Ingredients of Vicks VapoRub inhibit rhinovirus-induced ATP release.

Q2 Pharmacology, Toxicology and Pharmaceutics Drugs in Context Pub Date : 2023-10-11 eCollection Date: 2023-01-01 DOI:10.7573/dic.2023-3-2
Rebecca J Stinson, Alyn H Morice, Basir Ahmad, Laura R Sadofsky
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Abstract

Background: Over-the-counter therapies, such as Vicks VapoRub, are frequently used in the management of upper respiratory tract infection symptoms. Of these, acute cough is the most bothersome; however, the mechanisms involved have not been fully elucidated. The temperature-sensitive transient receptor potential (TRP) channels, including TRPA1, TRPV1, TRPM8 and TRPV4, are potential candidates. TRPV4 is also thought to be involved in cough through the TRPV4-ATP-P2X3 pathway. Here, we hypothesise that Vicks VapoRub ingredients (VVRIs) modulate the TRP cough channels.

Methods: Stably transfected HEK cells expressing TRP channels were challenged with VVRIs, individually or in combination, and the agonist and antagonist effects were measured using calcium signalling responses. In addition, rhinovirus serotype-16 (RV16)-infected A549 airway epithelial cells were pre-incubated with individual or combinations of VVRIs prior to hypotonic challenge and extracellular ATP release analysis.

Results: Calcium signalling reconfirmed some previously defined activation of TRP channels by specific VVRIs. The combined VVRIs containing menthol, camphor and eucalyptus oil activated TRPV1, TRPV4, TRPM8 and untransfected wild-type HEK293 cells. However, pre-incubation with VVRIs did not significantly inhibit any of the channels compared with the standard agonist responses. Pre-incubation of RV16-infected A549 cells with individual or combined VVRIs, except menthol, resulted in a 0.45-0.55-fold reduction in total ATP release following hypotonic stimulation, compared with infected cells not treated with VVRIs.

Conclusion: These findings suggest that some VVRIs may reduce symptoms associated with upper respiratory tract infection by modulating specific TRP receptors and by reducing RV16-induced ATP release.

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Vicks VaporRub的成分抑制鼻病毒诱导的ATP释放。
背景:非处方疗法,如Vicks VaporRub,经常用于治疗上呼吸道感染症状。其中,急性咳嗽最令人烦恼;然而,所涉及的机制尚未完全阐明。温度敏感的瞬时受体电位(TRP)通道,包括TRPA1、TRPV1、TRPM8和TRPV4,是潜在的候选者。TRPV4也被认为通过TRPV4-ATP-P2X3途径参与咳嗽。在这里,我们假设Vicks VaporRub成分(VVRIs)调节TRP咳嗽通道。方法:用VVRIs单独或联合攻击稳定转染的表达TRP通道的HEK细胞,并使用钙信号反应测量激动剂和拮抗剂的作用。此外,在低渗激发和细胞外ATP释放分析之前,鼻病毒血清型-16(RV16)感染的A549气道上皮细胞与单独或组合的VVRIs预孵育。结果:钙信号再次证实了一些先前定义的特定VVRI对TRP通道的激活。含有薄荷醇、樟脑和桉树油的组合VVRIs激活TRPV1、TRPV4、TRPM8和未转染的野生型HEK293细胞。然而,与标准激动剂反应相比,与VVRIs预孵育没有显著抑制任何通道。RV16感染的A549细胞与单独或组合的VVRIs(薄荷醇除外)预孵育,导致低渗刺激后总ATP释放减少0.45-0.55倍,结论:这些发现表明,一些VVRIs可以通过调节特异性TRP受体和减少RV16诱导的ATP释放来减轻与上呼吸道感染相关的症状。
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来源期刊
Drugs in Context
Drugs in Context Medicine-Medicine (all)
CiteScore
5.90
自引率
0.00%
发文量
63
审稿时长
9 weeks
期刊介绍: Covers all phases of original research: laboratory, animal and human/clinical studies, health economics and outcomes research, and postmarketing studies. Original research that shows positive or negative results are welcomed. Invited review articles may cover single-drug reviews, drug class reviews, latest advances in drug therapy, therapeutic-area reviews, place-in-therapy reviews, new pathways and classes of drugs. In addition, systematic reviews and meta-analyses are welcomed and may be published as original research if performed per accepted guidelines. Editorials of key topics and issues in drugs and therapeutics are welcomed. The Editor-in-Chief will also consider manuscripts of interest in areas such as technologies that support diagnosis, assessment and treatment. EQUATOR Network reporting guidelines should be followed for each article type. GPP3 Guidelines should be followed for any industry-sponsored manuscripts. Other Editorial sections may include Editorial, Case Report, Conference Report, Letter-to-the-Editor, Educational Section.
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