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慢性缺氧或去甲肾上腺素输注时心脏肾上腺素能信号的差异改变。

Differential alterations in cardiac adrenergic signaling in chronic hypoxia or norepinephrine infusion.

作者信息

León-Velarde F, Bourin M C, Germack R, Mohammadi K, Crozatier B, Richalet J P

机构信息

Laboratoire Réponses cellulaires et fonctionnelles à l'hypoxie, Association pour la Recherche en Physiologie de l'Environuement, Faculté de Médecine, Université Paris XIII, 93017 Bobigny, France.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2001 Jan;280(1):R274-81. doi: 10.1152/ajpregu.2001.280.1.R274.

Abstract

Norepinephrine (NE)-induced desensitization of the adrenergic receptor pathway may mimic the effects of hypoxia on cardiac adrenoceptors. The mechanisms involved in this desensitization were evaluated in male Wistar rats kept in a hypobaric chamber (380 Torr) and in rats infused with NE (0.3 mg. kg(-1). h(-1)) for 21 days. Because NE treatment resulted in left ventricular (LV) hypertrophy, whereas hypoxia resulted in right (RV) hypertrophy, the selective hypertrophic response of hypoxia and NE was also evaluated. In hypoxia, alpha(1)-adrenergic receptors (AR) density increased by 35%, only in the LV. In NE, alpha(1)-AR density decreased by 43% in the RV. Both hypoxia and NE decreased beta-AR density. No difference was found in receptor apparent affinity. Stimulated maximal activity of adenylate cyclase decreased in both ventricles with hypoxia (LV, 41%; RV, 36%) but only in LV with NE infusion (42%). The functional activities of G(i) and G(s) proteins in cardiac membranes were assessed by incubation with pertussis toxin (PT) and cholera toxin (CT). PT had an important effect in abolishing the decrease in isoproterenol-induced stimulation of adenylate cyclase in hypoxia; however, pretreatment of the NE ventricle cells with PT failed to restore this stimulation. Although CT attenuates the basal activity of adenylate cyclase in the RV and the isoproterenol-stimulated activity in the LV, pretreatment of NE or hypoxic cardiac membranes with CT has a less clear effect on the adenylate cyclase pathway. The present study has demonstrated that 1) NE does not mimic the effects of hypoxia at the cellular level, i.e., hypoxia has specific effects on cardiac adrenergic signaling, and 2) changes in alpha- and beta-adrenergic pathways are chamber specific and may depend on the type of stimulation (hypoxia or adrenergic).

摘要

去甲肾上腺素(NE)诱导的肾上腺素能受体途径脱敏可能模拟缺氧对心脏肾上腺素能受体的影响。在置于低压舱(380托)的雄性Wistar大鼠以及输注NE(0.3毫克·千克⁻¹·小时⁻¹)21天的大鼠中评估了这种脱敏所涉及的机制。由于NE处理导致左心室(LV)肥厚,而缺氧导致右心室(RV)肥厚,因此还评估了缺氧和NE的选择性肥厚反应。在缺氧状态下,仅左心室的α₁-肾上腺素能受体(AR)密度增加了35%。在NE处理组中,右心室的α₁-AR密度降低了43%。缺氧和NE均降低了β-AR密度。受体的表观亲和力未发现差异。缺氧时两个心室中腺苷酸环化酶的刺激最大活性均降低(左心室,41%;右心室,36%),但NE输注时仅左心室降低(42%)。通过与百日咳毒素(PT)和霍乱毒素(CT)孵育来评估心脏膜中G(i)和G(s)蛋白的功能活性。PT对消除缺氧时异丙肾上腺素诱导的腺苷酸环化酶刺激的降低有重要作用;然而,用PT预处理NE心室细胞未能恢复这种刺激。尽管CT减弱了右心室中腺苷酸环化酶的基础活性以及左心室中异丙肾上腺素刺激的活性,但用CT预处理NE或缺氧心脏膜对腺苷酸环化酶途径的影响不太明确。本研究表明:1)NE在细胞水平上不模拟缺氧的作用,即缺氧对心脏肾上腺素能信号传导有特定影响;2)α-和β-肾上腺素能途径的变化具有心室特异性,可能取决于刺激类型(缺氧或肾上腺素能)。

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