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Awesome-Reproducible-Analysis-of-Single-Cell-Papers

A curated list of awesome reproducible papers in single-cell omics.

The listed papers provide the code necessary for reproducing the figures or results.

Table of Contents

Guidelines for Single-Cell Analysis

  1. [2023 Nature Reviews Genetics]Best practices for single-cell analysis across modalities[paper][code]

scRNA-seq

  1. [2024 Nature]Universal recording of immune cell interactions in vivo[paper][code]
  2. [2024 Nature]A single-cell time-lapse of mouse prenatal development from gastrula to birth[paper][code]
  3. [2024 Nature Cell Biology]Multimodal and spatially resolved profiling identifies distinct patterns of T cell infiltration in nodal B cell lymphoma entities[paper][code]
  4. [2023 Nature Medicine]An integrated cell atlas of the lung in health and disease[paper][code]
  5. [2023 Nature Communications]Genomic and microenvironmental heterogeneity shaping epithelial-to-mesenchymal trajectories in cancer[paper][code]
  6. [2023 Cancer Cell]Tumor monocyte content predicts immunochemotherapy outcomes in esophageal adenocarcinoma[paper][code]
  7. [2022 Molecular Neurodegeneration]Guidelines for bioinformatics of single-cell sequencing data analysis in Alzheimer’s disease: review, recommendation, implementation and application[paper][code]
  8. [2022 Nature Cancer]Breast cancer prevention by short-term inhibition of TGFβ signaling[paper][code]
  9. [2022 Nature Cell Biology]Single-cell analysis of endometriosis reveals a coordinated transcriptional programme driving immunotolerance and angiogenesis across eutopic and ectopic tissues[paper][code]
  10. [2022 Nature Neuroscience]Dissection of artifactual and confounding glial signatures by single-cell sequencing of mouse and human brain[paper][code]
  11. [2021 Nature]Global absence and targeting of protective immune states in severe COVID-19[paper][code]
  12. [2021 Nature Communications]Single-cell transcriptomics captures features of human midbrain development and dopamine neuron diversity in brain organoids[paper][code]

scATAC-seq

  1. [2024 Cancer Discovery]Single-Cell Chromatin Accessibility Analysis Reveals the Epigenetic Basis and Signature Transcription Factors for the Molecular Subtypes of Colorectal Cancers[paper][code]
  2. [2023 Nature]Molecular features driving cellular complexity of human brain evolution[paper][code]
  3. [2023 Nature]Single-cell analysis of chromatin accessibility in the adult mouse brain[paper][code]
  4. [2023 Narure]Epigenetic regulation during cancer transitions across 11 tumour types[paper][code]
  5. [2023 Nature]Organization of the human intestine at single-cell resolution[paper][code]
  6. [2023 biorxiv]Transcription factor stoichiometry, motif affinity and syntax regulate single-cell chromatin dynamics during fibroblast reprogramming to pluripotency[paper][code]
  7. [2023 Nature Biotechnology]SEACells infers transcriptional and epigenomic cellular states from single-cell genomics data[paper][code]
  8. [2023 eLife]The single-cell chromatin accessibility landscape in mouse perinatal testis development[paper][code]
  9. [2022 Nature Biotechnology]Variant to function mapping at single-cell resolution through network propagation[paper][code]
  10. [2022 Nature Communications]Single-cell chromatin profiling of the primitive gut tube reveals regulatory dynamics underlying lineage fate decisions[paper][code]
  11. [2021 Science]Developmental and evolutionary dynamics of cis-regulatory elements in mouse cerebellar cells[paper][code]
  12. [2021 Nature Biotechnology]Integrative single-cell analysis of allele-specific copy number alterations and chromatin accessibility in cancer[paper][code]
  13. [2021 Nature Communications]High-throughput single-cell chromatin accessibility CRISPR screens enable unbiased identification of regulatory networks in cancer[paper][code]

scHi-C

  1. Notes on single-cell Hi-C technologies, tools, and data[code]
  2. [2023 Nature Communications]Single cell Hi-C identifies plastic chromosome conformations underlying the gastrulation enhancer landscape[paper][code]

Spatial Transcriptome

  1. [2023 Science Advances]Single-cell and spatial transcriptome analysis reveals the cellular heterogeneity of liver metastatic colorectal cancer[paper][code]
  2. [2023 Nature Genetics]CellCharter reveals spatial cell niches associated with tissue remodeling and cell plasticity[paper][code]
  3. [2023 Cancer Research]Spatial Transcriptomics Depict Ligand–Receptor Cross-talk Heterogeneity at the Tumor-Stroma Interface in Long-Term Ovarian Cancer Survivors[paper][code]
  4. [2022 Nature]Spatial genomics maps the structure, nature and evolution of cancer clones[paper][code]
  5. [2022 Nature Methods]Squidpy: a scalable framework for spatial omics analysis[paper][code]
  6. [2022 bioRxiv]Harmonized single-cell landscape, intercellular crosstalk and tumor architecture of glioblastoma[paper][code]
  7. [2021 Nature Neuroscience]Transcriptome-scale spatial gene expression in the human dorsolateral prefrontal cortex[paper][code]

Multiomics

  1. [2024 Nature Genetics]Multi-omic profiling of clear cell renal cell carcinoma identifies metabolic reprogramming associated with disease progression[paper][code]
  2. [2023 Nature Biotechnology]Multimodal spatiotemporal phenotyping of human retinal organoid development[paper][code]
  3. [2023 Nature Genetics]Integrating genetics with single-cell multiomic measurements across disease states identifies mechanisms of beta cell dysfunction in type 2 diabetes[paper][code]
  4. [2023 Nature Genetics]Integrated single-cell chromatin and transcriptomic analyses of human scalp identify gene-regulatory programs and critical cell types for hair and skin diseases[paper][code]
  5. [2023 Nature Communications]Deciphering early human pancreas development at the single-cell level[paper][code]
  6. [2023 Nature Communications]Single-cell transcriptomics and epigenomics unravel the role of monocytes in neuroblastoma bone marrow metastasis[paper][code]
  7. [2022 Nature Genetics]Single-cell analyses define a continuum of cell state and composition changes in the malignant transformation of polyps to colorectal cancer[paper][code]
  8. [2022 Nature Genetics]K27M in canonical and noncanonical H3 variants occurs in distinct oligodendroglial cell lineages in brain midline gliomas[paper][code]
  9. [2022 Nature Neuroscience]Multimodal profiling of the transcriptional regulatory landscape of the developing mouse cortex identifies Neurog2 as a key epigenome remodeler[paper][code]
  10. [2022 Cell Discovery]Single-cell multiomics analysis reveals regulatory programs in clear cell renal cell carcinoma[paper][code]
  11. [2021 Molecular Cell]A multi-omic single-cell landscape of human gynecologic malignancies[paper][code]
  12. [2019 Nature Biotechnology]Single-cell multiomic analysis identifies regulatory programs in mixed-phenotype acute leukemia[paper][code]

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