Mechanical allodynia & Hyperlagesia - page 3 Scientific Publications

Latest publication 01/01/2018

Monoaminergic descending pathways contribute to modulation of neuropathic pain b

This study characterizes the impact of increasing-intensity treadmill exercise (iTR) on noradrenergic (NE) and serotonergic (5HT) modulation of...

Array
(
    [id_prestablog_news] => 981
    [id_shop] => 1
    [date] => 2018-01-01 00:00:00
    [date_modification] => 2024-02-09 14:15:12
    [langues] => ["1","2"]
    [actif] => 1
    [slide] => 0
    [url_redirect] => 
    [average_rating] => 
    [number_rating] => 
    [author_id] => 1
    [featured] => 0
    [prim_key] => 1925
    [id_lang] => 1
    [title] => Monoaminergic descending pathways contribute to modulation of neuropathic pain b
    [paragraph] => Monoaminergic descending pathways contribute to modulation of neuropathic pain by increasing-intensity treadmill exercise after peripheral nerve injury
    [content] => 

Authors
V M Lopez-Alvarez, M Puigdomenech, X Navarro, A Cobianchi


Lab
nitat de Fisiologia Mdica, Facultat de Medicina, Universitat Aut˜noma de Barcelona, Spain.

Journal
Experimental Neurology

Abstract
This study characterizes the impact of increasing-intensity treadmill exercise (iTR) on noradrenergic (NE) and serotonergic (5HT) modulation of neuropathic pain. Following sciatic nerve transection and repair (SNTR) rats developed significant mechanical and thermal hyperalgesia that was partially prevented by iTR performed during the first 2Êweeks after injury. Marked decrease in the expression of 5HT2A and _1A and _-, but not _2A adrenergic receptors in the spinal cord dorsal horn was associated to SNTR and recovered by iTR, particularly in lamina II. iTR significantly increased 5HT2A in periaqueductal grey (PAG), raphe magnus (RM) and dorsal raphe nucleus (DRN), with a pattern suggesting reorganization of serotonergic excitatory interconnections between PAG and DRN. iTR also increased the expression of _1A in locus coeruleus (LC) and DRN, and _2 in LC, indicating that exercise enhanced activity of NE neurons, likely by activating autologous projections from DRN and PAG. iTR hypoalgesia was antagonized by blockade of _2 and 5HT2A receptors with administration of butoxamine and ketanserin. The neurotoxin DSP4 was injected to induce depletion of NE projections from LC before starting iTR. DSP4 treatment worsened mechanical hyperalgesia, but iTR hypoalgesia was similarly produced. Moreover, 5HT2A expression in LC further increased after DSP4 injection, all these results suggesting an intrinsic regulation of 5HT and NE activity between PAG, DRN and LC neurons activated by iTR. Finally, iTR significantly reduced microglial reactivity in LC and increased non-microglial BDNF expression, an effect that was reverted by butoxamine, implicating BDNF regulation in central 5HT/NE actions on neuropathic pain.

BIOSEB Instruments Used
Electronic Von Frey 4 (BIO-EVF4),Electronic Von Frey 5 with embedded camera (BIO-EVF5)

[meta_description] => [meta_keywords] => https://www.sciencedirect.com/science/article/pii/S0014488617302583 [meta_title] => [link_rewrite] => monoaminergic-descending-pathways-contribute-to-modulation-of-neuropathic-pain-by-increasing-intensity-treadmill-exercise-after-peripheral-nerve-injury [actif_langue] => 1 [read] => 1274 [count_comments] => 0 [id] => 981 [categories] => Array ( [101] => Array ( [id_prestablog_categorie] => 101 [title] => Exercise & Endurance [link_rewrite] => Exercise-and-Endurance ) [36] => Array ( [id_prestablog_categorie] => 36 [title] => Mechanical allodynia & Hyperlagesia [link_rewrite] => Mechanical-allodynia-hyperlagesia ) [29] => Array ( [id_prestablog_categorie] => 29 [title] => Neuropathic pain [link_rewrite] => Neuropathic-pain ) [10] => Array ( [id_prestablog_categorie] => 10 [title] => Pain [link_rewrite] => Pain ) [2] => Array ( [id_prestablog_categorie] => 2 [title] => Publications [link_rewrite] => publications ) ) [authors] => [paragraph_crop] => Monoaminergic descending pathways contribute to modulation of neuropathic pain by [...] [link_for_unique] => 1 [products_liaison] => Array ( [1859] => Array ( [name] => Electronic Von Frey - Wireless [description_short] =>

A quick solution to determine the mechanical sensitivity threshold in rodents (mice and rats). Now wireless, to be free from annoying cables!

This precise and easy-to-use electronic instrument is a must-have reference for your research in analgesia, nociception, neuro-pathologies and post-operative pain.

Instrument for ratsInstrument for mice

[thumb] => [img_empty] => /var/www/vhosts/de3310.ispfr.net/preprod.bioseb.com/modules/prestablog/views/img/product_link_white.jpg [image_presente] => 1 [link] => https://preprod.bioseb.com/en/pain-mechanical-allodynia-hyperalgesia/1859-electronic-von-frey-4.html ) [1860] => Array ( [name] => Electronic Von Frey 5 with embedded camera [description_short] =>

As an electronic version of the classical Von Frey Filaments esthesiometer (or aesthesiometer), the latest evolution of Bioseb's Electronic Von Frey instrument for determining the mechanical sensitivity threshold in rodents (rats and mice) is a must-have instrument for your reseach on hyperalgesia and allodynia. By measuring and recording the force at which the animal exhibits a paw withdrawal reflex, pathologies related to sensory response and hyper- or hypo-aesthesia can be studied.

The EVF5 includes an embedded camera inside the stimulator handle and a new, dedicated software revolutionizing the experimental process.

Instrument for ratsInstrument for mice

[thumb] => [img_empty] => /var/www/vhosts/de3310.ispfr.net/preprod.bioseb.com/modules/prestablog/views/img/product_link_white.jpg [image_presente] => 1 [link] => https://preprod.bioseb.com/en/pain-mechanical-allodynia-hyperalgesia/1860-electronic-von-frey-5-with-embedded-camera.html ) ) ) 1
Read more

Filters

Applications

Dates

<< 1 2 3 4 5 >>