Marc Ouellette

Active 1987–2024

104
Papers
21,403
Citations
82
h-index
102
i10-index

Citations

Citations per year for Marc Ouellette1980: 1 citations1986: 2 citations1987: 2 citations1988: 2 citations1989: 4 citations1990: 9 citations1991: 35 citations1992: 29 citations1993: 36 citations1994: 52 citations1995: 36 citations1996: 38 citations1997: 75 citations1998: 58 citations1999: 88 citations2000: 76 citations2001: 123 citations2002: 119 citations2003: 147 citations2004: 149 citations2005: 148 citations2006: 192 citations2007: 196 citations2008: 100 citations2009: 129 citations2010: 113 citations2011: 179 citations2012: 134 citations2013: 119 citations2014: 94 citations2015: 83 citations2016: 149 citations2017: 99 citations2018: 95 citations2019: 560 citations2020: 694 citations2021: 652 citations2022: 650 citations2023: 448 citations2024: 729 citations2025: 287 citations2026: 1 citations1981–1985: no citations, so these years are not shown

Citation sources

Countries

World map of the countries and regions citing this authorUnited States: 1,293 citing papers, 15.6% of this breakdownChina: 705 citing papers, 8.5% of this breakdownUnited Kingdom: 591 citing papers, 7.1% of this breakdownGermany: 436 citing papers, 5.2% of this breakdownCanada: 361 citing papers, 4.3% of this breakdownFrance: 353 citing papers, 4.3% of this breakdownIndia: 315 citing papers, 3.8% of this breakdownSpain: 310 citing papers, 3.7% of this breakdownBrazil: 287 citing papers, 3.5% of this breakdownItaly: 276 citing papers, 3.3% of this breakdownAustralia: 209 citing papers, 2.5% of this breakdownSwitzerland: 207 citing papers, 2.5% of this breakdown
0%15.6%Other 35.7%

Fields

  • Medicine39.1%
  • Biochemistry, Genetics and Molecular Biology38.5%
  • Immunology and Microbiology6.8%
  • Environmental Science5.7%
  • Agricultural and Biological Sciences4.6%
  • Engineering1.3%
  • Other4%

Topics

  • Antibiotic Resistance in Bacteria10.9%
  • Research on Leishmaniasis Studies5.5%
  • Trypanosoma species research and implications4.6%
  • Bacterial biofilms and quorum sensing3.4%
  • Antimicrobial Resistance in Staphylococcus3.3%
  • Antibiotic Use and Resistance2.8%
  • Other69.5%

Coauthors

All papers

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  1. Discovery, research, and development of new antibiotics: the WHO priority list of antibiotic-resistant bacteria and tuberculosis

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Oliver J. Dyar, Alex W. Friedrich, Ana Cristina Gales, Sumanth Gandra, Christian G. Giske, Debra A. Goff, Herman Goossens, Thomas Gottlieb, Manuel Guzmán Blanco, Waleria Hryniewicz, Deepthi Kattula, Timothy Jinks, Souha S. Kanj, Lawrence D. Kerr, Marie-Paule Kiény, Yang Soo Kim, Roman S. Kozlov, Jaime Labarca, Ramanan Laxminarayan, Karin Leder, Leonard Leibovici, Gabriel Levy-Hara, Jasper Littman, Surbhi Malhotra‐Kumar, Vikas Manchanda, Lorenzo Moja, B Ndoye, Angelo Pan, David L. Paterson, Mical Paul, Haibo Qiu, Pilar Ramón-Pardo, Jesús Rodríguez‐Baño, Maurizio Sanguinetti, Sharmila Sengupta, Mike Sharland, Massinissa Si-Mehand, Lynn L. Silver, Wonkeung Song, Martin Steinbakk, Jens Thomsen, Guy Thwaites, J W van der Meer, Nguyễn Văn Kính, Silvio Vega, María Virginia Villegas, Agnes Wechsler-Fördös, Heiman Wertheim, Evelyn Wesangula, Neil Woodford, Fidan O Yilmaz, Anna Zorzet - The Lancet Infectious Diseases 2017 cited by 6,087

  2. The initial state of the human gut microbiome determines its reshaping by antibiotics

    Authors: , , , , , , , , , , , , , , , , , , , , , - The ISME Journal 2015 cited by 367

  3. Correlation between the Resistance Genotype Determined by Multiplex PCR Assays and the Antibiotic Susceptibility Patterns of Staphylococcus aureus and Staphylococcus epidermidis

    Authors: , , , , , , - Antimicrobial Agents and Chemotherapy 2000 cited by 425

  4. Plasticity of the Leishmania genome leading to gene copy number variations and drug resistance

    Authors: , , , - F1000Research 2016 cited by 147

  5. Nisin is an effective inhibitor of Clostridium difficile vegetative cells and spore germination

    Authors: , , , , - Journal of Medical Microbiology 2015 cited by 93

  6. Live Nonpathogenic Parasitic Vector as a Candidate Vaccine against Visceral Leishmaniasis

    Authors: , , , - Infection and Immunity 2005 cited by 148

  7. Functional Cloning of the Miltefosine Transporter

    Authors: , , , - Journal of Biological Chemistry 2003 cited by 215

  8. Thiol-induced reduction of antimony(V) into antimony(III): A comparative study with trypanothione, cysteinyl-glycine, cysteine and glutathione

    Authors: , , , , , - BioMetals 2003 cited by 143

  9. DNA Repair Pathways in Trypanosomatids: from DNA Repair to Drug Resistance

    Authors: , , , , , , - Microbiology and Molecular Biology Reviews 2014 cited by 98

  10. Different Mutations in a P-type ATPase Transporter in Leishmania Parasites are Associated with Cross-resistance to Two Leading Drugs by Distinct Mechanisms

    Authors: , , , , , , , , - PLoS neglected tropical diseases 2016 cited by 77

  11. Mutations in an Aquaglyceroporin as a Proven Marker of Antimony Clinical Resistance in the Parasite Leishmania donovani

    Authors: , , , , - Clinical Infectious Diseases 2020 cited by 42

  12. Resistance to Antimony and Treatment Failure in Human Leishmania (Viannia) Infection

    Authors: , , , , , - The Journal of Infectious Diseases 2006 cited by 189

  13. Gene expression modulation is associated with gene amplification, supernumerary chromosomes and chromosome loss in antimony-resistant Leishmania infantum

    Authors: , , , , , , - Nucleic Acids Research 2009 cited by 181

  14. Modulation of gene expression in drug resistant Leishmania is associated with gene amplification, gene deletion and chromosome aneuploidy

    Authors: , , , , , , , , , , - Genome biology 2008 cited by 175

  15. Drug resistance analysis by next generation sequencing in Leishmania

    Authors: , , , , - International Journal for Parasitology Drugs and Drug Resistance 2014 cited by 101

  16. Coupling chemical mutagenesis to next generation sequencing for the identification of drug resistance mutations in Leishmania

    Authors: , , , , , , , , , - Nature Communications 2019 cited by 57

  17. Well-Tolerated Amphotericin B Derivatives That Effectively Treat Visceral Leishmaniasis

    Authors: , , , , , , , , , , - ACS Infectious Diseases 2021 cited by 16

  18. Functional requirement of p23 and Hsp90 in telomerase complexes

    Authors: , , , , , , , , , , , - Genes & Development 1999 cited by 542

  19. Disruption of the trypanothione reductase gene of Leishmania decreases its ability to survive oxidative stress in macrophages

    Authors: , , , , , , , - The EMBO Journal 1997 cited by 302

  20. Development of a PCR Assay for Identification of Staphylococci at Genus and Species Levels

    Authors: , , , , , , - Journal of Clinical Microbiology 2001 cited by 301

  21. Unresponsiveness to Glucantime Treatment in Iranian Cutaneous Leishmaniasis due to Drug-Resistant Leishmania tropica Parasites

    Authors: , , , , , - PLoS Medicine 2006 cited by 298

  22. Precise insertion of antibiotic resistance determinants into Tn21-like transposons: nucleotide sequence of the OXA-1 beta-lactamase gene.

    Authors: , , - National Academy of Sciences, Proceedings of the National Academy of Sciences 1987 cited by 240

  23. Genome sequencing of the lizard parasite Leishmania tarentolae reveals loss of genes associated to the intracellular stage of human pathogenic species

    Authors: , , , , , , , , , , , - Nucleic Acids Research 2011 cited by 170

  24. Cos-Seq for high-throughput identification of drug target and resistance mechanisms in the protozoan parasite Leishmania

    Authors: , , , , - National Academy of Sciences, Proceedings of the National Academy of Sciences 2016 cited by 86