Skip Navigation
Skip to contents

PHRP : Osong Public Health and Research Perspectives

OPEN ACCESS
SEARCH
Search

Author index

Page Path
HOME > Articles and issues > Author index
Search
Suresh Kumar 1 Article
Yersinia pestis antibiotic resistance: a systematic review
Chen Lei, Suresh Kumar
Osong Public Health Res Perspect. 2022;13(1):24-36.   Published online February 18, 2022
DOI: https://doi.org/10.24171/j.phrp.2021.0288
  • 7,326 View
  • 249 Download
  • 9 Web of Science
  • 10 Crossref
AbstractAbstract PDF
Yersinia pestis, the cause of plague and a potential biological weapon, has always been a threatening pathogen. Some strains of Y. pestis have varying degrees of antibiotic resistance. Thus, this systematic review was conducted to alert clinicians to this pathogen’s potential antimicrobial resistance. A review of the literature was conducted for experimental reports and systematic reviews on the topics of plague, Y. pestis, and antibiotic resistance. From 1995 to 2021, 7 Y. pestis isolates with 4 antibiotic resistance mechanisms were reported. In Y. pestis 17/95, 16/95, and 2180H, resistance was mediated by transferable plasmids. Each plasmid contained resistance genes encoded within specific transposons. Strain 17/95 presented multiple drug resistance, since plasmid 1202 contained 10 resistance determinants. Strains 16/95 and 2180H showed single antibiotic resistance because both additional plasmids in these strains carried only 1 antimicrobial determinant. Strains 12/87, S19960127, 56/13, and 59/13 exhibited streptomycin resistance due to an rpsl gene mutation, a novel mechanism that was discovered recently. Y. pestis can acquire antibiotic resistance in nature not only via conjugative transfer of antimicrobial-resistant plasmids from other bacteria, but also by gene point mutations. Global surveillance should be strengthened to identify antibiotic-resistant Y. pestis strains by whole-genome sequencing and drug susceptibility testing.

Citations

Citations to this article as recorded by  
  • Seek and you shall find: Yersinia enterocolitica in Ireland’s drinking water
    James Powell, Maureen Daly, Nuala H. O’Connell, Colum P. Dunne
    Irish Journal of Medical Science (1971 -).2024;[Epub]     CrossRef
  • A novel sORF gene mutant strain of Yersinia pestis vaccine EV76 offers enhanced safety and improved protection against plague
    Xiao Guo, Youquan Xin, Zehui Tong, Shiyang Cao, Yuan Zhang, Gengshan Wu, Hongyan Chen, Tong Wang, Yajun Song, Qingwen Zhang, Ruifu Yang, Zongmin Du, Gregory P. Priebe
    PLOS Pathogens.2024; 20(3): e1012129.     CrossRef
  • Rapid Induction of Protective Immunity against Pneumonic Plague by Yersinia pestis Polymeric F1 and LcrV Antigens
    Moshe Aftalion, Avital Tidhar, Yaron Vagima, David Gur, Ayelet Zauberman, Tzvi Holtzman, Arik Makovitzki, Theodor Chitlaru, Emanuelle Mamroud, Yinon Levy
    Vaccines.2023; 11(3): 581.     CrossRef
  • Antibiotic resistance in Neisseria gonorrhoeae: broad-spectrum drug target identification using subtractive genomics
    Umairah Natasya Mohd Omeershffudin, Suresh Kumar
    Genomics & Informatics.2023; 21(1): e5.     CrossRef
  • Polyclonal Antibodies Derived from Transchromosomic Bovines Vaccinated with the Recombinant F1-V Vaccine Increase Bacterial Opsonization In Vitro and Protect Mice from Pneumonic Plague
    Sergei S. Biryukov, Hua Wu, Jennifer L. Dankmeyer, Nathaniel O. Rill, Christopher P. Klimko, Kristi A. Egland, Jennifer L. Shoe, Melissa Hunter, David P. Fetterer, Ju Qiu, Michael L. Davies, Christoph L. Bausch, Eddie J. Sullivan, Thomas Luke, Christopher
    Antibodies.2023; 12(2): 33.     CrossRef
  • New Bacteriophages with Podoviridal Morphotypes Active against Yersinia pestis: Characterization and Application Potential
    Tamar Suladze, Ekaterine Jaiani, Marina Darsavelidze, Maia Elizbarashvili, Olivier Gorge, Ia Kusradze, Tamar Kokashvili, Nino Lashkhi, George Tsertsvadze, Nino Janelidze, Svetlana Chubinidze, Marina Grdzelidze, Shota Tsanava, Eric Valade, Marina Tediashvi
    Viruses.2023; 15(7): 1484.     CrossRef
  • Characterization of Mu-Like Yersinia Phages Exhibiting Temperature Dependent Infection
    Biao Meng, Zhizhen Qi, Xiang Li, Hong Peng, Shanzheng Bi, Xiao Wei, Yan Li, Qi Zhang, Xiaoqing Xu, Haihong Zhao, Xiaoyan Yang, Changjun Wang, Xiangna Zhao, Olaya Rendueles
    Microbiology Spectrum.2023;[Epub]     CrossRef
  • Ancient Yersinia pestis genomes lack the virulence-associated Ypf Φ prophage present in modern pandemic strains
    Joanna H. Bonczarowska, Julian Susat, Ben Krause-Kyora, Dorthe Dangvard Pedersen, Jesper Boldsen, Lars Agersnap Larsen, Lone Seeberg, Almut Nebel, Daniel Unterweger
    Proceedings of the Royal Society B: Biological Sci.2023;[Epub]     CrossRef
  • A situation analysis of the current plague outbreak in the Demographic Republic of Congo and counteracting strategies – Correspondence
    Ranjit Sah, Abdullah Reda, Rachana Mehta, Ranjan K. Mohapatra, Kuldeep Dhama
    International Journal of Surgery.2022; 105: 106885.     CrossRef
  • Antimicrobial resistance in Klebsiella pneumoniae: identification of bacterial DNA adenine methyltransferase as a novel drug target from hypothetical proteins using subtractive genomics
    Umairah Natasya Mohd Omeershffudin, Suresh Kumar
    Genomics & Informatics.2022; 20(4): e47.     CrossRef

PHRP : Osong Public Health and Research Perspectives