Young Min Kwon Source Confirmed

Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.

High Impact

Professor

University of Arkansas at Fayetteville

faculty

34 h-index 124 pubs 3,115 cited

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Biography and Research Information

OverviewAI-generated summary

Young Min Kwon's research focuses on understanding and mitigating microbial infections, particularly in agricultural contexts, and investigating antimicrobial resistance. His work has explored the efficacy of natural compounds like curcumin and eugenol in controlling bacterial colonization and spread in poultry, with an emphasis on Salmonella Typhimurium.

Kwon also investigates the genetic basis of bacterial fitness and the mechanisms by which environmental factors, such as sublethal chlorine concentrations, can induce antibiotic resistance in pathogens. This includes in silico analyses to characterize the diversity and dissemination of antimicrobial resistance genes and mobile genetic elements in enteric pathogens. His research group also examines the impact of feed additives, such as β-mannanases and bacteriophages, on livestock health and gut microbiota composition.

With a career output of 124 publications and over 3,100 citations, Kwon holds an h-index of 34. He has collaborated with researchers at the University of Arkansas at Fayetteville and the National Center for Toxicological Research.

Metrics

  • h-index: 34
  • Publications: 124
  • Citations: 3,115

Selected Publications

  • Functional dissection of the genome of <i>Salmonella</i> Typhimurium to understand its tolerance to the bactericidal activity of peracetic acid (2026) DOI
  • Production of Reactive Oxygen Species Induced by Peracetic Acid Enhances Bactericidal Activity and Mutagenesis in <i>Salmonella</i> Typhimurium (2025) DOI
  • Genetic Factors of Campylobacter jejuni Required for Its Interactions with Free-Living Amoeba (2025) DOI
  • Extracellular DNA in the Chicken Cecal Environment (2025) DOI
  • Disinfectants and one health review: The role of reactive oxygen species in the bactericidal activity of chlorine against Salmonella (2025) DOI
  • Efficient Correction of DNA Hetero–Duplexes Formed During SELEX Procedure (2024) DOI
  • Potential Involvement of Reactive Oxygen Species in the Bactericidal Activity of Eugenol against Salmonella Typhimurium (2024) DOI
  • Reactive Oxygen Species Mediate the Bactericidal Activity of Chlorine Against Salmonella (2024) DOI
  • A Sublethal Concentration of Chlorine Induces Antibiotic Resistance in Salmonella via Production of Reactive Oxygen Species (2024) DOI
  • Development of real-time PCR assay for quantitative detection of Clostridium septicum (2024) DOI
  • Application of Eugenol in Poultry to Control Salmonella Colonization and Spread (2023) DOI
  • In silico analyses of diversity and dissemination of antimicrobial resistance genes and mobile genetics elements, for plasmids of enteric pathogens (2023) DOI
  • Additional file 3 of Genome-wide characterization of Salmonella Typhimurium genes required for the fitness under iron restriction (2022) DOI
  • Additional file 2 of Genome-wide characterization of Salmonella Typhimurium genes required for the fitness under iron restriction (2022) DOI
  • Genome-wide characterization of Salmonella Typhimurium genes required for the fitness under iron restriction (2022) DOI

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