Literature DB >> 32378720

Muscle protein turnover and low-protein diets in patients with chronic kidney disease.

Giacomo Garibotto1, Daniela Picciotto1, Michela Saio1, Pasquale Esposito1, Daniela Verzola1.   

Abstract

Adaptation to a low-protein diet (LPD) involves a reduction in the rate of amino acid (AA) flux and oxidation, leading to more efficient use of dietary AA and reduced ureagenesis. Of note, the concept of 'adaptation' to low-protein intakes has been separated from the concept of 'accommodation', the latter term implying a decrease in protein synthesis, with development of wasting, when dietary protein intake becomes inadequate, i.e. beyond the limits of the adaptive mechanisms. Acidosis, insulin resistance and inflammation are recognized mechanisms that can increase protein degradation and can impair the ability to activate an adaptive response when an LPD is prescribed in a chronic kidney disease (CKD) patient. Current evidence shows that, in the short term, clinically stable patients with CKD Stages 3-5 can efficiently adapt their muscle protein turnover to an LPD containing 0.55-0.6 g protein/kg or a supplemented very-low-protein diet (VLPD) by decreasing muscle protein degradation and increasing the efficiency of muscle protein turnover. Recent long-term randomized clinical trials on supplemented VLPDs in patients with CKD have shown a very good safety profile, suggesting that observations shown by short-term studies on muscle protein turnover can be extrapolated to the long-term period.
© The Author(s) 2020. Published by Oxford University Press on behalf of ERA-EDTA. All rights reserved.

Entities:  

Keywords:  CKD; low-protein diets; nutrition; protein

Year:  2020        PMID: 32378720     DOI: 10.1093/ndt/gfaa072

Source DB:  PubMed          Journal:  Nephrol Dial Transplant        ISSN: 0931-0509            Impact factor:   5.992


  3 in total

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Review 2.  Low Protein Diets and Plant-Based Low Protein Diets: Do They Meet Protein Requirements of Patients with Chronic Kidney Disease?

Authors:  Daniela Verzola; Daniela Picciotto; Michela Saio; Francesca Aimasso; Francesca Bruzzone; Samir Giuseppe Sukkar; Fabio Massarino; Pasquale Esposito; Francesca Viazzi; Giacomo Garibotto
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  3 in total

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