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Updated: Jan 19, 2026

Listeria monocytogenes Infection of the Brain
Published on: October 2, 2018
Evidence of hypervirulence in Listeria monocytogenes clonal complex 14
Maria X Cardenas-Alvarez1, Megan K Townsend Ramsett1, Sahar Malekmohammadi1
1Department of Microbiological Sciences, North Dakota State University, Fargo, ND 58108, USA.
Abstract:
Purpose. Listeria monocytogenes is a foodborne pathogen that causes central nervous system (CNS) and maternal-neonatal (MN) infections, bacteremia (BAC), and gastroenteritis in humans and ruminants. Specific clonal complexes (CC) have been associated with severe listeriosis cases, however, less is known about differences among subgroup virulence patterns. This study aimed to assess variation in virulence across different CC and clinical outcomes.Methodology. Galleria mellonella larvae were used to compare virulence phenotypes of 34 L. monocytogenes strains representing isolates from CC1, CC6 (from lineage I), and CC7, CC9, CC14, CC37 and CC204 (from lineage II) classified by clinical outcome: BAC, CNS and MN infection. Larvae survival, LD50, cytotoxicity, health index scores and bacterial concentrations post-infection were evaluated as quantifiable indicators of virulence.Results. Isolates belonging to CC14 and MN-associated infections are hypervirulent in G. mellonella as they led to lower G. mellonella survival rates and health index scores, as well as reduced cytotoxic effects when compared to other CC and clinical outcomes included here. CC14 isolates also showed increased bacterial concentrations at 8 and 24 h post-infection, indicating ability to survive the initial immune response and proliferate within G. mellonella larvae.Conclusion. Subgroups of L. monocytogenes possess different virulence phenotypes that may be associated with niche-specificity. While hypervirulent clones have been identified so far in lineage I, our data demonstrate that hypervirulent clones are not restricted to lineage I, as CC14 belongs to lineage II. Identification of subgroups with a higher ability to cause disease may facilitate surveillance and management of listeriosis.
Insights
Certain Listeria monocytogenes subgroups, particularly CC14, exhibit hypervirulence, causing severe infections. This finding challenges the notion that hypervirulent clones are exclusive to lineage I, highlighting lineage II
Area of Science:
- Microbiology
- Infectious Diseases
- Food Safety
Background:
- Listeria monocytogenes is a significant foodborne pathogen.
- Specific clonal complexes (CC) are linked to severe listeriosis, but virulence variations within subgroups are poorly understood.
Purpose of the Study:
- To investigate virulence differences among Listeria monocytogenes clonal complexes (CC).
- To correlate specific CC and clinical outcomes with virulence phenotypes.
Main Methods:
- Utilized Galleria mellonella larvae model to assess virulence of 34 L. monocytogenes strains from various CC and clinical outcomes (bacteremia, CNS, maternal-neonatal infections).
- Quantified virulence through larval survival, LD50, cytotoxicity, health index, and bacterial load post-infection.
Main Results:
- CC14 isolates and maternal-neonatal (MN)-associated infections demonstrated hypervirulence in G. mellonella.
- CC14 strains showed lower larval survival, reduced health index scores, and increased bacterial concentrations, indicating enhanced virulence and proliferation.
- Hypervirulence was observed in CC14, a subgroup belonging to lineage II, not exclusively lineage I.
Conclusions:
- Listeria monocytogenes subgroups exhibit distinct virulence phenotypes potentially linked to niche adaptation.
- Hypervirulent clones are not confined to lineage I; lineage II subgroups like CC14 also possess significant virulence.
- Identifying hypervirulent subgroups can improve listeriosis surveillance and management strategies.
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