Haiming Wei

Active 2002–2025

126
Papers
18,278
Citations
73
h-index
120
i10-index

Citations

Citations per year for Haiming Wei1994: 2 citations2002: 1 citations2003: 1 citations2004: 5 citations2005: 3 citations2006: 20 citations2007: 17 citations2008: 39 citations2009: 32 citations2010: 33 citations2011: 32 citations2012: 49 citations2013: 60 citations2014: 82 citations2015: 95 citations2016: 104 citations2017: 120 citations2018: 105 citations2019: 526 citations2020: 2,049 citations2021: 1,520 citations2022: 1,134 citations2023: 684 citations2024: 927 citations2025: 589 citations2026: 14 citations1995–2001: no citations, so these years are not shown

Citation sources

Countries

World map of the countries and regions citing this authorChina: 2,433 citing papers, 24.2% of this breakdownUnited States: 1,963 citing papers, 19.5% of this breakdownItaly: 519 citing papers, 5.1% of this breakdownUnited Kingdom: 452 citing papers, 4.5% of this breakdownGermany: 402 citing papers, 4% of this breakdownFrance: 325 citing papers, 3.2% of this breakdownIndia: 272 citing papers, 2.7% of this breakdownIran: 244 citing papers, 2.4% of this breakdownSpain: 239 citing papers, 2.4% of this breakdownCanada: 238 citing papers, 2.4% of this breakdownAustralia: 210 citing papers, 2.1% of this breakdownJapan: 201 citing papers, 2% of this breakdown
0%24.2%Other 25.5%

Fields

  • Medicine50%
  • Immunology and Microbiology29.7%
  • Biochemistry, Genetics and Molecular Biology15%
  • Neuroscience1.2%
  • Pharmacology, Toxicology and Pharmaceutics0.9%
  • Engineering0.7%
  • Other2.5%

Topics

  • Immune Cell Function and Interaction8.8%
  • COVID-19 Clinical Research Studies8.5%
  • SARS-CoV-2 and COVID-19 Research5.2%
  • Long-Term Effects of COVID-194.9%
  • Cancer Immunotherapy and Biomarkers2.8%
  • CAR-T cell therapy research2.8%
  • Other67%

Coauthors

All papers

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  1. Blockade of the checkpoint receptor TIGIT prevents NK cell exhaustion and elicits potent anti-tumor immunity

    Authors: , , , , , , , , , , , - Nature Immunology 2018 cited by 1,098

  2. SIRT3‐dependent delactylation of cyclin E2 prevents hepatocellular carcinoma growth

    Authors: , , , , , , , , , , , , , , - EMBO Reports 2023 cited by 215

  3. Mitochondrial fragmentation limits NK cell-based tumor immunosurveillance

    Authors: , , , , , , , , , , - Nature Immunology 2019 cited by 308

  4. Dysfunction of Natural Killer Cells by FBP1-Induced Inhibition of Glycolysis during Lung Cancer Progression

    Authors: , , , , , , , - Cell Metabolism 2018 cited by 375

  5. METTL3-mediated m6A RNA methylation promotes the anti-tumour immunity of natural killer cells

    Authors: , , , , , , , , , , , , , - Nature Communications 2021 cited by 193

  6. Respiratory influenza virus infection induces intestinal immune injury via microbiota-mediated Th17 cell–dependent inflammation

    Authors: , , , , , - The Journal of Experimental Medicine 2014 cited by 497

  7. Role of Decidual Natural Killer Cells in Human Pregnancy and Related Pregnancy Complications

    Authors: , - Frontiers in Immunology 2021 cited by 279

  8. Single-cell profiling of the human decidual immune microenvironment in patients with recurrent pregnancy loss

    Authors: , , , , , , , , , , , , , , , , , , , - Cell Discovery 2021 cited by 220

  9. Pathogenic T-cells and inflammatory monocytes incite inflammatory storms in severe COVID-19 patients

    Authors: , , , , , , , , , - National Science Review 2020 cited by 1,146

  10. Tumors evade immune cytotoxicity by altering the surface topology of NK cells

    Authors: , , , , , , , , , , , , , - Nature Immunology 2023 cited by 108

  11. Natural Killer Cells Promote Fetal Development through the Secretion of Growth-Promoting Factors

    Authors: , , , , , , , , - Immunity 2017 cited by 308

  12. LCN2 secreted by tissue-infiltrating neutrophils induces the ferroptosis and wasting of adipose and muscle tissues in lung cancer cachexia

    Authors: , , , , , , , , , , , , - Journal of Hematology & Oncology 2023 cited by 92

  13. Effective treatment of severe COVID-19 patients with tocilizumab

    Authors: , , , , , , , , , , , , - National Academy of Sciences, Proceedings of the National Academy of Sciences 2020 cited by 2,793

  14. High NKG2A expression contributes to NK cell exhaustion and predicts a poor prognosis of patients with liver cancer

    Authors: , , , , , , , , , , , , , - OncoImmunology 2016 cited by 281

  15. Human CD96 Correlates to Natural Killer Cell Exhaustion and Predicts the Prognosis of Human Hepatocellular Carcinoma

    Authors: , , , , , , , , , , , , - Hepatology 2018 cited by 322

  16. Liver-resident NK cells confer adaptive immunity in skin-contact inflammation

    Authors: , , , , , , , , - Journal of Clinical Investigation 2013 cited by 529

  17. Exosomes derived from Vδ2-T cells control Epstein-Barr virus–associated tumors and induce T cell antitumor immunity

    Authors: , , , , , , , , , , , , , - Science Translational Medicine 2020 cited by 105

  18. The microbiota maintain homeostasis of liver-resident γδT-17 cells in a lipid antigen/CD1d-dependent manner

    Authors: , , , , , , , , - Nature Communications 2017 cited by 189

  19. Developmental and Functional Control of Natural Killer Cells by Cytokines

    Authors: , , - Frontiers in Immunology 2017 cited by 267

  20. GARP-mediated active TGF-β1 induces bone marrow NK cell dysfunction in AML patients with early relapse post–allo-HSCT

    Authors: , , , , , , , , , , , , , , , - Blood 2022 cited by 64

  21. Natural killer cells promote immune tolerance by regulating inflammatory T H 17 cells at the human maternal–fetal interface

    Authors: , , , , , , - National Academy of Sciences, Proceedings of the National Academy of Sciences 2012 cited by 291

  22. Subsets of human natural killer cells and their regulatory effects

    Authors: , , - Immunology 2013 cited by 224

  23. Roles of HLA-G in the Maternal-Fetal Immune Microenvironment

    Authors: , , - Frontiers in Immunology 2020 cited by 185

  24. Bacterial colonization dampens influenza-mediated acute lung injury via induction of M2 alveolar macrophages

    Authors: , , , , , , - Nature Communications 2013 cited by 248