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Acid-sensing ion channel 3 is required for agmatine-induced histamine-independent itch in mice

INTRODUCTION: Itch is a common symptom of many skin and systemic diseases. Identifying novel endogenous itch mediators and the downstream signaling pathways involved will contribute to the development of new strategies for the treatment of chronic itch. In the present study, we adopted behavioral te...

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Autores principales: Zhou, Guo-Kun, Xu, Wen-Jing, Lu, Yi, Zhou, Yan, Feng, Chen-Zhang, Zhang, Jiang-Tao, Sun, Shi-Yu, Wang, Ruo-Meng, Liu, Tong, Wu, Bin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10016355/
https://www.ncbi.nlm.nih.gov/pubmed/36937045
http://dx.doi.org/10.3389/fnmol.2023.1086285
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author Zhou, Guo-Kun
Xu, Wen-Jing
Lu, Yi
Zhou, Yan
Feng, Chen-Zhang
Zhang, Jiang-Tao
Sun, Shi-Yu
Wang, Ruo-Meng
Liu, Tong
Wu, Bin
author_facet Zhou, Guo-Kun
Xu, Wen-Jing
Lu, Yi
Zhou, Yan
Feng, Chen-Zhang
Zhang, Jiang-Tao
Sun, Shi-Yu
Wang, Ruo-Meng
Liu, Tong
Wu, Bin
author_sort Zhou, Guo-Kun
collection PubMed
description INTRODUCTION: Itch is a common symptom of many skin and systemic diseases. Identifying novel endogenous itch mediators and the downstream signaling pathways involved will contribute to the development of new strategies for the treatment of chronic itch. In the present study, we adopted behavioral testing, patch clamp recording and metabonomics analysis to investigate the role of agmatine in itch and the underlying mechanism. METHODS: Behavioral analysis was used to evaluate the establishing of acute and chronic itch mice model, and to test the effects of different drugs or agents on mice itch behavior. Western blotting analysis was used to test the effect of agmatine on phosphorylation of ERK (p-ERK) expression in the spinal cord. Patch clamp recording was used to determine the effect agmatine on the excitability of DRG neurons and the role of ASIC3. Finally, the metabonomics analysis was performed to detect the concentration of agmatine in the affected skin under atopic dermatitis or psoriasis conditions. RESULTS: We fused a mouse model and found that an intradermal injection of agmatine (an endogenous polyamine) into the nape of the neck or cheek induced histamine-independent scratching behavior in a dose-dependent manner. In addition, the ablation of nociceptive C-fibers by resiniferatoxin (RTX) abolished agmatine-induced scratching behavior. However, agmatine-induced itch was not affected by the pharmacological inhibition of either transient receptor potential vanilloid 1 (TRPV1) or transient receptor potential ankyrin 1 (TRPA1); similar results were obtained from TRPV1(−/−) or TRPA1(−/−) mice. Furthermore, agmatine-induced itch was significantly suppressed by the administration of acid-sensing ion channel 3 (ASIC3) inhibitors, APETx2 or amiloride. Agmatine also induced the upregulation of p-ERK in the spinal cord; this effect was inhibited by amiloride. Current clamp recording showed that the acute perfusion of agmatine reduced the rheobase and increased the number of evoked action potentials in acute dissociated dorsal root ganglion (DRG) neurons while amiloride reversed agmatine-induced neuronal hyperexcitability. Finally, we identified significantly higher levels of agmatine in the affected skin of a mouse model of atopic dermatitis (AD) when compared to controls, and the scratching behavior of AD mice was significantly attenuated by blocking ASIC3. DISCUSSION: Collectively, these results provide evidence that agmatine is a novel mediator of itch and induces itch via the activation of ASIC3. Targeting neuronal ASIC3 signaling may represent a novel strategy for the treatment of itch.
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spelling pubmed-100163552023-03-16 Acid-sensing ion channel 3 is required for agmatine-induced histamine-independent itch in mice Zhou, Guo-Kun Xu, Wen-Jing Lu, Yi Zhou, Yan Feng, Chen-Zhang Zhang, Jiang-Tao Sun, Shi-Yu Wang, Ruo-Meng Liu, Tong Wu, Bin Front Mol Neurosci Molecular Neuroscience INTRODUCTION: Itch is a common symptom of many skin and systemic diseases. Identifying novel endogenous itch mediators and the downstream signaling pathways involved will contribute to the development of new strategies for the treatment of chronic itch. In the present study, we adopted behavioral testing, patch clamp recording and metabonomics analysis to investigate the role of agmatine in itch and the underlying mechanism. METHODS: Behavioral analysis was used to evaluate the establishing of acute and chronic itch mice model, and to test the effects of different drugs or agents on mice itch behavior. Western blotting analysis was used to test the effect of agmatine on phosphorylation of ERK (p-ERK) expression in the spinal cord. Patch clamp recording was used to determine the effect agmatine on the excitability of DRG neurons and the role of ASIC3. Finally, the metabonomics analysis was performed to detect the concentration of agmatine in the affected skin under atopic dermatitis or psoriasis conditions. RESULTS: We fused a mouse model and found that an intradermal injection of agmatine (an endogenous polyamine) into the nape of the neck or cheek induced histamine-independent scratching behavior in a dose-dependent manner. In addition, the ablation of nociceptive C-fibers by resiniferatoxin (RTX) abolished agmatine-induced scratching behavior. However, agmatine-induced itch was not affected by the pharmacological inhibition of either transient receptor potential vanilloid 1 (TRPV1) or transient receptor potential ankyrin 1 (TRPA1); similar results were obtained from TRPV1(−/−) or TRPA1(−/−) mice. Furthermore, agmatine-induced itch was significantly suppressed by the administration of acid-sensing ion channel 3 (ASIC3) inhibitors, APETx2 or amiloride. Agmatine also induced the upregulation of p-ERK in the spinal cord; this effect was inhibited by amiloride. Current clamp recording showed that the acute perfusion of agmatine reduced the rheobase and increased the number of evoked action potentials in acute dissociated dorsal root ganglion (DRG) neurons while amiloride reversed agmatine-induced neuronal hyperexcitability. Finally, we identified significantly higher levels of agmatine in the affected skin of a mouse model of atopic dermatitis (AD) when compared to controls, and the scratching behavior of AD mice was significantly attenuated by blocking ASIC3. DISCUSSION: Collectively, these results provide evidence that agmatine is a novel mediator of itch and induces itch via the activation of ASIC3. Targeting neuronal ASIC3 signaling may represent a novel strategy for the treatment of itch. Frontiers Media S.A. 2023-03-01 /pmc/articles/PMC10016355/ /pubmed/36937045 http://dx.doi.org/10.3389/fnmol.2023.1086285 Text en Copyright © 2023 Zhou, Xu, Lu, Zhou, Feng, Zhang, Sun, Wang, Liu and Wu. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Molecular Neuroscience
Zhou, Guo-Kun
Xu, Wen-Jing
Lu, Yi
Zhou, Yan
Feng, Chen-Zhang
Zhang, Jiang-Tao
Sun, Shi-Yu
Wang, Ruo-Meng
Liu, Tong
Wu, Bin
Acid-sensing ion channel 3 is required for agmatine-induced histamine-independent itch in mice
title Acid-sensing ion channel 3 is required for agmatine-induced histamine-independent itch in mice
title_full Acid-sensing ion channel 3 is required for agmatine-induced histamine-independent itch in mice
title_fullStr Acid-sensing ion channel 3 is required for agmatine-induced histamine-independent itch in mice
title_full_unstemmed Acid-sensing ion channel 3 is required for agmatine-induced histamine-independent itch in mice
title_short Acid-sensing ion channel 3 is required for agmatine-induced histamine-independent itch in mice
title_sort acid-sensing ion channel 3 is required for agmatine-induced histamine-independent itch in mice
topic Molecular Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10016355/
https://www.ncbi.nlm.nih.gov/pubmed/36937045
http://dx.doi.org/10.3389/fnmol.2023.1086285
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