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Dietary Supplementation with Silicon-Enriched Spirulina Improves Arterial Remodeling and Function in Hypertensive Rats

机译:膳食补充剂富含硅螺旋藻可改善高血压大鼠的动脉重构和功能

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摘要

Vascular aging is characterized by increase in arterial stiffness and remodeling of the arterial wall with a loss of elastic properties. Silicon is an essential trace element highly present in arteries. It is involved in the constitution and stabilization of elastin fibers. The nutritional supply and bioavailability of silicon are often inadequate. Spirulina (Sp), micro algae have recognized nutritional properties and are able to incorporate minerals in a bioavailable form. We evaluated the effects of nutritional supplementation with silicon-enriched spirulina (SpSi) on arterial system structure and function in hypertension. Experiments were performed on hypertensive (SHR) and normotensive Wistar-Kyoto (WKY) rats supplemented with SpSi or Sp over a period of three months. Arterial pressure, vascular function and morphometric parameters of thoracic aorta were analyzed. SpSi supplementation lowered arterial pressure in SHR and minimized morphometric alterations induced by hypertension. Aortic wall thickness and elastic fibers fragmentation were partially reversed. Collagen and elastin levels were increased in association with extracellular matrix degradation decrease. Vascular reactivity was improved with better contractile and vasorelaxant responses to various agonists. No changes were observed in SHR supplemented with Sp. The beneficial effects of SpSi supplementation evidenced here, may be attributable to Si enrichment and offer interesting opportunities to prevent cardiovascular risks.
机译:血管衰老的特征是动脉僵硬度增加和动脉壁重塑而失去弹性。硅是动脉中高度存在的必需微量元素。它参与弹性蛋白纤维的构成和稳定化。硅的营养供应和生物利用度通常不足。螺旋藻(Sprulina(Sp))微藻具有公认的营养特性,能够以生物利用形式掺入矿物质。我们评估了富含硅的螺旋藻(SpSi)营养补充对高血压患者动脉系统结构和功能的影响。在三个月内对补充有SpSi或Sp的高血压(SHR)和血压正常的Wistar-Kyoto(WKY)大鼠进行了实验。分析了胸主动脉的动脉压,血管功能和形态参数。 SpSi补充剂可降低SHR中的动脉压,并使高血压引起的形态变化最小化。主动脉壁厚度和弹性纤维断裂被部分逆转。胶原蛋白和弹性蛋白水平升高与细胞外基质降解降低有关。血管反应性得到改善,对各种激动剂的收缩和血管舒张反应更好。在补充Sp的SHR中未观察到变化。此处证明的补充SpSi的有益作用可能归因于Si富集,并提供了预防心血管风险的有趣机会。

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