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Quinoa Soluble Fiber and Quercetin Alter the Composition of the Gut Microbiome and Improve Brush Border Membrane Morphology In Vivo ()

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Journal Nutrients
Date 2022 Mar 12
PMID 35276807
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Abstract

Quinoa (Chenopodium quinoa Willd.), a gluten-free pseudo-cereal, has gained popularity over the last decade due to its high nutritional value. Quinoa is a rich source of proteins, carbohydrates, fibers, tocopherols (Vitamin E), unsaturated fatty acids and a wide range of polyphenols. The study used Gallus gallus intra-amniotic feeding, a clinically validated method, to assess the effects of quinoa soluble fiber (QSF) and quercetin 3-glucoside (Q3G) versus control. Quercetin is a pharmacologically active polyphenol found in quinoa. Six groups (no injection, 18 Ω H2O, 5% inulin, 1% Q3G, 5% QSF, 1% Q3G + 5% QSF) were assessed for their effect on the brush border membrane (BBM) functionality, intestinal morphology and cecal bacterial populations. Our results showed a significant (p < 0.05) improvement in BBM morphology, particularly goblet and Paneth cell numbers, in the group administered with quinoa and quercetin. However, there were no significant changes seen in the expression of the genes assessed both in the duodenum and liver between any of the treatment groups. Furthermore, fibrous quinoa increased the concentration of probiotic L. plantarum populations compared to the control (H2O). In conclusion, quercetin and quinoa fiber consumption has the potential to improve intestinal morphology and modulate the microbiome.

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References
1.
Nowak V, Du J, Charrondiere U . Assessment of the nutritional composition of quinoa (Chenopodium quinoa Willd.). Food Chem. 2015; 193:47-54. DOI: 10.1016/j.foodchem.2015.02.111. View

2.
Hambidge K . Micronutrient bioavailability: Dietary Reference Intakes and a future perspective. Am J Clin Nutr. 2010; 91(5):1430S-1432S. PMC: 2854910. DOI: 10.3945/ajcn.2010.28674B. View

3.
Zhu F . Dietary fiber polysaccharides of amaranth, buckwheat and quinoa grains: A review of chemical structure, biological functions and food uses. Carbohydr Polym. 2020; 248:116819. DOI: 10.1016/j.carbpol.2020.116819. View

4.
Hou T, Kolba N, Glahn R, Tako E . Intra-Amniotic Administration (Gallus gallus) of Cicer arietinum and Lens culinaris Prebiotics Extracts and Duck Egg White Peptides Affects Calcium Status and Intestinal Functionality. Nutrients. 2017; 9(7). PMC: 5537899. DOI: 10.3390/nu9070785. View

5.
Kolba N, Guo Z, Olivas F, Mahler G, Tako E . Intra-amniotic administration (Gallus gallus) of TiO, SiO, and ZnO nanoparticles affect brush border membrane functionality and alters gut microflora populations. Food Chem Toxicol. 2019; 135:110896. PMC: 8985309. DOI: 10.1016/j.fct.2019.110896. View