, Changming Luan, et al.
Journal of Hepatology|January 19, 2016
Salt-inducible Kinase (SIK1) regulates HCC progression and WNT/β-catenin activationChao Qu, De He, Xiaoling Lu, et al.
Nature Biotechnology|June 15, 2023
Adenine transversion editors enable precise, efficient A•T-to-C•G base editing in mammalian cells and embryosLiang Chen, Mengjia Hong, Changming Luan, et al.
Cell Research|April 22, 2017
CRISPR-Cas9-mediated genome editing in one blastomere of two-cell embryos reveals a novel Tet3 function in regulating neocortical developmentLingbo Wang, Min-Yin Li, Chao Qu, et al.
Pageof 29