Please use this identifier to cite or link to this item: https://hdl.handle.net/10216/153765
Author(s): Lukoyanov, NV
Watanabe, H
Carvalho, LS
Kononenko, O
Sarkisyan, D
Zhang, M
Andersen, MS
Lukoyanova, EA
Galatenko, V
Tonevitsky, A
Bazov, I
Iakovleva, T
Schouenborg, J
Bakalkin, G
Title: Left-right side-specific endocrine signaling complements neural pathways to mediate acute asymmetric effects of brain injury
Publisher: eLife Sciences Publications
Issue Date: 2021
Abstract: Brain injuries can interrupt descending neural pathways that convey motor commands from the cortex to spinal motoneurons. Here, we demonstrate that a unilateral injury of the hindlimb sensorimotor cortex of rats with completely transected thoracic spinal cord produces hindlimb postural asymmetry with contralateral flexion and asymmetric hindlimb withdrawal reflexes within 3 hr, as well as asymmetry in gene expression patterns in the lumbar spinal cord. The injury-induced postural effects were abolished by hypophysectomy and were mimicked by transfusion of serum from animals with brain injury. Administration of the pituitary neurohormones b-endorphin or Arg-vasopressin-induced side-specific hindlimb responses in naive animals, while antagonists of the opioid and vasopressin receptors blocked hindlimb postural asymmetry in rats with brain injury. Thus, in addition to the well-established involvement of motor pathways descending from the brain to spinal circuits, the side-specific humoral signaling may also add to postural and reflex asymmetries seen after brain injury.
Subject: Brain injury
Left-right side
Neuroendocrine signaling
Neurohormones
Neuroscience
Nociceptive withdrawal reflex
Postural asymmetry
Rat
DOI: 10.7554/ELIFE.65247
URI: https://hdl.handle.net/10216/153765
Source: eLife, vol.10:e65247
Document Type: Artigo em Revista Científica Internacional
Rights: openAccess
License: https://creativecommons.org/licenses/by/4.0/
Appears in Collections:I3S - Artigo em Revista Científica Internacional

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