Reactive astrocytes prevent maladaptive plasticity after ischemic stroke

Abstract:

Restoration of functional connectivity is a major contributor to functional recovery after stroke. We investigated the role of reactive astrocytes in functional connectivity and recovery after photothrombotic stroke in mice with attenuated reactive gliosis (GFAP–/–Vim–/–). Infarct volume and longitudinal functional connectivity changes were determined by in vivo T2-weighted magnetic resonance imaging (MRI) and resting-state functional MRI. Sensorimotor function was assessed with behavioral tests, and glial and neural plasticity responses were quantified in the peri-infarct region. Four weeks after stroke, GFAP–/–Vim–/– mice showed impaired recovery of sensorimotor function and aberrant restoration of global neuronal connectivity. These mice also exhibited maladaptive plasticity responses, shown by higher number of lost and newly formed functional connections between primary and secondary targets of cortical stroke regions and increased peri-infarct expression of the axonal plasticity marker Gap43. We conclude that reactive astrocytes modulate recovery-promoting plasticity responses after ischemic stroke.

Citation: Progress in Neurobiology 209:102199

Date Published: 1st Feb 2022

Registered Mode: by DOI

Authors: Markus Aswendt, Ulrika Wilhelmsson, Frederique Wieters, Anna Stokowska, Felix Johannes Schmitt, Niklas Pallast, Yolanda de Pablo, Lava Mohammed, Mathias Hoehn, Marcela Pekna, Milos Pekny

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Citation
Aswendt, M., Wilhelmsson, U., Wieters, F., Stokowska, A., Schmitt, F. J., Pallast, N., de Pablo, Y., Mohammed, L., Hoehn, M., Pekna, M., & Pekny, M. (2022). Reactive astrocytes prevent maladaptive plasticity after ischemic stroke. In Progress in Neurobiology (Vol. 209, p. 102199). Elsevier BV. https://doi.org/10.1016/j.pneurobio.2021.102199
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Created: 4th Nov 2024 at 13:39

Last updated: 4th Nov 2024 at 13:39

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