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Haide Chen

Publications

  • Mapping a mammalian adult adrenal gland hierarchy across species by microwell-seq
  • High-throughput Microwell-seq 2.0 profiles massively multiplexed chemical perturbation
  • Cell landscape of larval and adult Xenopus laevis at single-cell resolution
  • Mapping the Mouse Cell Atlas by Microwell-Seq
  • Construction of the axolotl cell landscape using combinatorial hybridization sequencing at single-cell resolution
  • Single-cell qPCR facilitates the optimization of hematopoietic differentiation in hPSCs/OP9 coculture system
  • Cell landscape of larval and adult Xenopus laevis at single-cell resolution
  • Construction of a human cell landscape at single-cell level
  • Erratum: Mapping the Mouse Cell Atlas by Microwell-Seq (Cell (2018) 172(5) (1091–1107.e17)(S0092867418301168)(10.1016/j.cell.2018.02.001))
  • Functional disruption of human leukocyte antigen II in human embryonic stem cell
  • The effect of the number of transferred embryos, the interval between nuclear transfer and embryo transfer, and the transfer pattern on pig cloning efficiency
  • scMCA: A tool to define mouse cell types based on single-cell digital expression
  • Characterization of the Zebrafish Cell Landscape at Single-Cell Resolution
  • Generation of GGTA1 biallelic knockout pigs via zinc-finger nucleases and somatic cell nuclear transfer
  • Author Correction: Systematic identification of cell-fate regulatory programs using a single-cell atlas of mouse development (Nature Genetics, (2022), 54, 7, (1051-1061), 10.1038/s41588-022-01118-8)
  • The single-cell transcriptional landscape of the axolotl
  • Effect of roscovitine pretreatment for increased utilization of small follicle-derived oocytes on developmental competence of somatic cell nuclear transfer embryos in pigs
  • Revolutionizing immunology with single-cell RNA sequencing
  • Publisher Correction: Cell landscape of larval and adult Xenopus laevis at single-cell resolution (Nature Communications, (2022), 13, 1, (4306), 10.1038/s41467-022-31949-2)
  • Systematic identification of cell-fate regulatory programs using a single-cell atlas of mouse development
  • Mapping human pluripotent stem cell differentiation pathways using high throughput single-cell RNA-sequencing
  • Inferring predictive genetic models and regulatory elements by deep learning of cross-species single-cell gene expression landscapes
  • Highly Efficient Derivation of Skeletal Myotubes from Human Embryonic Stem Cells
  • Dietary intervention preserves β cell function in mice through CTCF-mediated transcriptional reprogramming
  • Generating hESCs with reduced immunogenicity by disrupting TAP1 or TAPBP
  • Systematic identification of cell fate regulatory programs using a single-cell atlas of mouse development
  • Mapping Human Hematopoietic Hierarchy at Single Cell Resolution by Microwell-seq
  • A single-cell survey of cellular hierarchy in acute myeloid leukemia
  • Generating hypoimmunogenic human embryonic stem cells by the disruption of beta 2-microglobulin
  • P53 isoform Δ133p53 promotes efficiency of induced pluripotent stem cells and ensures genomic integrity during reprogramming
  • Accurate estimation of cell-type composition from gene expression data
  • Maintenance of human haematopoietic stem and progenitor cells in vitro using a chemical cocktail
  • Deep learning of cross-species single-cell landscapes identifies conserved regulatory programs underlying cell types
  • Tracing cell-type evolution by cross-species comparison of cell atlases
  • Comparative transcriptomic analysis of hematopoietic system between human and mouse by Microwell-seq

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