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Updated: Feb 6, 2026

Listeria monocytogenes Infection of the Brain
Published on: October 2, 2018
Persistence of Listeria monocytogenes: an integrative narrative review
Raúl A Poutou-Piñales1, Sandra M Rincón-Gamboa1,2, Ana K Carrascal-Camacho2
1Laboratorio de Biotecnología Molecular, Grupo de Biotecnología Ambiental e Industrial (GBAI), Departamento de Microbiología, Facultad de Ciencias, Pontificia Universidad Javeriana, Bogotá, Colombia.
Abstract:
The persistence of Listeria monocytogenes has become a public health problem in food safety due to its ability to survive in humans, animals, industrial environments, and food matrices through mechanisms of genetic, physiological, and ecological plasticity. The objective of this exploratory review was to map and synthesise scientific information published between 2000 and 2025 on the determinants that sustain this phenomenon, integrating clinical, agricultural and industrial, information from a general perspective. The findings show that a limited set of clonal complexes, including CC1, CC2, CC4, CC6, CC9, CC31, CC87, CC121, and CC321, are recurrently associated with episodes of long-term persistence. At the molecular level, genes such as qacH, bcrABC, cadAC, and mdrL, together with stress survival islands (SSI-1 and SSI-2), provide tolerance to quaternary ammonium compounds, metals, and hostile conditions, and the truncated variants of inlA show adaptive trajectories that favour colonisation in food over invasion in humans. In the host, the resistance to bile and the antimicrobials favours progression to invasive infections; since the agricultural systems, soils, and livestock act as chronic reservoirs and in processing plants, the persistence becomes favoured by biofilms formation, structural and construction deficiencies in drains and some equipment, because of the difficulty in accessing all pieces and parts during cleaning. Overall, this review demonstrates that the persistence of L. monocytogenes results from the convergence of genetic, physiological, and environmental factors, and highlights the need for interdisciplinary and comprehensive control strategies aimed at mitigating its impact on the food chain.
Insights
Listeria monocytogenes persistence is a food safety issue driven by genetic and environmental factors. Understanding these determinants is crucial for developing effective, interdisciplinary control strategies in agriculture and industry.
Area of Science:
- Food Safety
- Microbiology
- Public Health
Background:
- * Listeria monocytogenes poses a significant public health risk due to its persistence in diverse environments.
- * Its ability to survive is attributed to genetic, physiological, and ecological adaptability.
- * This adaptability complicates control measures in food safety, agriculture, and industry.
Purpose of the Study:
- * To review and synthesize scientific literature from 2000-2025 on factors enabling Listeria monocytogenes persistence.
- * To integrate clinical, agricultural, and industrial perspectives on this phenomenon.
- * To identify key determinants sustaining long-term survival.
Main Methods:
- * Exploratory review of scientific publications.
- * Synthesis of information from clinical, agricultural, and industrial domains.
- * Analysis of genetic, molecular, and environmental factors.
Main Results:
- * Specific clonal complexes (CC1, CC2, CC4, CC6, CC9, CC31, CC87, CC121, CC321) are linked to persistent L. monocytogenes.
- * Molecular mechanisms include genes conferring tolerance to disinfectants and metals (e.g., qacH, bcrABC, cadAC, mdrL, SSI-1, SSI-2).
- * Truncated inlA variants favor food colonization, while bile and antimicrobial resistance promote invasive infections. Agricultural systems and processing plant biofilms contribute to reservoirs.
Conclusions:
- * Listeria monocytogenes persistence results from a complex interplay of genetic, physiological, and environmental factors.
- * Agricultural systems and food processing environments act as critical reservoirs.
- * Integrated, interdisciplinary control strategies are essential to mitigate its impact on the food chain.
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