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藻蓝蛋白的降压作用与预防血管紧张素 II 引起的慢性肾脏病血管功能障碍有关。

The antihypertensive action of C-phycocyanin is related to the prevention of angiotensin II-caused vascular dysfunction in chronic kidney disease.

机构信息

Departamento de Farmacobiología. Centro de Investigación y de Estudios Avanzados, Instituto Politécnico Nacional, Calzada de los Tenorios 235, Col. Granjas Coapa, 14330, Ciudad de Mexico, México.

Laboratorio de Metabolismo I, Departamento Fisiología, Escuela Nacional de Ciencias Biológicas, Instituto Politécnico Nacional, Av. Wilfrido Massieu 399, Col. Nueva Industrial Vallejo, 07738, Ciudad de México, México.

出版信息

Hypertens Res. 2024 Apr;47(4):1024-1032. doi: 10.1038/s41440-023-01572-9. Epub 2024 Jan 18.

Abstract

C-phycocyanin (CPC) is a photosynthetic protein found in Arthrospira maxima with a nephroprotective and antihypertensive activity that can prevent the development of hemodynamic alterations caused by chronic kidney disease (CKD). However, the complete nutraceutical activities are still unknown. This study aims to determine if the antihypertensive effect of CPC is associated with preventing the impairment of hemodynamic variables through delaying vascular dysfunction. Twenty-four normotensive male Wistar rats were divided into four groups: (1) sham + 4 mL/kg/d vehicle (100 mM of phosphate buffer, PBS) administered by oral gavage (og), (2) sham + 100 mg/kg/d og of CPC, (3) CKD induced by 5/6 nephrectomy (CKD) + vehicle, (4) CKD + CPC. One week after surgery, the CPC treatment began and was administrated daily for four weeks. At the end treatment, animals were euthanized, and their thoracic aorta was used to determine the vascular function and expression of AT1, AT2, and Mas receptors. CKD-induced systemic arterial hypertension (SAH) and vascular dysfunction by reducing the vasorelaxant response of angiotensin 1-7 and increasing the contractile response to angiotensin II. Also, CKD increased the expression of the AT1 and AT2 receptors and reduced the Mas receptor expression. Remarkably, the treatment with CPC prevented SAH, renal function impairment, and vascular dysfunction in the angiotensin system. In conclusion, the antihypertensive activity of CPC is associated with avoiding changes in the expression of AT1, AT2, and Mas receptors, preventing vascular dysfunction development and SAH in rats with CKD.

摘要

藻蓝蛋白 (CPC) 是一种存在于极大螺旋藻中的光合蛋白,具有肾保护和降血压活性,可预防慢性肾病 (CKD) 引起的血流动力学改变的发展。然而,其完整的营养活性仍不清楚。本研究旨在确定 CPC 的降压作用是否与通过延迟血管功能障碍来预防血流动力学变量的损害有关。将 24 只正常血压雄性 Wistar 大鼠分为四组:(1) 假手术+4 mL/kg/d 口服灌胃 (og) 载体 (100 mM 磷酸盐缓冲液,PBS),(2) 假手术+100 mg/kg/d CPC og,(3) 5/6 肾切除术诱导的 CKD+载体,(4) CKD+CPC。手术后一周开始 CPC 治疗,每天给药四周。在治疗结束时,处死动物,取其胸主动脉以确定血管功能和 AT1、AT2 和 Mas 受体的表达。CKD 诱导的全身动脉高血压 (SAH) 和血管功能障碍通过降低血管紧张素 1-7 的血管舒张反应和增加血管紧张素 II 的收缩反应来实现。此外,CKD 增加了 AT1 和 AT2 受体的表达,降低了 Mas 受体的表达。值得注意的是,CPC 治疗可预防 CKD 大鼠的 SAH、肾功能损害和血管紧张素系统中的血管功能障碍。总之,CPC 的降压活性与避免 AT1、AT2 和 Mas 受体表达变化有关,可预防 CKD 大鼠血管功能障碍和 SAH 的发生。

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