特应性皮炎
医学
神经源性炎症
炎症
免疫学
人口
利多卡因
皮肤病科
P物质
受体
神经肽
麻醉
内科学
环境卫生
作者
Peiyi Sun,Hua‐Guo Li,Qianyue Xu,Zhen Zhang,Jiawen Chen,Yihang Shen,Xin Qi,Jian‐Fei Lu,Yidong Tan,Xiaoxiao Wang,Chunxiao Li,Meng‐Ying Yang,Yu‐Zhi Ma,Ying Lü,Tian‐Le Xu,Jinwen Shen,Wei‐Guang Li,Yifeng Guo,Zhirong Yao
摘要
BACKGROUND AND PURPOSE: Atopic dermatitis is a common chronic pruritic inflammatory disease of the skin involving neuro-immune communication. Neuronal mechanism-based therapeutic treatments remain lacking. We investigated the efficacy of intravenous lidocaine therapy on atopic dermatitis and the underlying neuro-immune mechanism. EXPERIMENTAL APPROACH: Pharmacological intervention, immunofluorescence, RNA-sequencing, genetic modification and immunoassay were performed to dissect the neuro-immune basis of itch and inflammation in atopic dermatitis-like mouse model and in patients. KEY RESULTS: 1.8-expressing sensory neurons was sufficient to restrict cutaneous inflammation and itch in the atopic dermatitis model. However, pharmacological blockade of TRPV1-positive nociceptors only abolished persistent itch but did not affect skin inflammation in the atopic dermatitis model, indicating a difference between sensory neuronal modulation of skin inflammation and itch. Inhibition of activity-dependent release of calcitonin gene-related peptide (CGRP) from sensory neurons by lidocaine largely accounts for the therapeutic effect of lidocaine in the atopic dermatitis model. CONCLUSION AND IMPLICATIONS: sensory neurons play a critical role in pathogenesis of atopic dermatitis and lidocaine is a potential anti-inflammatory and anti-pruritic agent for atopic dermatitis. A dissociable difference for sensory neuronal modulation of skin inflammation and itch contributes to further understanding of pathogenesis in atopic dermatitis.
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