| Literature DB >> 30662329 |
Yun-Shen Tai1, Shih-Chieh Yang2, Yi-Chun Hsieh3, Yaw-Bin Huang4,5, Pao-Chu Wu4, Ming-Jun Tsai6,7,8, Yi-Hung Tsai4, Ming-Wei Lin5,9.
Abstract
The dysfunction of voltage-gated ion channels contributes to the pathology of ischemic stroke. In this study, we developed rat models of transient ischemic attack (TIA) and reversible ischemic neurological deficit (RIND) that was induced via the injection of artificial embolic particles during full consciousness, that allow us to monitor the neurologic deficit and positron emission tomography (PET) scans in real-time. We then evaluated the infarction volume of brain tissue was confirmed by 2,3,5-triphenyl tetrazolium chloride (TTC) staining, and gene expressions were evaluated by quantitative real-time PCR (qPCR). We found that rats with TIA or RIND exhibited neurological deficits as determined by negative TTC and PET findings. However, the expression of voltage-gated sodium channels in the hippocampus was significantly up-regulated in the qPCR array study. Furthermore, an altered expression of sodium channel β-subunits and potassium channels, were observed in RIND compared to TIA groups. In conclusion, to our knowledge, this is the first report of the successful evaluation of voltage-gated ion channel gene expression in TIA and RIND animal models. This model will aid future studies in investigating pathophysiological mechanisms, and in developing new therapeutic compounds for the treatment of TIA and RIND.Entities:
Keywords: animal model; embolic stroke; reversible ischemic neurological deficit; transient ischemic attack; voltage-gated ion channels
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Year: 2019 PMID: 30662329 PMCID: PMC6332493 DOI: 10.7150/ijms.27442
Source DB: PubMed Journal: Int J Med Sci ISSN: 1449-1907 Impact factor: 3.738
Figure 1Physical characteristics of the lipid microparticles. (A) Representative SEM analysis showed the surface morphology of the particles. (Upper panel, bar = 10 μm; lower panel, bar = 50 μm) (C) Distribution of the sizes of lipid microparticles. Particles size was classified using different sizes of mesh. The distribution tends to have a skewed type (n = 3).
Figure 2(A) The duration of neurologic behaviors was repeatedly evaluated after injection of the particles. (B) The infarction area of rat brains after TIA, RIND, and irreversible ischemic damage was determined by TTC staining. Arrows indicate the infraction. (C) The metabolic changes in the brains after RIND were detected by PET scan. (D)The experiments were repeated three times and similar results were observed. All p-values are represented as (p < 0.05).
Figure 3(A) Hierarchical cluster analysis of significant expression of rat hippocampal voltage-gated ion channel mRNA in control, TIA and RIND conditions. (B) Genes exhibiting greater change following TIA or RIND. The experiments were repeated in triplicate on one occasion. All p-values are represented as (p < 0.05).