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1.
Nutrients ; 16(1)2023 Dec 19.
Article in English | MEDLINE | ID: mdl-38201833

ABSTRACT

Potassium dysregulation can be life-threatening. Dietary potassium modification is a management strategy for hyperkalaemia. However, a 2017 review for clinical guidelines found no trials evaluating dietary restriction for managing hyperkalaemia in chronic kidney disease (CKD). Evidence regarding dietary hyperkalaemia management was reviewed and practice recommendations disseminated. A literature search using terms for potassium, hyperkalaemia, and CKD was undertaken from 2018 to October 2022. Researchers extracted data, discussed findings, and formulated practice recommendations. A consumer resource, a clinician education webinar, and workplace education sessions were developed. Eighteen studies were included. Observational studies found no association between dietary and serum potassium in CKD populations. In two studies, 40-60 mmol increases in dietary/supplemental potassium increased serum potassium by 0.2-0.4 mmol/L. No studies examined lowering dietary potassium as a therapeutic treatment for hyperkalaemia. Healthy dietary patterns were associated with improved outcomes and may predict lower serum potassium, as dietary co-factors may support potassium shifts intracellularly, and increase excretion through the bowel. The resource recommended limiting potassium additives, large servings of meat and milk, and including high-fibre foods: wholegrains, fruits, and vegetables. In seven months, the resource received > 3300 views and the webinar > 290 views. This review highlights the need for prompt review of consumer resources, hospital diets, and health professionals' knowledge.


Subject(s)
Hyperkalemia , Renal Insufficiency, Chronic , Hyperkalemia/etiology , Hyperkalemia/therapy , Potassium, Dietary , Potassium , Fruit , Evidence-Based Practice , Renal Insufficiency, Chronic/therapy
2.
Nutr Diet ; 75(1): 17-23, 2018 02.
Article in English | MEDLINE | ID: mdl-29411492

ABSTRACT

AIM: The present study aimed to assess whether dietetic intervention helps patients on fluid-only diets to meet their energy and protein requirements. This topic has not been previously investigated. METHODS: A quasi-experimental study of 57 patients receiving fluid-only diets was conducted at The Townsville Hospital. The fluid consumption of participants was observed over 24 hours and was used to calculate total energy and protein intakes. The percentage of protein and energy requirements met was compared between patients receiving dietetic intervention and patients who were not. RESULTS: Patients receiving dietetic interventions met a higher percentage of their energy requirements (75.88) than the control group (18.10) based on median intakes (P < 0.001). Patients receiving dietetic intervention also met a higher percentage of their protein requirements (75.99) than the control group (13.80) based on median intakes (P < 0.001). Stratification for age, body mass index (BMI) and fluid diet type showed no change in effect. CONCLUSIONS: This study shows that dietetic intervention enabled patients on fluid-only diets to meet up to 80% more of their energy requirements and up to 95% more of their protein requirements. These results were consistent across age, BMI and fluid diet type. The significance of these differences has resulted in a change of clinical practice at the study hospital. All patients on fluid-only diets for three days or longer are now blanket referred for dietetic intervention.


Subject(s)
Diet , Dietetics , Inpatients , Nutrition Assessment , Nutritional Requirements/physiology , Adult , Energy Intake , Female , Health Surveys , Humans , Male , Middle Aged , Nutritional Physiological Phenomena , Nutritional Status
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