| Literature DB >> 28389378 |
Sara Touj1, Sébastien Houle2, Djamel Ramla2, Renaud Jeffrey-Gauthier1, Harumi Hotta3, Gilles Bronchti4, Maria-Grazia Martinoli5, Mathieu Piché6.
Abstract
Chronic pain is associated with autonomic disturbance. However, specific effects of chronic back pain on sympathetic regulation remain unknown. Chronic pain is also associated with structural changes in the anterior cingulate cortex (ACC), which may be linked to sympathetic dysregulation. The aim of this study was to determine whether sympathetic regulation and ACC surface and volume are affected in a rat model of chronic back pain, in which complete Freund Adjuvant (CFA) is injected in back muscles. Sympathetic regulation was assessed with renal blood flow (RBF) changes induced by electrical stimulation of a hind paw, while ACC structure was examined by measuring cortical surface and volume. RBF changes and ACC volume were compared between control rats and rats injected with CFA in back muscles segmental (T10) to renal sympathetic innervation or not (T2). In rats with CFA, chronic inflammation was observed in the affected muscles in addition to increased nuclear factor-kappa B (NF-kB) protein expression in corresponding spinal cord segments (p=0.01) as well as decreased ACC volume (p<0.05). In addition, intensity-dependent decreases in RBF during hind paw stimulation were attenuated by chronic pain at T2 (p's<0.05) and T10 (p's<0.05), but less so at T10 compared with T2 (p's<0.05). These results indicate that chronic back pain alters sympathetic functions through non-segmental mechanisms, possibly by altering descending regulatory pathways from ACC. Yet, segmental somato-sympathetic reflexes may compete with non-segmental processes depending on the back region affected by pain and according to the segmental organization of the sympathetic nervous system.Entities:
Keywords: anterior cingulate cortex; chronic pain; neuroinflammation; nociception; somato-autonomic reflexes; sympathetic
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Year: 2017 PMID: 28389378 DOI: 10.1016/j.neuroscience.2017.03.047
Source DB: PubMed Journal: Neuroscience ISSN: 0306-4522 Impact factor: 3.590