Literature DB >> 24702476

Neuropathology in sensory, but not motor, brainstem nuclei of the rat whisker circuit after diffuse brain injury.

Jahan D Miremami1, Pooja M Talauliker, Jordan L Harrison, Jonathan Lifshitz.   

Abstract

Neurological dysfunction after traumatic brain injury (TBI) is associated with pathology in cortical, subcortical, and brainstem nuclei. Our laboratory has reported neuropathology and microglial activation in the somatosensory barrel cortex (S1BF) and ventral posterior medial thalamus (VPM) after diffuse TBI in the rat, which correlated with post-injury whisker sensory sensitivity. The present study extends our previous work by evaluating pathology in whisking-associated sensory and motor brainstem nuclei. Brains from adult, male rats were recovered over 1 month after midline fluid percussion or sham injury. The principal trigeminal nucleus (PrV, sensory nucleus) and facial nucleus (VIIN, motor nucleus) were examined for neuropathology (silver histochemistry) and microglial activation (Iba1). Significant neuropathology in PrV was evident at 2 and 7 days post-injury compared to sham. Iba1-labeled microglia showed swollen somata and thickened processes over 1 month post-injury. In contrast, the VIIN showed non-significant neuropathology and reduced labeling of activated Iba1 microglia over 1 month post-injury. Together with our previous data, neuropathology and neuroinflammation in the whisker somatosensory pathway may contribute to post-injury sensory sensitivity more than the motor pathway. Whether these findings are direct results of the mechanical injury or consequences of progressive degeneration remains to be determined.

Entities:  

Keywords:  Microglial activation; neuropathology; rat; traumatic brain injury; vibrissal circuitry

Mesh:

Substances:

Year:  2014        PMID: 24702476     DOI: 10.3109/08990220.2014.897602

Source DB:  PubMed          Journal:  Somatosens Mot Res        ISSN: 0899-0220            Impact factor:   1.111


  6 in total

1.  Does time heal all wounds? Experimental diffuse traumatic brain injury results in persisting histopathology in the thalamus.

Authors:  Theresa Currier Thomas; Sarah B Ogle; Benjamin M Rumney; Hazel G May; P David Adelson; Jonathan Lifshitz
Journal:  Behav Brain Res       Date:  2016-12-29       Impact factor: 3.332

2.  Time Course of Remote Neuropathology Following Diffuse Traumatic Brain Injury in the Male Rat.

Authors:  Katherine R Giordano; L Matthew Law; Jordan Henderson; Rachel K Rowe; Jonathan Lifshitz
Journal:  Exp Neurobiol       Date:  2022-04-30       Impact factor: 3.800

3.  Trigeminal neuroplasticity underlies allodynia in a preclinical model of mild closed head traumatic brain injury (cTBI).

Authors:  Golam Mustafa; Jiamei Hou; Shigeharu Tsuda; Rachel Nelson; Ankita Sinharoy; Zachary Wilkie; Rahul Pandey; Robert M Caudle; John K Neubert; Floyd J Thompson; Prodip Bose
Journal:  Neuropharmacology       Date:  2016-03-10       Impact factor: 5.250

4.  A mouse Model of Focal Vascular Injury Induces Astrocyte Reactivity, Tau Oligomers, and Aberrant Behavior.

Authors:  Aric F Logsdon; Brandon P Lucke-Wold; Ryan C Turner; Xinlan Li; Chris E Adkins; Afroz S Mohammad; Jason D Huber; Charles L Rosen; Paul R Lockman
Journal:  Arch Neurosci       Date:  2017-04-30

5.  Experimental Traumatic Brain Injury Induces Chronic Glutamatergic Dysfunction in Amygdala Circuitry Known to Regulate Anxiety-Like Behavior.

Authors:  Joshua A Beitchman; Daniel R Griffiths; Yerin Hur; Sarah B Ogle; Caitlin E Bromberg; Helena W Morrison; Jonathan Lifshitz; P David Adelson; Theresa Currier Thomas
Journal:  Front Neurosci       Date:  2020-01-21       Impact factor: 4.677

6.  Spatial Distribution of Neuropathology and Neuroinflammation Elucidate the Biomechanics of Fluid Percussion Injury.

Authors:  Joshua A Beitchman; Jonathan Lifshitz; Neil G Harris; Theresa Currier Thomas; Audrey D Lafrenaye; Anders Hånell; C Edward Dixon; John T Povlishock; Rachel K Rowe
Journal:  Neurotrauma Rep       Date:  2021-02-08
  6 in total

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