Resiniferatoxin Hampers the Nocifensive Response of Caenorhabditis elegans to Noxious Heat, and Pathway Analysis Revealed that the Wnt Signaling Pathway is Involved

被引:0
|
作者
Jennifer Ben Salem
Bruno Nkambeu
Dina N. Arvanitis
Francis Beaudry
机构
[1] Université de Montréal,Groupe de Recherche en Pharmacologie Animal du Québec (GREPAQ), Département de Biomédecine Vétérinaire, Faculté de Médecine Vétérinaire
[2] Université de Montréal,Centre de recherche sur le cerveau et l’apprentissage (CIRCA)
[3] INSERM UMR1297,Institut des Maladies Métaboliques et Cardiovasculaires
[4] Université de Toulouse,undefined
来源
Neurochemical Research | 2022年 / 47卷
关键词
Transient receptor potential channels; Proteomics; Mass spectrometry; Resiniferatoxin; Nociception; Wnt signaling pathway;
D O I
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中图分类号
学科分类号
摘要
Resiniferatoxin (RTX) is a metabolite extracted from Euphorbia resinifera. RTX is a potent capsaicin analog with specific biological activities resulting from its agonist activity with the transient receptor potential channel vanilloid subfamily member 1 (TRPV1). RTX has been examined as a pain reliever, and more recently, investigated for its ability to desensitize cardiac sensory fibers expressing TRPV1 to improve chronic heart failure (CHF) outcomes using validated animal models. Caenorhabditis elegans (C. elegans) expresses orthologs of vanilloid receptors activated by capsaicin, producing antinociceptive effects. Thus, we used C. elegans to characterize the antinociceptive properties and performed proteomic profiling to uncover specific signaling networks. After exposure to RTX, wild-type (N2) and mutant C. elegans were placed on petri dishes divided into quadrants for heat stimulation. The thermal avoidance index was used to phenotype each tested C. elegans experimental group. The data revealed for the first time that RTX can hamper the nocifensive response of C. elegans to noxious heat (32 – 35 °C). The effect was reversed 6 h after RTX exposure. Additionally, we identified the RTX target, the C. elegans transient receptor potential channel OCR-3. The proteomics and pathway enrichment analysis results suggest that Wnt signaling is triggered by the agonistic effects of RTX on C. elegans vanilloid receptors.
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页码:622 / 633
页数:11
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