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内皮素受体激活在心肌梗死后清醒猪继发性肺动脉高压中的作用。

Role of endothelin receptor activation in secondary pulmonary hypertension in awake swine after myocardial infarction.

作者信息

Houweling Birgit, Merkus Daphne, Sorop Oana, Boomsma Frans, Duncker Dirk J

机构信息

Experimental Cardiology, Thoraxcentre, Erasmus MC, University Medical Centre Rotterdam, PO Box 1738, 3000 DR Rotterdam, the Netherlands.

出版信息

J Physiol. 2006 Jul 15;574(Pt 2):615-26. doi: 10.1113/jphysiol.2006.107060. Epub 2006 May 18.

Abstract

We previously observed that pulmonary hypertension secondary to myocardial infarction (MI) in swine is characterized by elevated plasma endothelin (ET) levels and pulmonary vascular resistance (PVR). Consequently, we tested the hypothesis that an increased ET-mediated vasoconstrictor influence contributes to secondary pulmonary hypertension after MI and investigated the involvement of ET(A) and ET(B) receptor subtypes. Chronically instrumented swine with (MI swine; n = 25) or without (normal swine; n = 19) MI were studied at rest and during treadmill exercise (up to 4 km h(-1)), in the absence and presence of the ET(A) antagonist EMD 122946 or the mixed ET(A)/ET(B) antagonist tezosentan. In normal swine, exercise caused a small decrease in PVR. ET(A) blockade had no effect on PVR at rest or during exercise. Conversely, ET(A)/ET(B) blockade decreased PVR but only during exercise (at 4 km h(-1), from 3.0 +/- 0.1 to 2.3 +/- 0.1 mmHg min l(-1); P <or= 0.05). MI increased pulmonary arterial pressure and PVR both at rest and during exercise (both P <or= 0.05). The increased pulmonary arterial pressure correlated with the increased plasma ET levels in resting MI swine (r = 0.71; P <or= 0.01). Furthermore, the pulmonary vasoconstrictor response to ET-1 infusion was enhanced after MI (P <or= 0.05). ET(A)/ET(B) blockade decreased PVR in MI swine from 3.6 +/- 0.3 to 3.1 +/- 0.5 mmHg min l(-1) at rest and from 3.4 +/- 0.3 to 2.4 +/- 0.2 mmHg min l(-1) during exercise at 4 km h(-1) (both P <or= 0.05). This increased response to mixed ET(A)/ET(B) blockade in MI compared to normal swine appeared to be the result of an increased ET(A)-mediated vasoconstriction, as ET(A) blockade decreased PVR in MI swine from 3.4 +/- 0.4 to 2.8 +/- 0.2 mmHg min l(-1) at rest and from 3.1 +/- 0.3 to 2.6 +/- 0.2 mmHg min l(-1) at 4 km h(-1) (both P <or= 0.05). In conclusion, increased plasma ET levels together with increased pulmonary resistance vessel responsiveness to ET result in an exaggerated pulmonary vasoconstrictor influence of ET in swine with a recent MI. This vasoconstrictor influence is the result of an emergent tonic ET(A)-mediated vasoconstriction in addition to the exercise-induced ET(B)-mediated vasoconstriction that is already present in normal swine.

摘要

我们之前观察到,猪心肌梗死(MI)继发的肺动脉高压的特征是血浆内皮素(ET)水平和肺血管阻力(PVR)升高。因此,我们检验了以下假设:ET介导的血管收缩作用增强导致MI后继发性肺动脉高压,并研究了ET(A)和ET(B)受体亚型的参与情况。对长期植入仪器的有MI的猪(MI猪;n = 25)和无MI的猪(正常猪;n = 19)在静息状态下以及在跑步机运动(速度达4 km h⁻¹)期间进行了研究,研究过程中使用或不使用ET(A)拮抗剂EMD 122946或ET(A)/ET(B)混合拮抗剂替唑生坦。在正常猪中,运动导致PVR略有下降。ET(A)阻断对静息或运动时的PVR均无影响。相反,ET(A)/ET(B)阻断可降低PVR,但仅在运动期间(速度为4 km h⁻¹时,从3.0±0.1降至2.3±0.1 mmHg min l⁻¹;P≤0.05)。MI使静息和运动时的肺动脉压和PVR均升高(两者P≤0.05)。静息状态下MI猪的肺动脉压升高与血浆ET水平升高相关(r = 0.71;P≤0.01)。此外,MI后对ET-1输注的肺血管收缩反应增强(P≤0.05)。ET(A)/ET(B)阻断使MI猪静息时的PVR从3.6±0.3降至3.1±0.5 mmHg min l⁻¹,在速度为4 km h⁻¹运动时从3.4±0.3降至2.4±0.2 mmHg min l⁻¹(两者P≤0.05)。与正常猪相比,MI猪对ET(A)/ET(B)混合阻断的反应增强似乎是ET(A)介导的血管收缩增加的结果,因为ET(A)阻断使MI猪静息时的PVR从3.4±0.4降至2.8±0.2 mmHg min l⁻¹,在速度为4 km h⁻¹时从3.1±0.3降至2.6±0.2 mmHg min l⁻¹(两者P≤0.05)。总之,血浆ET水平升高以及肺阻力血管对ET的反应性增加导致近期发生MI的猪中ET的肺血管收缩作用过度增强。这种血管收缩作用是除了正常猪中已存在的运动诱导的ET(B)介导的血管收缩之外急性ET(A)介导的血管收缩的结果。

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