首页> 外文期刊>Brazilian Journal of Medical and Biological Research >β-Citronellol, an alcoholic monoterpene with inhibitory properties on the contractility of rat trachea
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β-Citronellol, an alcoholic monoterpene with inhibitory properties on the contractility of rat trachea

机译:β-香茅醇,对大鼠气管收缩性具有抑制作用的醇单萜

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β-Citronellol is an alcoholic monoterpene found in essential oils such Cymbopogon citratus (a plant with antihypertensive properties). β-Citronellol can act against pathogenic microorganisms that affect airways and, in virtue of the popular use of β-citronellol-enriched essential oils in aromatherapy, we assessed its pharmacologic effects on the contractility of rat trachea. Contractions of isolated tracheal rings were recorded isometrically through a force transducer connected to a data-acquisition device. β-Citronellol relaxed sustained contractions induced by acetylcholine or high extracellular potassium, but half-maximal inhibitory concentrations (IC50) for K+-elicited stimuli were smaller than those for cholinergic contractions. It also inhibited contractions induced by electrical field stimulation or sodium orthovanadate with pharmacologic potency equivalent to that seen against acetylcholine-induced contractions. When contractions were evoked by selective recruitment of Ca2+ from the extracellular medium, β-citronellol preferentially inhibited contractions that involved voltage-operated (but not receptor-operated) pathways. β-Citronellol (but not verapamil) inhibited contractions induced by restoration of external Ca2+ levels after depleting internal Ca2+ stores with the concomitant presence of thapsigargin and recurrent challenge with acetylcholine. Treatment of tracheal rings with L-NAME, indomethacin or tetraethylammonium did not change the relaxing effects of β-citronellol. Inhibition of transient receptor potential vanilloid subtype 1 (TRPV1) or transient receptor potential ankyrin 1 (TRPA1) receptors with selective antagonists caused no change in the effects of β-citronellol. In conclusion, β-citronellol exerted inhibitory effects on rat tracheal rings, with predominant effects on contractions that recruit Ca2+ inflow towards the cytosol by voltage-gated pathways, whereas it appears less active against contractions elicited by receptor-operated Ca2+ channels.
机译:β-香茅醇是一种在香精油(Cymbopogon citratus)(具有抗高血压特性的植物)中发现的单萜醇。 β-香茅醇可以对抗影响气道的病原微生物,并且由于富含β-香茅醇的精油在芳香疗法中的广泛使用,我们评估了其对大鼠气管收缩性的药理作用。通过连接到数据采集装置的力传感器等距记录气管环的收缩情况。 β-香茅醇放松了乙酰胆碱或高细胞外钾诱导的持续收缩,但对K +刺激的半数抑制浓度(IC50)小于胆碱能收缩的抑制浓度。它也抑制电场刺激或原钒酸钠诱导的收缩,其药理作用与对抗乙酰胆碱诱导的收缩相当。当通过从细胞外介质中选择性募集Ca2 +引起收缩时,β-香茅醇优先抑制涉及电压操作(但不是受体操作)途径的收缩。 β-香茅醇(但不是维拉帕米)抑制了内部钙离子存储的消耗,伴随着thapsigargin的存在和乙酰胆碱的反复攻击,从而恢复了外部钙离子水平引起的收缩。用L-NAME,消炎痛或四乙铵处理气管环并没有改变β-香茅醇的松弛作用。用选择性拮抗剂抑制瞬时受体电位香草样亚型1(TRPV1)或瞬时受体电位锚蛋白1(TRPA1)受体不会引起β-香茅醇的作用改变。总之,β-香茅醇对大鼠气管环具有抑制作用,主要作用是通过电压门控途径使募集的Ca2 +流入细胞质的收缩的收缩作用,而对由受体操纵的Ca2 +通道引起的收缩的活性降低。

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