Neuroinflammation, neurodegeneration and alteration of spatial memory in BALB/c mice through ampicillin-induced gut dysbiosis; NOS2 and NFL involvement in a microbiota-gut-brain axis model

We aimed to investigate ampicillin (AMP) mechanisms in microbiota-gut-brain axis. We evaluated its effect on two gut and brain regions and behavioral performances. We administred AMP (1 g/l) to BALB/c mice for 21 days. Then, we analyzed body weigth change, stool consistency scoring, gut length, inte...

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Veröffentlicht in:Journal of neuroimmunology 2024-07, Vol.392, p.578374, Article 578374
Hauptverfasser: Behairi, Nassima, Samer, Arezki, Sahraoui, Lynda, Mataam, Djehane Houria, Trari, Ryad, Flissi, Billel, Belguendouz, Houda, Amir, Zine-Charaf, Touil-Boukoffa, Chafia
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Sprache:eng
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Zusammenfassung:We aimed to investigate ampicillin (AMP) mechanisms in microbiota-gut-brain axis. We evaluated its effect on two gut and brain regions and behavioral performances. We administred AMP (1 g/l) to BALB/c mice for 21 days. Then, we analyzed body weigth change, stool consistency scoring, gut length, intestinal microbiota composition, nitric oxide synthase 2 (NOS2) expression and tissue integrity. We subsequently evaluated NOS2, GFAP, CD68 and NFL cerebral expression and spatial memory.Interestingly, our data showed gut microbiota disruption, NOS2 upregulation and tissue damage, associated to cerebral NOS2, GFAP, CD68 and NFL over-expression and behavioral alteration. Antiobiotic therapy should be prescribed with great caution. [Display omitted] •Ampicillin induces gut dysbiosis and inflammation throught nitric oxide synthase 2.•Ampicillin causes neuroinflammation, neurodegeneration and behavioral alteration.•Neurofilament light chain is involved in ampicillin-induced neurodegeneration.•Microbiota-gut-brain axis animal model
ISSN:0165-5728
1872-8421
1872-8421
DOI:10.1016/j.jneuroim.2024.578374