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鼻黏膜中冷感受器TRPM8的鉴定。

Identification of the cold receptor TRPM8 in the nasal mucosa.

作者信息

Liu Shao-Cheng, Lu Hsuan-Hsuan, Cheng Li-Hsiang, Chu Yueng-Hsiang, Lee Fei-Peng, Wu Chi-Chung, Wang Hsing-Won

机构信息

Graduate Institute of Clinical Medicine, College of Medicine, Taipei Medical University, Taipei, Taiwan, Republic of China.

出版信息

Am J Rhinol Allergy. 2015 Jul-Aug;29(4):e112-6. doi: 10.2500/ajra.2015.29.4202.

Abstract

BACKGROUND

The transient receptor potential channel melastatin 8 (TRPM8) has been proposed to be a cold receptor. However, its distribution and physiologic role in the nose is not yet fully explored.

OBJECTIVE

We investigated the expression of TRPM8 in human nasal mucosa and its function when using the TRPM8 agonist.

METHODS

Immunohistochemistry was used to study TRPM8 receptors in the nasal mucosa from patients with and those without allergic rhinitis (AR). By using isometric contraction studies, we also tested the effectiveness of the TRPM8 agonist menthol on nasal mucosa. Changes in nasal mucosal contractility in response to the application of the adrenergic agent methoxamine were also measured. We explored the effect of menthol on electrical field stimulation (EFS) induced nasal mucosal contractions.

RESULTS

TRPM8 immunoreactivity was present principally in the nasal cilia, epithelium, and subepithelium around the glands. Except for nerve fibers, no obvious TRPM8-immunoreactive cells were detected in connective tissues. The immunoreactivity revealed no significant difference between patients with AR and those without AR. Adding menthol had a negligible effect on the basal tension of the nasal mucosa, but higher doses of menthol had a significant spasmolytic effect on nasal mucosa precontracted with methoxamine. Menthol inhibited the spike contraction induced by EFS, even at low doses.

CONCLUSIONS

The finding of the TRPM8 immunoreactivity underlines the important physiologic role of the nose in temperature regulation, both in patients with allergy and those without allergy. Isometric contraction studies demonstrate the role of TRPM8 in regulating nasal patency and airway resistance. The antiadrenergic effect of menthol showed an effect apparently opposite that of clinical observations, that we usually feel decongested after menthol inhalation. The underlying mechanisms deserve further investigation, and the TRPM8 antagonists deserve consideration for treatment of rhinitis in a therapeutic trial.

摘要

背景

瞬时受体电位通道蛋白8(TRPM8)被认为是一种冷感受器。然而,其在鼻腔中的分布及生理作用尚未得到充分研究。

目的

我们研究了TRPM8在人鼻黏膜中的表达及其在使用TRPM8激动剂时的功能。

方法

采用免疫组织化学方法研究变应性鼻炎(AR)患者和非AR患者鼻黏膜中的TRPM8受体。通过等长收缩研究,我们还测试了TRPM8激动剂薄荷醇对鼻黏膜的作用效果。同时测量了应用肾上腺素能药物甲氧明后鼻黏膜收缩性的变化。我们探讨了薄荷醇对电场刺激(EFS)诱导的鼻黏膜收缩的影响。

结果

TRPM8免疫反应主要存在于鼻纤毛、上皮及腺体周围的上皮下组织中。除神经纤维外,在结缔组织中未检测到明显的TRPM8免疫反应性细胞。AR患者和非AR患者之间的免疫反应性无显著差异。添加薄荷醇对鼻黏膜的基础张力影响可忽略不计,但高剂量薄荷醇对用甲氧明预收缩的鼻黏膜有显著的解痉作用。即使在低剂量下,薄荷醇也能抑制EFS诱导的峰收缩。

结论

TRPM8免疫反应性的发现强调了鼻腔在温度调节中的重要生理作用,无论是在变应性患者还是非变应性患者中。等长收缩研究证明了TRPM8在调节鼻通畅度和气道阻力中的作用。薄荷醇的抗肾上腺素能作用显示出与临床观察明显相反的效果,我们通常在吸入薄荷醇后感觉鼻塞减轻。其潜在机制值得进一步研究,并在治疗试验中考虑使用TRPM8拮抗剂治疗鼻炎。

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