Sub-strain-Dependent Differences in Gut Barrier Permeability, Bacterial Translocation and Post-Stroke Inflammation in Wistar Rats
Granados-Martinez, C.; Alfageme-Lopez, N.; Navarro-Oviedo, M.; Mora-Cuadrado, V.; Sevillano-Fernandez, D.; Alou-Cervera, L.; Fernandez-Valle, M. E.; Hurtado, O.; Moro, M. A.; Lizasoain, I.; PRADILLO, J. M.
Show abstract
BackgroundStroke induces profound neuroinflammation and systemic immune dysregulation, including disturbances in gut homeostasis. Experimental evidence suggests that intestinal barrier permeability (IBP) and bacterial translocation (BT) critically influence stroke outcomes. However, biological variability among commonly used rodent sub-strains has received limited attention. MethodsIn this pilot study, we compared post-stroke immune responses in two Wistar rat sub-strains obtained from different suppliers: RccHan (Envigo) and RjHan (Janvier). Following transient middle cerebral artery occlusion, animals were assessed 72 hours later and stratified according to the presence or absence of BT. Immune cell populations in blood and bone marrow were analyzed by flow cytometry, and leukocyte infiltration into ischemic brain tissue was quantified by immunohistochemistry. ResultsBoth sub-strains developed significant infarcts and neurological deficits. RccHan rats displayed larger infarct volumes and more extensive BT across multiple organs. In contrast, RjHan rats exhibited BT mainly confined to mesenteric lymph nodes but showed greater IBP. Although dissemination was broader in RccHan rats, overall bacterial burden was slightly lower compared with RjHan, and extra-intestinal bacterial composition differed between groups. Notably, RjHan rats presented stronger systemic and central immune activation, with marked alterations in lymphocyte and monocyte populations and enhanced granulocyte and T cell infiltration within ischemic lesions. ConclusionsThese findings demonstrate that sub-strain origin profoundly influences post-stroke intestinal barrier integrity, bacterial dissemination, and immune responses. Considering sub-strain-related variability is essential to improve reproducibility and translational relevance in preclinical stroke research.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A post-injury immune challenge with lipopolysaccharide following adult traumatic brain injury alters neuroinflammation and the gut microbiome acutely, but has little effect on chronic outcomes 92%
- Initiation site of experimentally-evoked spreading depolarizations influence tissue outcomes in a murine stroke model 92%
- Unveiling Distinct Neuroimmune Responses in Mouse Models of Cervical Spinal Cord Injury: Hemisection versus Hemicontusion 91%
Similar papers in this journal
- Can quantifying morphology and TMEM119 expression distinguish between microglia and infiltrating macrophages after ischemic stroke and reperfusion in male and female mice? 94%
- A molecular brain atlas reveals cellular shifts during the repair phase of stroke 92%
- Effects of advanced age upon astrocyte-specific responses to acute traumatic brain injury in mice 92%
Similar papers in this journal
- Assessing post-stroke cognition in pre-clinical models: lessons and recommendations from a multi-center study 95%
- A Role For Astrocytic Insulin-Like Growth Factor I Receptors In The Response To Ischemic Insult 94%
- Dynamic Changes To The Intestinal Environment Occur Throughout Recovery From Experimental Ischaemic Stroke 93%
Similar papers in this journal
- Stroke increases the expression of ACE2, the SARS-CoV-2 binding receptor, in murine lungs 95%
- Loss of tissue non-specific alkaline phosphatase (TNAP) enzyme activity in cerebral microvessels is coupled to persistent neuroinflammation and behavioral deficits in late sepsis 92%
- C-section and systemic inflammation synergize to disrupt the neonatal gut microbiota and brain development in a model of prematurity 91%
Similar papers in this journal
- Astrocyte-secreted chordin-like 1 regulates spine density after ischemic stroke 94%
- Human chorionic gonadotropin decreases cerebral cystic encephalomalacia and parvalbumin interneuron degeneration in a pro-inflammatory model of mouse neonatal hypoxia-ischemia. 92%
- Dynamic cerebral autoregulation during and 3 months after endovascular treatment in large-vessel occlusion stroke 90%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.