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Dietary Protein Restriction Improves Metabolic Dysfunction in Patients with Metabolic Syndrome in a Randomized, Controlled Trial

Rafael Ferraz‐Bannitz, Rebeca Antunes Beraldo, A. Augusto Peluso, Morten Dall, Parizad Babaei, Rayana Cardoso Foglietti, Larissa Marfori Martins, Patrícia Moreira Gomes, Júlio Sérgio Marchini, Vívian Marques Miguel Suen, Luiz Carlos Conti de Freitas, Luiz Carlos Carvalho Navegantes, Marco Antônio M. Pretti, Mariana Boroni, Jonas T. Treebak

Nutrients · 2022 · ▲ 54 citations

Abstract

Dietary restriction (DR) reduces adiposity and improves metabolism in patients with one or more symptoms of metabolic syndrome. Nonetheless, it remains elusive whether the benefits of DR in humans are mediated by calorie or nutrient restriction. This study was conducted to determine whether isocaloric dietary protein restriction is sufficient to confer the beneficial effects of dietary restriction in patients with metabolic syndrome. We performed a prospective, randomized controlled dietary intervention under constant nutritional and medical supervision. Twenty-one individuals diagnosed with metabolic syndrome were randomly assigned for caloric restriction(definition) (CR; n = 11, diet of 5941 ± 686 KJ per day) or isocaloric dietary protein restriction (PR; n = 10, diet of 8409 ± 2360 KJ per day) and followed for 27 days. Like CR, PR promoted weight loss due to a reduction in adiposity, which was associated with reductions in blood glucose, lipid levels, and blood pressure. More strikingly, both CR and PR improved insulin sensitivity by 62.3% and 93.2%, respectively, after treatment. Fecal microbiome diversity was not affected by the interventions. Adipose tissue bulk RNA-Seq data revealed minor changes elicited by the interventions. After PR, terms related to leukocyte proliferation were enriched among the upregulated genes. Protein restriction is sufficient to confer almost the same clinical outcomes as calorie restriction without the need for a reduction in calorie intake. The isocaloric characteristic of the PR intervention makes this approach a more attractive and less drastic dietary strategy in clinical settings and has more significant potential to be used as adjuvant therapy for people with metabolic syndrome.

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Provenance

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OpenAlex
DOI
10.3390/nu14132670
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2026-07-15 MST

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APA
Ferraz‐Bannitz, R., Beraldo, R.A., Peluso, A.A., Dall, M., Babaei, P., Foglietti, R.C., Martins, L.M., Gomes, P.M., Marchini, J.S., Suen, V.M.M., Freitas, L.C.C.D., Navegantes, L.C.C., Pretti, M.A.M., Boroni, M., Treebak, J.T., Mori, M.A., Foss, M.C., &amp; Foss‐Freitas, M.C. (2022). Dietary Protein Restriction Improves Metabolic Dysfunction in Patients with Metabolic Syndrome in a Randomized, Controlled Trial. <em>Nutrients</em>. https://doi.org/10.3390/nu14132670
Vancouver
Ferraz‐Bannitz R, Beraldo RA, Peluso AA, Dall M, Babaei P, Foglietti RC, et al. Dietary Protein Restriction Improves Metabolic Dysfunction in Patients with Metabolic Syndrome in a Randomized, Controlled Trial. Nutrients. 2022. doi:10.3390/nu14132670.
BibTeX
@article{rafael2022Dietar, title = {Dietary Protein Restriction Improves Metabolic Dysfunction in Patients with Metabolic Syndrome in a Randomized, Controlled Trial}, author = {Rafael Ferraz‐Bannitz and Rebeca Antunes Beraldo and A. Augusto Peluso and Morten Dall and Parizad Babaei and Rayana Cardoso Foglietti and Larissa Marfori Martins and Patrícia Moreira Gomes and Júlio Sérgio Marchini and Vívian Marques Miguel Suen and Luiz Carlos Conti de Freitas and Luiz Carlos Carvalho Navegantes and Marco Antônio M. Pretti and Mariana Boroni and Jonas T. Treebak and Marcelo A. Mori and Milton César Foss and Maria Cristina Foss‐Freitas}, journal = {Nutrients}, year = {2022}, doi = {10.3390/nu14132670}, }

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