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WHO Critical Priority Escherichia coli as One Health Challenge for a Post-Pandemic Scenario: Genomic Surveillance and Analysis of Current Trends in Brazil.

  • Bruna Fuga
  • , Fábio P. Sellera
  • , Louise Cerdeira
  • , Fernanda Esposito
  • , Brenda Cardoso
  • , Herrison Fontana
  • , Quézia Moura
  • , Adriana Cardenas-Arias
  • , Elder Sano
  • , Rosineide M. Ribas
  • , Albalúcia C. Carvalho
  • , Maria Cristina B. Tognim
  • , Marcia Maria C. de Morais
  • , Ana Judith P.G. Quaresma
  • , Ângela Patrícia Santana
  • , Joice N. Reis
  • , Marcelo Pilonetto
  • , Eliana Carolina Vespero
  • , Raquel R. Bonelli
  • , Aloysio M.F. Cerqueira
  • Thaís C.M. Sincero, Nilton Lincopan
  • Universidade de São Paulo
  • One Health Brazilian Resistance Project (OneBR)
  • Universidade Metropolitana de Santos
  • Monash University
  • Universidade Federal da Grande Dourados
  • Universidade Federal de Uberlândia
  • Universidade Federal da Paraíba
  • Universidade Estadual de Maringá
  • Universidade de Pernambuco
  • Instituto Evandro Chagas
  • Universidade de Brasília
  • Universidade Federal da Bahia
  • Central Laboratory of the State of Paraná-LACEN
  • Universidade Estadual de Londrina
  • Universidade Federal do Rio de Janeiro
  • Universidade Federal Fluminense
  • Universidade Federal de Santa Catarina

Research output: Contribution to journalArticlepeer-review

93 Citations (Scopus)

Abstract

The dissemination of carbapenem-resistant and third generation cephalosporin-resistant pathogens is a critical issue that is no longer restricted to hospital settings. The rapid spread of critical priority pathogens in Brazil is notably worrying, considering its continental dimension, the diversity of international trade, livestock production, and human travel. We conducted a nationwide genomic investigation under a One Health perspective that included Escherichia coli strains isolated from humans and nonhuman sources, over 45 years (1974-2019). One hundred sixty-seven genomes were analyzed extracting clinically relevant information (i.e., resistome, virulome, mobilome, sequence types [STs], and phylogenomic). The endemic status of extended-spectrum β-lactamase (ESBL)-positive strains carrying a wide diversity of variants, and the growing number of colistin-resistant isolates carrying -type genes was associated with the successful expansion of international ST10, ST38, ST115, ST131, ST354, ST410, ST648, ST517, and ST711 clones; phylogenetically related and shared between human and nonhuman hosts, and polluted aquatic environments. Otherwise, carbapenem-resistant ST48, ST90, ST155, ST167, ST224, ST349, ST457, ST648, ST707, ST744, ST774, and ST2509 clones from human host harbored and genes. A broad resistome to other clinically relevant antibiotics, hazardous heavy metals, disinfectants, and pesticides was further predicted. Wide virulome associated with invasion/adherence, exotoxin and siderophore production was related to phylogroup B2. The convergence of wide resistome and virulome has contributed to the persistence and rapid spread of international high-risk clones of critical priority E. coli at the human-animal-environmental interface, which must be considered a One Health challenge for a post-pandemic scenario. A One Health approach for antimicrobial resistance must integrate whole-genome sequencing surveillance data of critical priority pathogens from human, animal and environmental sources to track hot spots and routes of transmission and developing effective prevention and control strategies. As part of the Grand Challenges Explorations: New Approaches to Characterize the Global Burden of Antimicrobial Resistance Program, we present genomic data of WHO critical priority carbapenemase-resistant, ESBL-producing, and/or colistin-resistant Escherichia coli strains isolated from humans and nonhuman sources in Brazil, a country with continental proportions and high levels of antimicrobial resistance. The present study provided evidence of epidemiological and clinical interest, highlighting that the convergence of wide virulome and resistome has contributed to the persistence and rapid spread of international high-risk clones of E. coli at the human-animal-environmental interface, which must be considered a One Health threat that requires coordinated actions to reduce its incidence in humans and nonhuman hosts.

Original languageEnglish
Article numbere01256-21
Pages (from-to)e0125621
JournalMicrobiology spectrum
Volume10
Issue number2
DOIs
Publication statusPublished - 2 Mar 2022

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • carbapenemases
  • carbapenems
  • colistin
  • Enterobacterales
  • ESBL
  • genomic surveillance
  • high-risk clones
  • MCR
  • multidrug resistance
  • One Health
  • resistome
  • South America
  • virulome

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