李鑫
xinli@ioz.ac.cn
中文, 英语
北京
中国科学院大学
Medical School
  • 2011-08--2015-12 博士: 东北农业大学
  • 2007-09--2011-06 学士: 东北农业大学
  • 2018-08~2021-11 - 麻省理工学院 怀特海德研究所 - 博士后
  • 2016-06~2018-08 - 加州大学 圣地亚哥分校 - 博士后
  • 全国妇幼健康科技奖 (2019): 一等奖, 国家级
  • 秦鹏春基金科技突出贡献奖 (2014): 特等奖, 其他
人工智能生物学
干细胞与发育
衰老与癌症转移
  • The Aging Biomarker Consortium represents a new era for aging research in China, NATURE MEDICINE, 2023
  • Biomarkers of aging, SCIENCE CHINA-LIFE SCIENCES, 2023
  • Endothelial Arid1a deletion disrupts the balance among angiogenesis, neurogenesis and gliogenesis in the developing brain, CELL PROLIFERATION, 2023
  • Lipid metabolism dysfunction induced by age-dependent DNA methylation accelerates aging, SIGNAL TRANSDUCTION AND TARGETED THERAPY, 2022
  • Genome-wide CRISPR screen identifies PRC2 and KMT2D-COMPASS as regulators of distinct EMT trajectories that contribute differentially to metastasis, NATURE CELL BIOLOGY, 2022
  • Database Resources of the National Genomics Data Center, China National Center for Bioinformation in 2021, NUCLEIC ACIDS RESEARCH, 2022
  • Asymmetric Expression of LincGET Biases Cell Fate in Two-Cell Mouse Embryos, CELL, 2018
  • Dnmt2 mediates intergenerational transmission of paternally acquired metabolic disorders through sperm small non-coding RNAs, NATURE CELL BIOLOGY, 2018
  • Generation of Bimaternal and Bipaternal Mice from Hypomethylated Haploid ESCs with Imprinting Region Deletions, CELL STEM CELL, 2018
  • Tissue repair and regeneration with endogenous stem cells, NATURE REVIEWS MATERIALS, 2018
  • 体细胞重编程研究进展, 中国科学:生命科学, 2016
  • Sperm tsRNAs contribute to intergenerational inheritance of an acquired metabolic disorder, SCIENCE, 2016
  • Generation and Application of Mouse-Rat Allodiploid Embryonic Stem Cells, CELL, 2016
  • Co-Participation of Paternal and Maternal Genomes Before the Blastocyst Stage Is Not Required for Full-Term Development of Mouse Embryos, JOURNAL OF MOLECULAR CELL BIOLOGY, 2015
  • Rapidly generating knockout mice from H19-Igf2 engineered androgenetic haploid embryonic stem cells, CELL DISCOVERY, 2015
人工智能 生物学 干细胞 发育 衰老 癌症 转移 再生 细胞命运 微环境

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