Daniël Pipeleers

Active 1973–2023

110
Papers
19,115
Citations
89
h-index
110
i10-index

Citations

Citations per year for Daniël Pipeleers1976: 1 citations1977: 5 citations1978: 5 citations1979: 4 citations1980: 3 citations1982: 12 citations1983: 9 citations1984: 15 citations1985: 29 citations1986: 23 citations1987: 23 citations1988: 18 citations1989: 25 citations1990: 22 citations1991: 34 citations1992: 38 citations1993: 50 citations1994: 52 citations1995: 43 citations1996: 79 citations1997: 64 citations1998: 92 citations1999: 87 citations2000: 144 citations2001: 173 citations2002: 182 citations2003: 162 citations2004: 171 citations2005: 212 citations2006: 224 citations2007: 164 citations2008: 235 citations2009: 179 citations2010: 208 citations2011: 228 citations2012: 189 citations2013: 227 citations2014: 165 citations2015: 173 citations2016: 179 citations2017: 170 citations2018: 149 citations2019: 393 citations2020: 391 citations2021: 421 citations2022: 242 citations2023: 176 citations2024: 292 citations2025: 136 citations2026: 2 citations1981: no citations, so this year is not shown

Citation sources

Countries

World map of the countries and regions citing this authorUnited States: 1,832 citing papers, 26.7% of this breakdownUnited Kingdom: 506 citing papers, 7.4% of this breakdownChina: 406 citing papers, 5.9% of this breakdownBelgium: 400 citing papers, 5.8% of this breakdownCanada: 376 citing papers, 5.5% of this breakdownGermany: 338 citing papers, 4.9% of this breakdownSweden: 307 citing papers, 4.5% of this breakdownItaly: 286 citing papers, 4.2% of this breakdownSwitzerland: 272 citing papers, 4% of this breakdownFrance: 255 citing papers, 3.7% of this breakdownDenmark: 176 citing papers, 2.6% of this breakdownJapan: 175 citing papers, 2.6% of this breakdown
0%26.7%Other 22.2%

Fields

  • Medicine57.3%
  • Biochemistry, Genetics and Molecular Biology26.7%
  • Immunology and Microbiology10.1%
  • Neuroscience2.7%
  • Nursing0.9%
  • Agricultural and Biological Sciences0.7%
  • Other1.6%

Topics

  • Pancreatic function and diabetes19.3%
  • Diabetes and associated disorders10.7%
  • Diabetes Management and Research6.8%
  • Metabolism, Diabetes, and Cancer4.2%
  • Immune cells in cancer3.6%
  • Diabetes Treatment and Management2.9%
  • Other52.5%

Coauthors

All papers

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  1. Different Tumor Microenvironments Contain Functionally Distinct Subsets of Macrophages Derived from Ly6C(high) Monocytes

    Authors: , , , , , , , , , , - Cancer Research 2010 cited by 1,212

  2. Encapsulated stem cell–derived β cells exert glucose control in patients with type 1 diabetes

    Authors: , , , , , , , , , , , - Nature Biotechnology 2023 cited by 107

  3. Association between primary graft function and 5-year outcomes of islet allogeneic transplantation in type 1 diabetes: a retrospective, multicentre, observational cohort study in 1210 patients from the Collaborative Islet Transplant Registry

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , John A. Goss, P Gottllieb, Carla J. Greenbaum, Mark A. Hardy, David M. Harlan, Bernhard J. Hering, Fouad Kandeel, Dixon B. Kaufman, Thomas W. H. Kay, Bart Keymeulen, Khalid Khan, Yogish C. Kudva, Christian P. Larsen, Kristell Le Mapihan, G Levy, Marlon F. Levy, Thomas Loudovaris, Torbjörn Lundgren, Paola Maffi, James F. Markmann, W H Marks, Ali Naji, Philip J. O’Connell, José Oberholzer, Jon S. Odorico, Nicholas Onaca, François Pattou, Lorenzo Piemonti, Daniël Pipeleers, Andrew M. Posselt, Amer Rajab, Violeta Raverdy, Michael R. Rickels, Camillo Ricordi, A A Rossini, F Saudek, Beth Schrope, Antonio Secchi, Peter Senior, A. M. James Shapiro, James Shaw, Peter G. Stock, Diego Sánchez Thomas, Matthew Thompson, Marie‐Christine Vantyghem, L Vargas, H Wang, Anthony Wiseman, Piotr Witkowski, Kun‐Ho Yoon, Piotr Witkowski, Kun‐Ho Yoon - The Lancet Diabetes & Endocrinology 2023 cited by 61

  4. Insulin Needs after CD3-Antibody Therapy in New-Onset Type 1 Diabetes

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , - New England Journal of Medicine 2005 cited by 1,090

  5. Interleukin-6 regulates pancreatic α-cell mass expansion

    Authors: , , , , , , , , , , , , - National Academy of Sciences, Proceedings of the National Academy of Sciences 2008 cited by 271

  6. Human and rat beta cells differ in glucose transporter but not in glucokinase gene expression.

    Authors: , , , , , , - Journal of Clinical Investigation 1995 cited by 416

  7. Glucose Sensing in Pancreatic β-Cells

    Authors: , , , - Diabetes 2001 cited by 402

  8. Four-year metabolic outcome of a randomised controlled CD3-antibody trial in recent-onset type 1 diabetic patients depends on their age and baseline residual beta cell mass

    Authors: , , , , , , , , , , , , , , - Diabetologia 2010 cited by 313

  9. Regulation of pancreatic PC1 and PC2 associated with increased glucagon-like peptide 1 in diabetic rats

    Authors: , , , , , , , , - Journal of Clinical Investigation 2000 cited by 168

  10. Dual Glucagon Recognition by Pancreatic β-Cells via Glucagon and Glucagon-Like Peptide 1 Receptors

    Authors: , , , , , - Diabetes 1998 cited by 98

  11. Inverse Relationship Between Cytotoxicity of Free Fatty Acids in Pancreatic Islet Cells and Cellular Triglyceride Accumulation

    Authors: , , , , - Diabetes 2001 cited by 551

  12. miR-375 Targets 3′-Phosphoinositide–Dependent Protein Kinase-1 and Regulates Glucose-Induced Biological Responses in Pancreatic β-Cells

    Authors: , , , , , - Diabetes 2008 cited by 425

  13. Metabolic Fate of Glucose in Purified Islet Cells

    Authors: , , , , , , - Journal of Biological Chemistry 1997 cited by 431

  14. Expression and Functional Activity of Glucagon, Glucagon-Like Peptide I, and Glucose-Dependent Insulinotropic Peptide Receptors in Rat Pancreatic Islet Cells

    Authors: , , , , , , , , , - Diabetes 1996 cited by 242

  15. Sustained function of alginate-encapsulated human islet cell implants in the peritoneal cavity of mice leading to a pilot study in a type 1 diabetic patient

    Authors: , , , , , , , , , - Diabetologia 2013 cited by 228

  16. Glucose stimulates proinsulin biosynthesis by a dose-dependent recruitment of pancreatic beta cells.

    Authors: , , - National Academy of Sciences, Proceedings of the National Academy of Sciences 1988 cited by 308

  17. Heterogeneity in Pancreatic β-cell Population

    Authors: - Diabetes 1992 cited by 215

  18. IA-2 autoantibodies predict impending Type I diabetes in siblings of patients

    Authors: , , , , , , , , , , , - Diabetologia 2002 cited by 94

  19. Report of the Key Opinion Leaders Meeting on Stem Cell-derived Beta Cells

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Bernhard J. Hering, Lorenzo Piemonti, Thierry Berney, Mike Rickels, Thomas W. H. Kay, Ann Adams - Transplantation 2018 cited by 81

  20. Differences in Glucose Transporter Gene Expression between Rat Pancreatic α- and β-Cells Are Correlated to Differences in Glucose Transport but Not in Glucose Utilization

    Authors: , , , , - Journal of Biological Chemistry 1995 cited by 188

  21. Glucagon receptors on human islet cells contribute to glucose competence of insulin release

    Authors: , , , - Diabetologia 2000 cited by 217

  22. Functional Beta Cell Mass from Device-Encapsulated hESC-Derived Pancreatic Endoderm Achieving Metabolic Control

    Authors: , , , , , , - Stem Cell Reports 2018 cited by 78

  23. Glucose promotes survival of rat pancreatic beta cells by activating synthesis of proteins which suppress a constitutive apoptotic program.

    Authors: , , , - Journal of Clinical Investigation 1996 cited by 275

  24. Extra-insular beta cells associated with ductules are frequent in adult human pancreas

    Authors: , - Diabetologia 1998 cited by 227