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离体电刺激气道标本——其在测定β-肾上腺素能受体激动剂活性中的应用。

Isolated, electrically-stimulated airway preparations--their use in determining beta-adrenoceptor agonist activity.

作者信息

Coleman R A, Nials A T, Rabe K F, Vardey C J, Watson N

机构信息

Respiratory Unit, Glaxo-Wellcome Research and Development Ltd., Stevenage, Hertfordshire, UK.

出版信息

Pulm Pharmacol. 1996 Apr;9(2):107-17. doi: 10.1006/pulp.1996.0012.

Abstract

We have assessed the suitability of electrically-stimulated superfused preparations of guinea-pig trachea, cat trachea and human bronchus for investigating the relaxant activity of the beta-adrenoceptor agonist, isoprenaline. Superfused strips of guinea-pig trachea, cat trachea and human bronchus all contracted in response to electrical stimulation. Guinea-pig trachea possesses inherent tone, and in its presence, electrical stimulation caused biphasic responses, comprising a modest, transient contraction, usually followed by a longer lasting relaxation. Human bronchus also possesses inherent tone, but responses were variable, generally monophasic, comprising a transient contraction of variable magnitude, but a longer lasting relaxation was occasionally observed after the transient contraction. Cat trachea possesses no inherent tone, and electrical stimulation of this preparation caused simple monophasic contractile responses. On guinea-pig trachea, addition of indomethacin (2.8 microM) abolished the inherent tone, and under these conditions, electrical stimulation caused monophasic contractile responses similar to those observed in cat trachea. On human bronchus, however, indomethacin enhanced inherent tone, which tended to uncover or exaggerate any relaxant component in the responses to electrical stimulation. The 5-lipoxygenase inhibitor, zileuton (10 microM), reduced, but did not abolish, the tone and converted the electrically-induced response to a monophasic contraction. In all preparations in which inherent tone was low or absent, whether naturally (cat trachea) or through pharmacological intervention (guinea-pig trachea with indomethacin, or human bronchus with zileuton), isoprenaline (1-100 nM) inhibited electrically-stimulated contractions in a concentration-related fashion (EC50s: 9-100 nM). In preparations exhibiting inherent tone (guinea-pig trachea with indomethacin or human bronchus with or without indomethacin), this tone was inhibited by isoprenaline. This relaxant activity, on guinea-pig trachea at least, was concentration-related (EC50: 5.4 nM). Such isoprenaline-induced relaxations complicated the analysis of inhibitory effects against electrically-induced contractions. Thus, in such experiments, only at higher concentrations did isoprenaline reliably inhibit these contractions (EC50: 23-119 nM), lower concentrations of isoprenaline often resulting in an apparent enhancement. The enhancement was probably artefactual, resulting from the fact that the electrically-induced contractions originated from a lower baseline. These data suggest that electrically-stimulated airway preparations are suitable for evaluating the relaxant activity of beta-adrenoceptor agonists, but the relaxant potency should be assessed in preparations lacking inherent tone, such as cat trachea, guinea-pig trachea in the presence of cyclo-oxygenase inhibition, or human bronchus in the presence of 5-lipoxygenase inhibition.

摘要

我们评估了豚鼠气管、猫气管和人支气管的电刺激灌流制剂对于研究β-肾上腺素能受体激动剂异丙肾上腺素的舒张活性的适用性。豚鼠气管、猫气管和人支气管的灌流条对电刺激均产生收缩反应。豚鼠气管具有内在张力,在此情况下,电刺激引起双相反应,包括适度的短暂收缩,通常随后是持续时间更长的舒张。人支气管也具有内在张力,但反应多变,一般为单相,包括幅度可变的短暂收缩,但在短暂收缩后偶尔观察到持续时间更长的舒张。猫气管没有内在张力,对该制剂进行电刺激引起简单的单相收缩反应。在豚鼠气管上,加入吲哚美辛(2.8微摩尔)可消除内在张力,在这些条件下,电刺激引起的单相收缩反应与在猫气管中观察到的相似。然而,在人支气管上,吲哚美辛增强了内在张力,这往往会揭示或夸大对电刺激反应中的任何舒张成分。5-脂氧合酶抑制剂齐留通(10微摩尔)降低但未消除张力,并将电诱导反应转变为单相收缩。在所有内在张力低或无内在张力的制剂中,无论是天然的(猫气管)还是通过药物干预(用吲哚美辛处理的豚鼠气管或用齐留通处理的人支气管),异丙肾上腺素(1-100纳摩尔)以浓度相关的方式抑制电刺激引起的收缩(半数有效浓度:9-100纳摩尔)。在表现出内在张力的制剂中(用吲哚美辛处理的豚鼠气管或用或不用吲哚美辛处理的人支气管),这种张力被异丙肾上腺素抑制。至少在豚鼠气管上,这种舒张活性与浓度相关(半数有效浓度:5.4纳摩尔)。这种异丙肾上腺素诱导的舒张使对电诱导收缩的抑制作用分析变得复杂。因此,在这类实验中,只有在较高浓度下异丙肾上腺素才能可靠地抑制这些收缩(半数有效浓度:23-119纳摩尔),较低浓度的异丙肾上腺素常常导致明显的增强作用。这种增强可能是人为造成的,原因是电诱导收缩起源于较低的基线。这些数据表明,电刺激气道制剂适用于评估β-肾上腺素能受体激动剂的舒张活性,但舒张效力应在缺乏内在张力的制剂中评估,如猫气管、存在环氧化酶抑制的豚鼠气管或存在5-脂氧合酶抑制的人支气管。

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