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在胎儿营养不良的大鼠中,可可壳提取物发挥降压作用的机制涉及阻力血管舒张途径。

Resistance artery vasodilator pathways involved in the antihypertensive effects of cocoa shell extract in rats exposed to fetal undernutrition.

机构信息

Department of Physiology, Faculty of Medicine, Universidad Autónoma de Madrid, Madrid, Spain.

Food, Oxidative Stress and Cardiovascular Health (FOSCH) Research Group, Universidad Autónoma de Madrid, Madrid, Spain.

出版信息

J Physiol. 2024 Nov;602(22):6065-6085. doi: 10.1113/JP287097. Epub 2024 Oct 10.

Abstract

Fetal undernutrition establishes the foundations for hypertension development, with oxidative stress being a key hallmark. A growing interest in nutraceuticals for treating hypertension and environmental waste concerns prompted the present study aiming to evaluate whether supplementation with a polyphenol enriched extract from cocoa shell (CSE), a by-product from the chocolate industry with antioxidant properties, reduces hypertension of developmental origin, thus improving mesenteric resistance artery (MRA) vasodilatation. Adult male and female offspring from rats exposed to 50% food restriction from mid-gestation (maternal undernutrition, MUN) and controls were used. Supplementation was given through a gelatine (vehicle, VEH) or containing CSE (250 mg kg day) 5 days week for 3 weeks. Systolic blood pressure (SBP) was assessed by tail-cuff plethysmography. MRA function was studied by wire myography, and superoxide anion and nitric oxide were investigated by fluorescent indicators and confocal microscopy. Compared to control-VEH, MUN-VEH males showed significantly higher SBP, reduced MRA as well as relaxation to ACh, sodium nitroprusside and the AMPK agonist 5-aminoimidazole-4-carboxamide riboside, but not to isoproterenol. In MUN males, endothelial endothelium-derived hyperpolarizing factor and nitric oxide were unaltered, but MRA released a vasoconstrictor prostanoid and produced higher levels of superoxide anion. CSE normalized blood pressure and improved all above-mentioned MRA alterations in MUN males without an effect on control counterparts, except the reduction of superoxide anion. MUN-VEH females were normotensive and only showed a tendency towards larger superoxide anion production, which was abolished by CSE. CSE supplementation reduces SBP improving endothelium-dependent and independent MRA vasodilatation, related to local superoxide anion reduction, being a potential nutraceutical ingredient to counteract hypertension, in addition to contributing to the circular economy. KEY POINTS: Fetal undernutrition induces hypertension in males associated with deficient resistance artery vasodilatation, being normalized by cocoa shell extract (CSE). Release of a cyclooxygenase-derived contractile factor is the main endothelial alteration, which is abolished by CSE. AMPK and soluble guanylyl cyclase-mediated relaxation are also reduced in smooth muscle cells from maternal undernutrition resistance arteries, being improved by CSE. Vascular oxidative damage caused by excess superoxide anion generation can account for impaired vasodilatation, which is improved by CSE. The capacity of CSE to improve relaxation is probably related to its antioxidant bioactive factors, and thus cocoa shell is a potential food by-product to treat hypertension.

摘要

胎儿营养不良为高血压的发展奠定了基础,氧化应激是一个关键标志。人们对治疗高血压的营养保健品和环境废物的兴趣日益浓厚,促使本研究旨在评估富含可可壳多酚的提取物(CSE)是否能改善发育起源的高血压,从而改善肠系膜阻力动脉(MRA)的血管舒张功能。该研究使用了来自孕中期(母体营养不良,MUN)和对照组的雄性和雌性大鼠的成年后代。通过明胶(载体,VEH)或含有 CSE(250mgkgday)的凝胶补充 5 天周,共 3 周。通过尾套容积描记法评估收缩压(SBP)。通过电生理记录仪研究 MRA 功能,并通过荧光指示剂和共聚焦显微镜研究超氧阴离子和一氧化氮。与对照-VEH 相比,MUN-VEH 雄性的 SBP 明显更高,MRA 降低,对 ACh、硝普钠和 AMPK 激动剂 5-氨基咪唑-4-羧酰胺核糖苷的舒张作用降低,但对异丙肾上腺素没有影响。在 MUN 雄性中,内皮衍生的内皮细胞超极化因子和一氧化氮没有改变,但 MRA 释放了一种血管收缩性前列腺素,并产生了更高水平的超氧阴离子。CSE 使 MUN 雄性的血压正常化,并改善了所有上述 MRA 改变,但对对照组没有影响,除了降低超氧阴离子。MUN-VEH 雌性血压正常,仅表现出更大的超氧阴离子产生倾向,这一倾向被 CSE 消除。CSE 补充可降低 SBP,改善内皮依赖性和非依赖性 MRA 血管舒张功能,与局部超氧阴离子减少有关,是一种潜在的营养保健品,可对抗高血压,同时有助于循环经济。关键点:胎儿营养不良导致雄性高血压,与阻力动脉血管舒张功能不足有关,可通过可可壳提取物(CSE)得到纠正。释放一种环氧合酶衍生的收缩性因子是内皮的主要改变,CSE 可消除这种改变。平滑肌细胞中的 AMPK 和可溶性鸟苷酸环化酶介导的舒张作用也在母体营养不良阻力动脉中降低,CSE 可改善这些作用。由超氧阴离子产生过多引起的血管氧化损伤可能导致血管舒张功能受损,CSE 可改善血管舒张功能。CSE 改善舒张的能力可能与其抗氧化生物活性因子有关,因此可可壳是一种潜在的可用于治疗高血压的食品副产品。

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