胼胝体
神经科学
中风恢复
细胞外小泡
自然恢复
小泡
缺血
细胞生物学
细胞外
化学
冲程(发动机)
生物
医学
内科学
生物化学
工程类
康复
机械工程
膜
作者
Yessica Heras‐Romero,Axayácatl Morales‐Guadarrama,Ricardo A. Santana-Martínez,Isaac Ponce,Ruth Rincón-Heredia,A. César Poot-Hernández,Araceli Martínez-Moreno,Esteban Urrieta,Berenice N. Bernal‐Vicente,Aura N. Campero-Romero,Perla Moreno‐Castilla,Nigel H. Greig,Martha L. Escobar,Luis Concha,Luis B. Tovar‐y‐Romo
标识
DOI:10.1101/2021.04.19.440321
摘要
Abstract Spontaneous recovery after a stroke accounts for a major part of the neurological recovery in patients. However limited, the spontaneous recovery is mechanistically driven by axonal restorative processes for which several molecular cues have been previously described. We report the acceleration of spontaneous recovery in a preclinical model of ischemia/reperfusion in rats via a single intracerebroventricular administration of extracellular vesicles released from primary cortical astrocytes. We used MRI, confocal and multiphoton microscopy to correlate the structural remodeling of the corpus callosum and striatocortical circuits with neurological performance over 21 days. We also evaluated the functionality of the corpus callosum by repetitive recordings of compound action potentials to show that the recovery facilitated by astrocytic extracellular vesicles was both anatomical and functional. Our data provide compelling evidence that astrocytes can hasten the basal recovery that naturally occurs post-stroke through the release of cellular mediators contained in extracellular vesicles.
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