Temporal and cell-specific changes to cellular iron sequestration and lipid peroxidation in a murine model of neonatal hypoxic-ischemic brain injury.
Vithayathil, J.; Shankar, A.; Milne, G. L.; Jensen, F. E.; Talos, D. M.; Dunaief, J. L.
Show abstract
BackgroundIron accumulation and lipid peroxidation are pathophysiologic mechanisms that drive neonatal hypoxic-ischemic (HI) brain injury. Characterization of spatiotemporal changes in these processes will help elucidate their role in ischemic neuronal injury as an initial step towards developing targeted interventions. MethodsHI was induced in post-natal day 9 mice using the modified-Vannucci model. Hippocampal tissue from ipsilateral HI exposed, contralateral hypoxia exposed and sham animals was collected at 6h, 24h, 72h and 7d post-HI. Tissue was subsequently evaluated for markers of cell death (TUNEL), intracellular iron changes (FerroOrange, fluorescent in situ and immunofluorescence), and lipid peroxidation (real time PCR, Gpx4 immunofluorescence and mass spectrometry). Mass spectrometry measured isoprostanes (15-F2t-IsoP) and neuroprostanes (4-F4t-NP) as lipid peroxidation markers of arachidonic (ARA) and docosahexaenoic acid (DHA), respectively. ResultsCompared to sham, the HI hippocampus showed increased intracellular labile iron levels that was maximal at 6h post-HI with subsequent elevation in only neuroprostanes at 24h post-HI. TUNEL labeling peaked at 24h post-HI. At 72h, labile iron levels and lipid peroxidation declined corresponding with peak infiltration of ferritin positive microglia/macrophages and the start of TUNEL staining decline. In addition, surviving neurons had increased expression of Gpx4 peaking at 72h post-HI that normalized by 7d post-HI. ConclusionsThese findings suggest that following HI, an acute increase in labile iron and DHA peroxidation are correlated with markers of cell death that peak at 24h post-HI. Microglial/macrophage iron sequestration and neuronal antioxidant responses may ameliorate further injury and represent targets for neuroprotective therapies.
Matching journals
The top 12 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 95%
- Acute treatment with TrkB agonist LM22A-4 confers neuroprotection and preserves myelin integrity in a mouse model of pediatric traumatic brain injury 92%
- Biphasic Changes in Hippocampal Granule Cells after Traumatic Brain Injury 91%
Similar papers in this journal
- Spatial Analysis of Neural Cell Proteomic Profiles following Ischemic Stroke in Mice using High-Plex Digital Spatial Profiling 94%
- NRF2 deficiency promotes ferroptosis of astrocytes mediated by oxidative stress in Alzheimer's disease 93%
- Neurovascular unit alterations in the growth restricted newborn are improved following ibuprofen treatment 92%
Similar papers in this journal
- Effects of advanced age upon astrocyte-specific responses to acute traumatic brain injury in mice 94%
- Neuronal nuclear calcium signaling suppression of microglial reactivity is mediated by osteoprotegerin after traumatic brain injury 94%
- Changes in lipid metabolism track with the progression of neurofibrillary pathology in tauopathies. 93%
Similar papers in this journal
- Metformin-mediated mitochondrial protection post-cardiac arrest improves EEG activity and confers neuroprotection and survival benefit 94%
- Elastin-like polypeptide delivery of anti-inflammatory peptides to the brain following ischemic stroke 91%
- Spatial mapping of dextran sodium sulphate-induced intestinal inflammation and its systemic effects 91%
"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.