Effects of Soluble Dextrin Fiber from Potato Starch on Body Weight and Associated Gut Dysbiosis Are Evident in Western Diet-Fed Mice but Not in Overweight/Obese Children

Author:

Czarnowski Paweł12ORCID,Bałabas Aneta1,Kułaga Zbigniew3ORCID,Kulecka Maria14,Goryca Krzysztof15ORCID,Pyśniak Kazimiera1,Unrug-Bielawska Katarzyna1ORCID,Kluska Anna1,Bagińska-Drabiuk Katarzyna1,Głowienka-Stodolak Maria1,Piątkowska Magdalena1,Dąbrowska Michalina1,Żeber-Lubecka Natalia14,Wierzbicka-Rucińska Aldona2ORCID,Kotowska Aneta3ORCID,Więckowski Sebastian6,Mikula Michał1ORCID,Kapuśniak Janusz7ORCID,Socha Piotr6,Ostrowski Jerzy14

Affiliation:

1. Department of Genetics, Maria Sklodowska-Curie National Research Institute of Oncology, 02-781 Warsaw, Poland

2. Department of Biochemistry, Radioimmunology and Experimental Medicine, Children’s Memorial Health Institute, 04-730 Warsaw, Poland

3. Public Health Department, Children’s Memorial Health Institute, 04-730 Warsaw, Poland

4. Department of Gastroenterology, Hepatology and Clinical Oncology, Centre of Postgraduate Medical Education, 02-781 Warsaw, Poland

5. Genomic Core Facility, Centre of New Technologies, University of Warsaw, 02-097 Warsaw, Poland

6. Department of Gastroenterology, Hepatology and Eating Disorders, Children’s Memorial Health Institute, 04-730 Warsaw, Poland

7. Department of Dietetics and Food Studies, Faculty of Science and Technology, Jan Dlugosz University, 42-200 Czestochowa, Poland

Abstract

Background: The study investigated the impact of starch degradation products (SDexF) as prebiotics on obesity management in mice and overweight/obese children. Methods: A total of 48 mice on a normal diet (ND) and 48 on a Western diet (WD) were divided into subgroups with or without 5% SDexF supplementation for 28 weeks. In a human study, 100 overweight/obese children were randomly assigned to prebiotic and control groups, consuming fruit and vegetable mousse with or without 10 g of SDexF for 24 weeks. Stool samples were analyzed for microbiota using 16S rRNA gene sequencing, and short-chain fatty acids (SCFA) and amino acids (AA) were assessed. Results: Results showed SDexF slowed weight gain in female mice on both diets but only temporarily in males. It altered bacterial diversity and specific taxa abundances in mouse feces. In humans, SDexF did not influence weight loss or gut microbiota composition, showing minimal changes in individual taxa. The anti-obesity effect observed in mice with WD-induced obesity was not replicated in children undergoing a weight-loss program. Conclusions: SDexF exhibited sex-specific effects in mice but did not impact weight loss or microbiota composition in overweight/obese children.

Funder

National Centre for Research and Development in Poland

Publisher

MDPI AG

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