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Seizures elevate gliovascular unit Ca2+ and cause sustained vasoconstriction
Cam Ha T. Tran, Antis G. George, G. Campbell Teskey, Grant R. Gordon
Cam Ha T. Tran, Antis G. George, G. Campbell Teskey, Grant R. Gordon
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Research Article Neuroscience

Seizures elevate gliovascular unit Ca2+ and cause sustained vasoconstriction

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Abstract

Seizures can result in a severe hypoperfusion/hypoxic attack that causes postictal memory and behavioral impairments. However, neither postictal changes to microvasculature nor Ca2+ changes in key cell types controlling blood perfusion have been visualized in vivo, leaving essential components of the underlying cellular mechanisms unclear. Here, we use 2-photon microvascular and Ca2+ imaging in awake mice to show that seizures result in a robust vasoconstriction of cortical penetrating arterioles, which temporally mirrors the prolonged postictal hypoxia. The vascular effect was dependent on cyclooxygenase 2, as pretreatment with ibuprofen prevented postictal vasoconstriction. Moreover, seizures caused a rapid elevation in astrocyte endfoot Ca2+ that was confined to the seizure period, and vascular smooth muscle cells displayed a significant increase in Ca2+ both during and following seizures, lasting up to 75 minutes. Our data show enduring postictal vasoconstriction and temporal activities of 2 cell types within the neurovascular unit that are associated with seizure-induced hypoperfusion/hypoxia. These findings support prevention of this event may be a novel and tractable treatment strategy in patients with epilepsy who experience extended postseizure impairments.

Authors

Cam Ha T. Tran, Antis G. George, G. Campbell Teskey, Grant R. Gordon

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Figure 1

MES seizures induce postictal hypoxia that generalizes across sex and strains.

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MES seizures induce postictal hypoxia that generalizes across sex and st...
(A) Experimental setup has mice with a chronically implanted optode and electrode in their barrel cortex. Awake freely moving mice received one 0.2-second MES per day for 3 days with concurrent local field potential and local partial pressure of oxygen (pO2) recordings. (B and C) Mean oxygen profile before, during, and after MES in male (B) and female (C) C57BL/6J mice (N = 5, each). The inset shows the duration of electrographic seizures during the 3 seizures. (D) Quantification (mean ± SEM) of the area (depth and duration) below the severe hypoxic threshold (pO2 < 10 mmHg) following the third seizure. Male and female C57BL/6J mice were not different from each other (t test, t[8] = 1.11, P = 0.30). (E and F) Mean oxygen profile before, during, and after MES in mixed sex Slc1a3 (astrocyte reporter) (E) and PdgfrB (mural cell reporter) (F) mice (N = 5, each). (G) Quantification (mean ± SEM) of the area below the severe hypoxic threshold (pO2 < 10 mmHg) following the third seizure. Slc1a3 and PdgfrB and combined male and female C57BL/6J mice were not different from each other (1-way ANOVA, F[2,17] = 0.56, P = 0.58).

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