1.
The Effect of Electrolytes on Blood Pressure: A Brief Summary of Meta-Analyses.
Iqbal, S, Klammer, N, Ekmekcioglu, C
Nutrients. 2019;11(6)
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Hypertension is the major leading risk factor for atherosclerosis and several diseases, especially renal and cardiovascular disorders, including myocardial infarction, stroke, and heart failure. The aim of this study was to summarize meta-analyses studying the effect and associations of electrolytes as supplements or diets on human blood pressure or risk for hypertension throughout the last years. The study is a review that summarizes meta-analyses of publications studying the effect or association between electrolytes and blood pressure. Meta-analyses of randomized controlled trials or observational studies were included in this review. The major findings of this review indicate that: 1. Sodium (salt) reduction and a higher intake of potassium have convincing blood pressure lowering effects, 2. Higher magnesium intake is suggested to possibly reduce blood pressure, especially in patients with hypertension, and 3. Sufficient calcium intake confers a protective effect regarding the risk for gestational hypertension. Authors conclude that lowering sodium and increasing potassium intake would exert convincing blood pressure lowering effects, especially in hypertensive patients.
Abstract
Nutrition is known to exert an undeniable impact on blood pressure with especially salt (sodium chloride), but also potassium, playing a prominent role. The aim of this review was to summarize meta-analyses studying the effect of different electrolytes on blood pressure or risk for hypertension, respectively. Overall, 32 meta-analyses evaluating the effect of sodium, potassium, calcium and magnesium on human blood pressure or hypertension risk were included after literature search. Most of the meta-analyses showed beneficial blood pressure lowering effects with the extent of systolic blood pressure reduction ranging between -0.7 (95% confidence interval: -2.6 to 1.2) to -8.9 (-14.1 to -3.7) mmHg for sodium/salt reduction, -3.5 (-5.2 to -1.8) to -9.5 (-10.8 to -8.1) mmHg for potassium, and -0.2 (-0.4 to -0.03) to -18.7 (-22.5 to -15.0) mmHg for magnesium. The range for diastolic blood pressure reduction was 0.03 (-0.4 to 0.4) to -5.9 (-9.7 to -2.1) mmHg for sodium/salt reduction, -2 (-3.1 to -0.9) to -6.4 (-7.3 to -5.6) mmHg for potassium, and -0.3 (-0.5 to -0.03) to -10.9 (-13.1 to -8.7) mmHg for magnesium. Moreover, sufficient calcium intake was found to reduce the risk of gestational hypertension.
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Disruption of the Gut Ecosystem by Antibiotics.
Yoon, MY, Yoon, SS
Yonsei medical journal. 2018;59(1):4-12
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The gut microbiome is a complex ecosystem of different micro-organisms, such as bacteria, viruses and fungi, living in the human intestines. It’s involved in numerous functions, such as extracting energy and nutrition from food, protecting against disease-causing microorganisms, and supporting the immune system of the host, and therefore affecting human health and disease. This paper is a review of studies on the effects of antibiotics on the gut microbiota. It outlines how different types of antibiotics can alter the intestinal environment and the composition of the microbes, resulting in various physiological changes that can trigger disease. Relevant mechanisms, such as inflammatory response and the use of intestinal nutrients by infectious bacteria are discussed. Finally, it discusses faecal microbiota transplantation (FMT) and probiotics as treatment approaches, aimed at restoring a disturbed intestinal environment.
Abstract
The intestinal microbiota is a complex ecosystem consisting of various microorganisms that expands human genetic repertoire and therefore affects human health and disease. The metabolic processes and signal transduction pathways of the host and intestinal microorganisms are intimately linked, and abnormal progression of each process leads to changes in the intestinal environment. Alterations in microbial communities lead to changes in functional structures based on the metabolites produced in the gut, and these environmental changes result in various bacterial infections and chronic enteric inflammatory diseases. Here, we illustrate how antibiotics are associated with an increased risk of antibiotic-associated diseases by driving intestinal environment changes that favor the proliferation and virulence of pathogens. Understanding the pathogenesis caused by antibiotics would be a crucial key to the treatment of antibiotic-associated diseases by mitigating changes in the intestinal environment and restoring it to its original state.
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Dietary nitrate does not modify blood pressure and cardiac output at rest and during exercise in older adults: a randomised cross-over study.
Oggioni, C, Jakovljevic, DG, Klonizakis, M, Ashor, AW, Ruddock, A, Ranchordas, M, Williams, E, Siervo, M
International journal of food sciences and nutrition. 2018;69(1):74-83
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Nitrates are naturally-occurring compounds that are produced within the body and also found in food. The main sources of nitrates in the diet come from cured meats and vegetables such as spinach, rocket and beetroot. Nitrate supplements have been associated with beneficial effects on heart and metabolic health, and improvements in athletic performance. Many of these benefits have been observed in younger adults. The objective of this randomised controlled trial was to investigate the effects of 7 days’ consumption of beetroot juice compared with placebo on (1) blood pressure (BP) measured in resting conditions and during exercise, (2) cardiac and peripheral vascular function and (3) biomarkers of inflammation, oxidative stress and endothelial integrity, in older adults. Twenty non-smoking healthy participants aged 60-75 years were recruited. Each participant was given 70ml of either beetroot juice rich in nitrates, or beetroot juice low in nitrates (placebo), twice a day for 7 days. All participants took both the 7-day courses, with at least 7 days rest in between. Measurement was conducted before and after each 7-day intervention period. Consumption of nitrates had no effect on resting systolic and diastolic BP. Nitrate consumption did not improve heart function during exercise. Nitrate consumption did not change markers of inflammation, oxidative stress and endothelial integrity. The authors concluded that this study does not support the short-term benefits of dietary nitrate supplementation on physiological and biochemical markers of heart health in older healthy adults.
Abstract
Dietary nitrate (NO3-) supplementation has been associated with improved vascular and metabolic health. We conducted a double-blind, cross-over, placebo-controlled RCT to investigate the effects of 7-d consumption of beetroot juice compared with placebo on (1) blood pressure (BP) measured in resting conditions and during exercise, (2) cardiac and peripheral vascular function and (3) biomarkers of inflammation, oxidative stress and endothelial integrity. Twenty non-smoking healthy participants aged 60-75 years and BMI 20.0-29.9 kg/m2 were recruited. Measurement was conducted before and after each 7-d intervention period. Consumption of NO3- had no effect on resting systolic and diastolic BP. NO3- consumption did not improve indexes of central and peripheral cardiac function responses during cardiopulmonary exercise testing. Dietary NO3- supplementation did not modify biomarkers of inflammation, oxidative stress and endothelial integrity. This study does not support the short-term benefits of dietary NO3- supplementation on physiological and biochemical markers of vascular health in older healthy adults.