Non-Traditional Aspects of Renal Diets: Focus on Fiber, Alkali and Vitamin K1 Intake.

Adamasco Cupisti, Claudia D'Alessandro, Loreto Gesualdo, Carmela Cosola, Maurizio Gallieni, Maria Francesca Egidi, Maria Fusaro

Journal: Nutrients 2018;9(5):444

PMID: 28468236

Plain Language Summary

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Therapy during chronic kidney disease (CKD) involves a diet with adequate energy intake, but low protein and salts consumption. Several aspects of diets used in CKD may be important in its management, such as the amount of fibre, and vitamin K1 and a diets ability to take the body from an acidic state to an alkaline state, a state which imbalanced has been associated with poor health outcomes. This observational study looked at 3 diets regularly used in CKD; low protein diet, very low protein diet and vegan diet, alongside a normal diet, to determine the fibre and vitamin K1 content alongside its alkalising potential. The results showed that fibre and vitamin K1 content were higher in the vegan and very low protein diets than the normal or low protein diets. Acid production was highest in the normal diet decreasing in the vegetarian diets. It was concluded that renal diets may provide benefits beyond low protein and salt with high amounts of fibre and vitamin K1 and a low acidic nature. This paper could be used by healthcare professionals to understand the nutritional values of diets used in chronic kidney disease and the health benefits they may provide these individuals.

Abstract

Renal diets for advanced chronic kidney disease (CKD) are structured to achieve a lower protein, phosphate and sodium intake, while supplying adequate energy. The aim of this nutritional intervention is to prevent or correct signs, symptoms and complications of renal insufficiency, delaying the start of dialysis and preserving nutritional status. This paper focuses on three additional aspects of renal diets that can play an important role in the management of CKD patients: the vitamin K1 and fiber content, and the alkalizing potential. We examined the energy and nutrients composition of four types of renal diets according to their protein content: normal diet (ND, 0.8 g protein/kg body weight (bw)), low protein diet (LPD, 0.6 g protein/kg bw), vegan diet (VD, 0.7 g protein/kg bw), very low protein diet (VLPD, 0.3 g protein/kg bw). Fiber content is much higher in the VD and in the VLPD than in the ND or LPD. Vitamin K1 content seems to follow the same trend, but vitamin K2 content, which could not be investigated, might have a different pattern. The net endogenous acid production (NEAP) value decreases from the ND and LPD to the vegetarian diets, namely VD and VLPD; the same finding occurred for the potential renal acid load (PRAL). In conclusion, renal diets may provide additional benefits, and this is the case of vegetarian diets. Namely, VD and VLPD also provide high amounts of fibers and Vitamin K1, with a very low acid load. These features may have favorable effects on Vitamin K1 status, intestinal microbiota and acid-base balance. Hence, we can speculate as to the potential beneficial effects on vascular calcification and bone disease, on protein metabolism, on colonic environment and circulating levels of microbial-derived uremic toxins. In the case of vegetarian diets, attention must be paid to serum potassium levels.

Address: Department of Clinical and Experimental Medicine, University of Pisa, Pisa, 56126, Italy. [email protected].; Department of Clinical and Experimental Medicine, University of Pisa, Pisa, 56126, Italy. [email protected].; Department of Emergency and Organ Transplantation-Nephrology, Dialysis and Transplantation Unit, University of Bari Aldo Moro, Bari, 70124, Italy. [email protected].; Department of Emergency and Organ Transplantation-Nephrology, Dialysis and Transplantation Unit, University of Bari Aldo Moro, Bari, 70124, Italy. [email protected].; San Carlo Borromeo Hospital, ASST Santi Paolo e Carlo, University of Milano, Milano, 20153, Italy. [email protected].; Department of Clinical and Experimental Medicine, University of Pisa, Pisa, 56126, Italy. [email protected].; National Research Council (CNR), Institute of Clinical Physiology (IFC), Pisa and Department of Medicine, University of Padua, Padua, 35122, Italy. [email protected].
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