In Vitro Hypoglycemic Potential, Antioxidant and Prebiotic Activity after Simulated Digestion of Combined Blueberry Pomace and Chia Seed Extracts

Author:

Mihai Elena1,Negreanu-Pirjol Bogdan-Stefan2,Craciunescu Oana1ORCID,Ciucan Teodora1,Iosageanu Andreea1,Seciu-Grama Ana-Maria1,Prelipcean Ana-Maria1,Utoiu Elena1,Coroiu Viorica1,Ghenea Ana-Maria3,Negreanu-Pirjol Ticuta24ORCID

Affiliation:

1. National Institute of Research and Development for Biological Sciences, Department of Cellular and Molecular Biology, Splaiul Independentei, No. 296, 060031 Bucharest, Romania

2. Faculty of Pharmacy, “Ovidius” University of Constanta, Capitan Aviator Al. Serbanescu Street, No. 6, Campus, Corp C, 900470 Constanta, Romania

3. S.C. Santo Raphael Srl, Dimitrie Pompei Bvd., No. 3-5, 020335 Bucharest, Romania

4. Academy of Romanian Scientists, Ilfov Street, No. 3, 050044 Bucharest, Romania

Abstract

This study aimed to evaluate the hypoglycemic potential, antioxidant activity and prebiotic activity of a hydroalcoholic extract of blueberry pomace (BP), an aqueous extract of chia seeds (CS) and a novel combination of BP–CS extracts (BCM) for further use as ingredient of functional food. Spectrometric and HPLC analyses were used to characterize the total phenolic and flavonoid content and composition of BP, while CS was analyzed for total carbohydrate content. Data showed that the BCM mixture exerted an inhibition of α-amylase activity, which was 1.36 times higher than that of BP and 1.25 higher than CS extract. The mixture also showed better scavenging activity of free DPPH radicals than individual extracts, and had an IC50 value of 603.12 µg/mL. In vitro testing indicated that both serum- and colon-reaching products of simulated intestinal digestion of BCM presented the capacity to protect Caco-2 intestinal cells against oxidative stress by inhibition of reactive oxygen species production. In addition, the colon-reaching product of BCM digestion had the capacity to significantly (p < 0.05) stimulate the growth of Lactobacillus rhamnosus and Lactobacillus acidophilus, revealing a prebiotic potential. All these results indicated that improved biological activity of the novel combination of BP and CS extracts could be due to the synergistic action of constituents. The combination is recommended for further testing and the development of novel functional food for controlling type 2 diabetes and gastrointestinal conditions.

Funder

Ministry of Research, Innovation and Digitization, CCCDI-UEFISCDI

Program Nucleu

Program 1—Development of the National R&D System, Subprogram 1.2—Institutional Performance—Projects for Excellence Financing in RDI

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

Reference62 articles.

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4. Enhanced Stability of Berry Pomace Polyphenols Delivered in Protein-Polyphenol Aggregate Particles to an In Vitro Gastrointestinal Digestion Model;Xiong;Food Chem.,2020

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