ESBL genes in Escherichia coli in One Health perspective, molecular evidence, and transmission routes

Authors

  • Ajeng Pramesthi Cahyani Master Program of Veterinary Disease and Public Health Science, Faculty of Veterinary Medicine, Universitas Airlangga, Kampus C Mulyorejo, Jl. Dr. Ir. H. Soekarno, Surabaya, East Java, 60115, Indonesia
  • Aswin Rafif Khairullah Research Center for Veterinary Science, National Research and Innovation Agency (BRIN), Jl. Raya Bogor Km. 46 Cibinong, Bogor, West Java, 16911, Indonesia
  • Freshinta Jellia Wibisono Faculty of Veterinary Medicine, Universitas Wijaya Kusuma Surabaya, Jl. Dukuh Kupang XXV No.54, Dukuh Kupang, Dukuh Pakis, Surabaya, East Java, 60225, Indonesia
  • Dian Ayu Permatasari Division of Veterinary Public Health, Faculty of Veterinary Medicine, Universitas Airlangga, Kampus C Mulyorejo, Jl. Dr. Ir. H. Soekarno, Surabaya, East Java, 60115, Indonesia
  • Wiwiek Tyasningsih Division of Veterinary Microbiology, Faculty of Veterinary Medicine, Universitas Airlangga, Kampus C Mulyorejo, Jl. Dr. Ir. H. Soekarno, Surabaya, East Java, 60115, Indonesia
  • Mustofa Helmi Effendi Division of Veterinary Public Health, Faculty of Veterinary Medicine, Universitas Airlangga, Kampus C Mulyorejo, Jl. Dr. Ir. H. Soekarno, Surabaya, East Java, 60115, Indonesia
  • Bima Putra Pratama Research Center for Process Technology, National Research and Innovation Agency (BRIN), KST BJ Habibie, Serpong, South Tangerang, Banten, 15314, Indonesia
  • Muhammad ‘Ahdi Kurniawan Master Program of Veterinary Disease and Public Health Science, Faculty of Veterinary Medicine, Universitas Airlangga, Kampus C Mulyorejo, Jl. Dr. Ir. H. Soekarno, Surabaya, East Java, 60115, Indonesia
  • Budiastuti Budiastuti Study Program of Pharmacy Science, Faculty of Health Science, Universitas Muhammadiyah Surabaya, Jl. Raya Sutorejo No.59, Dukuh Sutorejo, Mulyorejo, Surabaya East Java, 60113, Indonesia
  • Dea Anita Ariani Kurniasih Research Center for Public Health and Nutrition, National Research and Innovation Agency (BRIN), Jl. Raya Bogor Km. 46 Cibinong, Bogor, West Java, 16911, Indonesia
  • John Yew Huat Tang School of Food Industry, Faculty of Bioresources, and Food Industry, Universiti Sultan Zainal Abidin (Besut Campus), Besut, 22200, Malaysia
  • Nnabuife Bernard Agumah Department of Applied Microbiology, Faculty of Science, Ebonyi State University. Abakaliki, 480211, Nigeria
  • Fidi Nur Aini Eka Puji Dameanti Laboratory of Veterinary Microbiology and Immunology, Faculty of Veterinary Medicine, Universitas Brawijaya, Jl. Puncak Dieng, Kunci, Kalisongo, Dau, Malang, East Java, 65151, Indonesia
  • Daniah Ashri Afnani Department of Microbiology and Parasitology, Faculty of Veterinary Medicine, Universitas Pendidikan Mandalika, Jl. Pemuda No. 59A, Dasan Agung Baru, Mataram, West Nusa Tenggara, 83125, Indonesia
  • Katty Hendriana Priscilia Riwu Department of Veterinary Public Health, Faculty of Veterinary Medicine, Universitas Pendidikan Mandalika, Jl. Pemuda No. 59A, Dasan Agung Baru, Mataram, West Nusa Tenggara, 83125, Indonesia
  • Sheila Marty Yanestria Faculty of Veterinary Medicine, Universitas Wijaya Kusuma Surabaya, Jl. Dukuh Kupang XXV No.54, Dukuh Kupang, Dukuh Pakis, Surabaya, East Java, 60225, Indonesia

Keywords:

Antimicrobial resistance, ESBL, Escherichia coli, One Health, public health

Abstract

Antimicrobial resistance (AMR) caused by Extended Spectrum β-Lactamase (ESBL)-producing bacteria has emerged as a major global public health threat, involving complex interactions among humans, animals, and the environment. Among ESBL-producing pathogens, Escherichia coli is recognized as one of the most important bacteria due to its remarkable genetic adaptability, which facilitates the widespread dissemination of β-lactam resistance genes through horizontal gene transfer mechanisms. This review aims to examine the molecular evidence of ESBL genes in E. coli, the characteristics of high-risk clones, mobile genetic elements involved in dissemination, and transmission pathways from a One Health perspective. Evidence from numerous studies demonstrates the predominance of the blaCTX-M gene family, particularly the CTX-M-15 variant, in E. coli isolates derived from humans, food-producing animals, companion animals, wildlife, and environmental sources. High-risk clones such as ST131 and ST1193 play a crucial role in the global spread of ESBLs because of their strong colonization capacity, persistence, virulence, and ability to accumulate multiple antimicrobial resistance determinants. Furthermore, the interplay between antimicrobial usage, ecosystem dynamics, and the mobility of genetic elements such as plasmids, transposons, and integrons accelerates the cross-sector dissemination of ESBL-producing E. coli. These findings highlight the urgent need for integrated control strategies based on the One Health framework, including molecular surveillance, rational antimicrobial stewardship, and strengthened environmental management, to sustainably mitigate the spread and impact of antimicrobial resistance worldwide.

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Published

2026-07-01

How to Cite

Cahyani, A. P., Khairullah, A. R. ., Wibisono, F. J. ., Permatasari, D. A., Tyasningsih, W. ., Effendi, M. H., Pratama, B. P., Kurniawan, M. ‘Ahdi, Budiastuti, B., Kurniasih, D. A. A. ., Tang, J. Y. H., Agumah, N. B. ., Dameanti, F. N. A. E. P. ., Afnani, D. A., Riwu, K. H. P., & Yanestria, S. M. (2026). ESBL genes in Escherichia coli in One Health perspective, molecular evidence, and transmission routes. Journal of Advanced Veterinary Research, 16(4), 654-661. Retrieved from https://advetresearch.com/index.php/AVR/article/view/2583

Issue

Section

Review Article

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