Publications

Dernière publication 17/02/2017

Genetic ablation of GINIP-expressing primary sensory neurons strongly impairs Fo

Primary sensory neurons are heterogeneous by myriad of molecular criteria. However, the functional significance of this remarkable heterogeneity is...

Array
(
    [id_prestablog_news] => 911
    [id_shop] => 1
    [date] => 2017-02-17 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] => 1786
    [id_lang] => 2
    [title] => Genetic ablation of GINIP-expressing primary sensory neurons strongly impairs Fo
    [paragraph] => Genetic ablation of GINIP-expressing primary sensory neurons strongly impairs Formalin-evoked pain.
    [content] => 

Authors
Urien L, Gaillard S, Lo Re L, Malapert P, Bohic M, Reynders A, Moqrich A


Lab
""Aix-Marseille-Université, Institut de Biologie du Développement de Marseille, Marseille, France ""

Journal
Scientific Reports

Abstract
Primary sensory neurons are heterogeneous by myriad of molecular criteria. However, the functional significance of this remarkable heterogeneity is just emerging. We precedently described the GINIP(+) neurons as a new subpopulation of non peptidergic C-fibers encompassing the free nerve ending cutaneous MRGPRD(+) neurons and C-LTMRs. Using our recently generated ginip mouse model, we have been able to selectively ablate the GINIP(+) neurons and assess their functional role in the somatosensation. We found that ablation of GINIP(+) neurons affected neither the molecular contents nor the central projections of the spared neurons. GINIP-DTR mice exhibited impaired sensation to gentle mechanical stimuli applied to their hairy skin and had normal responses to noxious mechanical stimuli applied to their glabrous skin, under acute and injury-induced conditions. Importantly, loss of GINIP(+) neurons significantly altered formalin-evoked first pain and drastically suppressed the second pain response. Given that MRGPRD(+) neurons have been shown to be dispensable for formalin-evoked pain, our study suggest that C-LTMRs play a critical role in the modulation of formalin-evoked pain.

BIOSEB Instruments Used
Cold Hot Plate Test (BIO-CHP),Von Frey Filaments (Bio-VF-M),Thermal Gradient Test (BIO-GRADIENT)

[meta_description] => [meta_keywords] => https://www.nature.com/articles/srep43493 [meta_title] => [link_rewrite] => genetic-ablation-of-ginip-expressing-primary-sensory-neurons-strongly-impairs-formalin-evoked-pain- [actif_langue] => 1 [read] => 1184 [count_comments] => 0 [id] => 911 [categories] => Array ( [36] => Array ( [id_prestablog_categorie] => 36 [title] => Allodynie mécanique & Hyperalgésie [link_rewrite] => Allodynie-mecanique-Hyperalgesie ) [10] => Array ( [id_prestablog_categorie] => 10 [title] => Douleur [link_rewrite] => Douleur ) [27] => Array ( [id_prestablog_categorie] => 27 [title] => Douleurs générales [link_rewrite] => Douleurs-generales ) [2] => Array ( [id_prestablog_categorie] => 2 [title] => Publications [link_rewrite] => publications ) [13] => Array ( [id_prestablog_categorie] => 13 [title] => Système sensoriel [link_rewrite] => Systeme-sensoriel ) [51] => Array ( [id_prestablog_categorie] => 51 [title] => Système somatosensoriel [link_rewrite] => Systeme-somatosensoriel ) ) [authors] => [paragraph_crop] => Genetic ablation of GINIP-expressing primary sensory neurons strongly impairs Formalin-evoked pain. [link_for_unique] => 1 [products_liaison] => Array ( [563] => Array ( [name] => Plaque froid et chaud [description_short] =>

Instrument de test de la sensibilité de l'animal à la douleur résultant de l'exposition à la chaleur ou au froid: la plaque froid et chaud de Bioseb est un instrument innovant ouvrant de nouveaux champs d'investigation pour vos recherches en analgésie et nociception, et un outil efficace pour le screening de substances analgésiques basé sur les modèles de rat ou souris.

Instrument for ratsInstrument for mice

[thumb] => [img_empty] => /var/www/vhosts/de3310.ispfr.net/bioseb2024/modules/prestablog/views/img/product_link_white.jpg [image_presente] => 1 [link] => https://bioseb.com/fr/douleur-allodyniehyperalgesie-thermique/563-cold-hot-plate-test.html ) [577] => Array ( [name] => Filaments de Von Frey [description_short] =>

Jeu de 20 filaments basé sur le jeu de monofilaments de Wemmes Weinstein - filament rétractable pour protéger celui-ci et faciliter le transport

Instrument for ratsInstrument for mice

[thumb] => [img_empty] => /var/www/vhosts/de3310.ispfr.net/bioseb2024/modules/prestablog/views/img/product_link_white.jpg [image_presente] => 1 [link] => https://bioseb.com/fr/douleur-allodyniehyperalgesie-mecanique/577-von-frey-filaments.html ) [976] => Array ( [name] => Test de gradient thermique [description_short] =>

Le Test de Gradient Thermique indépendant de l'opérateur est un nouvel instrument de recherche en analgésie et nociception permettant de démontrer la préférence de place et le seuil de confort de température des rongeurs (rats et souris) se déplaçant librement sur une plaque offrant un gradient de température stable - un outil innovant pour le screening de substances pharmacologiques et les recherches sur la nocicpetion thermique.

Instrument for ratsInstrument for mice

[thumb] => [img_empty] => /var/www/vhosts/de3310.ispfr.net/bioseb2024/modules/prestablog/views/img/product_link_white.jpg [image_presente] => 1 [link] => https://bioseb.com/fr/douleur-allodyniehyperalgesie-thermique/976-thermal-gradient-test.html ) ) ) 1
En lire plus

Filtres

Applications

Dates

<< 1 ... 86 87 88 89 90 >>