A Quinoa Protein Hydrolysate Fractionated by Electrodialysis with Ultrafiltration Membranes Improves Maternal and Fetal Outcomes in a Mouse Model of Gestational Diabetes Mellitus

Author:

Busso Dolores12ORCID,González Adrián3,Santander Nicolás4,Saavedra Fujiko1,Quiroz Alonso5,Rivera Katherine5,González Javier6,Olmos Pablo7,Marette André89,Bazinet Laurent910,Illanes Sebastián12,Enrione Javier23

Affiliation:

1. Program of Reproductive Biology Research and Innovation Center School of Medicine Faculty of Medicine Universidad de los Andes Santiago 7550000 Chile

2. Center of Interventional Medicine for Precision and Advanced Cellular Therapy (IMPACT) Universidad de los Andes Santiago 7550000 Chile

3. Biopolymer Research and Engineering Lab (BiopREL) Research and Innovation Center School of Nutrition and Dietetics Faculty of Medicine Universidad de los Andes Santiago 7550000 Chile

4. Health Science Institute Universidad de O´Higgins Rancagua 2841959 Chile

5. PhD Program in Medical Sciences, School of Medicine Pontificia Universidad Católica de Chile Santiago 8320000 Chile

6. Immersion in Science Program School of Medicine Faculty of Medicine Universidad de los Andes Santiago 7550000 Chile

7. Department of Nutrition Diabetes and Metabolism School of Medicine Pontificia Universidad Católica de Chile Santiago 8320000 Chile

8. Institute of Nutrition and Functional Foods (INAF) Université Laval Québec, Québec G1V 0A6 Canada

9. Department of Anatomy and Physiology Faculty of Medicine Laval Hospital Research Center Université Laval Québec, Québec G1V 4G5 Canada

10. Department of Food Science and Nutrition Laboratoire de Transformation Alimentaire et Procédés ÉlectroMembranaire (LTAPEM Laboratory of Food Processing and Electro‐Membrane Processes) Université Laval Québec, Québec G1V 0A6 Canada

Abstract

ScopeQuinoa intake exerts hypoglycemic and hypolipidemic effects in animals and humans. Although peptides from quinoa inhibit key enzymes involved in glucose homeostasis in vitro, their in vivo antidiabetic properties have not been investigated.Methods and resultsThis study evaluated the effect of oral administration of a quinoa protein hydrolysate (QH) produced through enzymatic hydrolysis and fractionation by electrodialysis with ultrafiltration membrane (EDUF) (FQH) on the metabolic and pregnancy outcomes of Lepdb/+ pregnant mice, a preclinical model of gestational diabetes mellitus. The 4‐week pregestational consumption of 2.5 mg mL−1 of QH in water prevented glucose intolerance and improves hepatic insulin signaling in dams, also reducing fetal weights. Sequencing and bioinformatic analyses of the defatted FQH (FQHD) identified 11 peptides 6–10 amino acids long that aligned with the quinoa proteome and exhibited putative anti‐dipeptidyl peptidase‐4 (DPP‐IV) activity, confirmed in vitro in QH, FQH, and FDQH fractions. Peptides homologous to mouse and human proteins enriched for biological processes related to glucose metabolism are also identified.ConclusionProcessing of quinoa protein may be used to develop a safe and effective nutritional intervention to control glucose intolerance during pregnancy. Further studies are required to confirm if this nutritional intervention is applicable to pregnant women.

Funder

Natural Sciences and Engineering Research Council of Canada

Publisher

Wiley

Subject

Food Science,Biotechnology

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