首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Pharmacological Inhibition of the Temperature-Sensitive and Ca2+-Permeable Transient Receptor Potential Vanilloid TRPV3 Channel by Natural Forsythoside B Attenuates Pruritus and Cytotoxicity of Keratinocytes
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Pharmacological Inhibition of the Temperature-Sensitive and Ca2+-Permeable Transient Receptor Potential Vanilloid TRPV3 Channel by Natural Forsythoside B Attenuates Pruritus and Cytotoxicity of Keratinocytes

机译:通过天然连脱症B衰减瘙痒症的温度敏感和Ca2 +可易受受体受体潜在香草型TRPV3通道的药理抑制衰减瘙痒症和角质形成细胞的细胞毒性

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摘要

The temperature-sensitive and calcium-permeable transient receptor potential vanilloid 3 (TRPV3) channel abundantly expressed in keratinocytes plays important functions in skin physiology. Dysfunctional gain-of-function TRPV3 gene mutations cause genetic Olmsted syndrome characterized by periorificial keratoderma, palmoplantar keratoderma, inflammation, and severe itching, which suggests that pharmacological inhibition of overactive TRPV3 function may be beneficial in treating pruritus or skin disorders. To test this hypothesis, we identified natural compound forsythoside B as a TRPV3 inhibitor through screening of human embryonic kidney 293 (HEK293) cells expressing human TRPV3 channels in a calcium fluorescent assay. Whole-cell patch-clamp recordings of HEK293 cells expressing TRPV3 confirmed that forsythoside B selectively inhibited the channel current activated by agonist 2-aminoethoxydiphenyl borate (50 mu M) in a dose-dependent fashion, with an IC50 value of 6.7 +/- 0.7 mu M. In vivo evaluation of scratching behavior demonstrated that pharmacological inhibition of TRPV3 by forsythoside B significantly attenuated acute itch induced by either the TRPV3 agonist carvacrol or the pruritogen histamine, as well as chronic itch induced by acetone-ether-water in a mouse model of dry skin. Furthermore, forsythoside B was able to prevent the death of HEK293 cells or native human immortalized nontumorigenic keratinocyte cells from human keratinocytes expressing a gain-offunction TRPV3 G573S mutant or in the presence of the TRPV3 agonist carvacrol. Taken together, our findings demonstrate the crucial role of TRPV3 in pruritus and keratinocyte toxicity; thus, specific inhibition of overactive TRPV3 by natural forsythoside B may possess therapeutic potential for treatment of chronic pruritus, skin allergy, or inflammation-related skin diseases.
机译:在角质形成细胞中大量表达的温度敏感和钙渗透瞬态受体潜在的香草3(TRPV3)通道在皮肤生理学中起重要的功能。功能失调的功能性TRPV3基因突变导致遗传olmsted综合征,其特征在于脑瘫霉菌,棕榈阶Keratoderma,炎症和严重瘙痒,表明过度活跃的TRPV3功能的药理学抑制可能是有益的治疗瘙痒或皮肤病。为了测试这一假设,通过筛选在钙荧光测定中筛选人TRPV3通道的人胚胎肾293(HEK293)细胞筛选天然化合物已鉴定为TRPV3抑制剂。表达TRPV3的HEK293细胞的全细胞贴片钳位证实,连囊糖苷B以剂量依赖的方式选择性地抑制由激动剂2-氨基乙氧基二苯基硼酸硼(50μm)活化的通道电流,IC50值为6.7 +/- 0.7在体内评估刮擦行为的评估证明了TRPV3通过连续性B的药理学抑制显着减弱了TRPV3激动剂碳酸或血浆组胺诱导的急性瘙痒,以及小鼠模型中丙酮 - 醚 - 水诱导的慢性瘙痒皮肤干燥。此外,连续性B能够防止HEK293细胞或天然人的死亡或原生人的非致盲核织物细胞来自人角蛋白细胞,所述人角蛋白细胞表达TRPV3 G573S突变体或在TRPV3激动剂碳酸的存在下。我们的研究结果携带,表明TRPV3在瘙痒和角质形成细胞毒性中的关键作用;因此,通过天然连续疏茶苷B对过度活性TRPV3的特异性抑制可能具有治疗慢性瘙痒,皮肤过敏或炎症相关皮肤病的治疗潜力。

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