Division of Nephrology, Vanderbilt University Medical Center, Nashville, Tennessee, USA.
Division of Clinical Pharmacology, Department of Medicine, Vanderbilt University Medical Center, Nashville, Tennessee, USA.
Antioxid Redox Signal. 2021 Dec 20;35(18):1477-1493. doi: 10.1089/ars.2021.0212.
Salt sensitivity of blood pressure (SSBP) is an independent risk factor for mortality and morbidity due to cardiovascular disease, and disproportionately affects blacks and women. Several mechanisms have been proposed, including exaggerated activation of sodium transporters in the kidney leading to salt retention and water. Recent studies have found that in addition to the renal epithelium, myeloid immune cells can sense sodium the epithelial Na channel (ENaC), which leads to activation of the nicotinamide adenine dinucleotide phosphate oxidase enzyme complex, increased fatty acid oxidation, and production of isolevuglandins (IsoLGs). IsoLGs are immunogenic and contribute to salt-induced hypertension. In addition, aldosterone-mediated activation of ENaC has been attributed to the increased SSBP in women. The goal of this review is to highlight mechanisms contributing to SSBP in blacks and women, including, but not limited to increased activation of ENaC, fatty acid oxidation, and inflammation. A critical barrier to progress in management of SSBP is that its diagnosis is not feasible in the clinic and is limited to expensive and laborious research protocols, which makes it difficult to investigate. Yet without understanding the underlying mechanisms, this important risk factor remains without treatment. Further studies are needed to understand the mechanisms that contribute to differential blood pressure responses to dietary salt and find feasible diagnostic tools. This is extremely important and may go a long way in mitigating the racial and sex disparities in cardiovascular outcomes. 35, 1477-1493.
血压的盐敏感性 (SSBP) 是心血管疾病死亡率和发病率的独立危险因素,并且不成比例地影响黑人和女性。已经提出了几种机制,包括肾脏中钠转运体的过度激活导致盐潴留和水潴留。最近的研究发现,除了肾上皮细胞外,髓样免疫细胞也可以感知钠,即上皮钠通道 (ENaC),这导致烟酰胺腺嘌呤二核苷酸磷酸氧化酶复合物的激活、脂肪酸氧化增加和异亮氨酸(IsoLGs)的产生。IsoLGs 具有免疫原性,有助于盐诱导的高血压。此外,醛固酮介导的 ENaC 激活归因于女性 SSBP 的增加。本综述的目的是强调导致黑人和女性 SSBP 的机制,包括但不限于 ENaC 的过度激活、脂肪酸氧化和炎症。管理 SSBP 进展的一个关键障碍是其在临床上无法诊断,并且仅限于昂贵且费力的研究方案,这使得难以进行研究。然而,如果不了解潜在的机制,这个重要的风险因素仍然没有得到治疗。需要进一步的研究来了解导致对饮食盐的血压反应不同的机制,并找到可行的诊断工具。这一点非常重要,可能会在减轻心血管结局的种族和性别差异方面发挥重要作用。