Diabète, Insuline & Glucose - Publications Scientifiques

Dernière publication 22/02/2022

Painful Diabetic Neuropathy Is Associated with Compromised Microglial IGF-1 Sign

Painful diabetic neuropathy (PDN) is a frequent and troublesome complication of diabetes, with little effective treatment. PDN is characterized by...

Array
(
    [id_prestablog_news] => 1505
    [id_shop] => 1
    [date] => 2022-02-22 00:00:00
    [date_modification] => 2024-02-09 14:15:13
    [langues] => ["1","2"]
    [actif] => 1
    [slide] => 0
    [url_redirect] => 
    [average_rating] => 
    [number_rating] => 
    [author_id] => 1
    [featured] => 0
    [prim_key] => 3215
    [id_lang] => 2
    [title] => Painful Diabetic Neuropathy Is Associated with Compromised Microglial IGF-1 Sign
    [paragraph] => Painful Diabetic Neuropathy Is Associated with Compromised Microglial IGF-1 Signaling Which Can Be Rescued by Green Tea Polyphenol EGCG in Mice
    [content] => 

Authors
X Chen, Y Le, SQ Tang et al


Lab
Department of Anesthesiology, The First PeopleÕs Hospital of Foshan, Foshan, Guangdong, China

Journal
Oxidative Medicine and Cellular Longevity

Abstract
Painful diabetic neuropathy (PDN) is a frequent and troublesome complication of diabetes, with little effective treatment. PDN is characterized by specific spinal microglia-mediated neuroinflammation. Insulin-like growth factor 1 (IGF-1) primarily derives from microglia in the brain and serves a vital role in averting the microglial transition into the proinflammatory M1 phenotype. Given that epigallocatechin-3-gallate (EGCG) is a potent anti-inflammatory agent that can regulate IGF-1 signaling, we speculated that EGCG administration might reduce spinal microglia-related neuroinflammation and combat the development of PDN through IGF-1/IGF1R signaling. Methods. Type 1 diabetes mellitus (T1DM) was established by a single intraperitoneal (i.p.) injection of streptozotocin (STZ) in mice. The protein expression level of IGF-1, its receptor IGF1R, interleukin 1beta (IL-1beta), tumor necrosis factor-alpha (TNF-alpha), and inducible nitric oxide synthase (iNOS) was determined by Western blot or immunofluorescence. Results. The spinal IGF-1 expression markedly decreased along with the presence of pain-like behaviors, the spinal genesis of neuroinflammation (increased IL-1beta, TNF-alpha, and Iba-1+ microglia), and the intensified M1 microglia polarization (increased iNOS+Iba-1+ microglia) in diabetic mice. IGF-1 could colocalize with neurons, astrocytes, and microglia, but only microglial IGF-1 was repressed in T1DM mice. Furthermore, we found that i.t. administration of mouse recombinant IGF-1 (rIGF-1) as well as i.t. or i.p. treatment with EGCG alleviated the diabetes-induced pain-like behaviors, reduced neuroinflammation (suppressed IL-1beta, TNF-alpha, and Iba-1+ microglia), prevented the M1 microglia polarization (less iNOS+Iba-1+ microglia), and restored the microglial IGF-1 expression. Conclusions. Our data highlighted the importance of maintaining spinal IGF-1 signaling in treating microglia-related neuroinflammation in PDN. This study also provides novel insights into the neuroprotective mechanisms of EGCG against neuropathic pain and neuroinflammation through IGF-1 signaling, indicating that this agent may be a promising treatment for PDN in the clinical setting.

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

[meta_description] => [meta_keywords] => https://doi.org/10.1155/2022/6773662 [meta_title] => [link_rewrite] => painful-diabetic-neuropathy-is-associated-with-compromised-microglial-igf-1-signaling-which-can-be-rescued-by-green-tea-polyphenol-egcg-in-mice [actif_langue] => 1 [read] => 866 [count_comments] => 0 [id] => 1505 [categories] => Array ( [81] => Array ( [id_prestablog_categorie] => 81 [title] => Diabète, Insuline & Glucose [link_rewrite] => Diabète-Insuline-Glucose ) [2] => Array ( [id_prestablog_categorie] => 2 [title] => Publications [link_rewrite] => publications ) ) [authors] => [paragraph_crop] => Painful Diabetic Neuropathy Is Associated with Compromised Microglial IGF-1 Signaling Which [...] [link_for_unique] => 1 [products_liaison] => Array ( [1860] => Array ( [name] => Von Frey Électronique 5 avec caméra intégrée [description_short] =>


En tant que version électronique du classique esthésiomètre à filaments de Von Frey, la dernière évolution de l’instrument électronique Von Frey de Bioseb, conçu pour déterminer le seuil de sensibilité mécanique chez les rongeurs (rats et souris) par stimulation sous la patte, est un outil indispensable pour vos recherches sur l’hyperalgésie et l’allodynie. En mesurant et en enregistrant la force à laquelle l’animal présente un réflexe de retrait de la patte, il est possible d’étudier les pathologies liées à la réponse sensorielle ainsi qu’à l’hyper- ou l’hypoesthésie.

L'EVF5 intègre une caméra embarquée au niveau de la zone de stimulation et fonctionne avec un nouveau logiciel dédié révolutionnaire

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/fr/douleur-allodyniehyperalgesie-mecanique/1860-electronic-von-frey-5-with-embedded-camera.html ) [1859] => Array ( [name] => Von Frey Électronique - Sans Fil [description_short] =>

Une solution rapide pour déterminer le seuil de sensibilité à la douleur mécanique chez les rongeurs (rats et souris). Maintenant en version sans-fil, pour être libéré des câbles!

Cet instrument électronique précis et simple d'utilisation est le test de référence pour vos recherches en analgésie, nociception, neuropathies et douleurs post-opératoires

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/fr/douleur-allodyniehyperalgesie-mecanique/1859-electronic-von-frey-4.html ) ) ) 1
En lire plus

Filtres

Applications

Dates

<< 1 2 >>