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Bioactive Polyphenols from Southern Chile Seaweed As Inhibitors of Enzymes for Starch Digestion

Overview
Journal Mar Drugs
Publisher MDPI
Specialties Biology
Pharmacology
Date 2020 Jul 12
PMID 32650394
Citations 15
Authors
Affiliations
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Abstract

The increment of non-communicable chronic diseases is a constant concern worldwide, with type-2 diabetes mellitus being one of the most common illnesses. A mechanism to avoid diabetes-related hyperglycemia is to reduce food digestion/absorption by using anti-enzymatic (functional) ingredients. This research explored the potential of six common Chilean seaweeds to obtain anti-hyperglycemic polyphenol extracts, based on their capacity to inhibit key enzymes related with starch digestion. Ethanol/water hot pressurized liquid extraction (HPLE), which is an environmentally friendly method, was studied and compared to conventional extraction with acetone. Total polyphenols (TP), antioxidant activity, cytotoxicity and inhibition capacity on α-glucosidase and α-amylase were analyzed. Results showed that the (cochayuyo) acetone extract had the highest TP content (6.7 ± 0.7 mg gallic acid equivalents (GAE)/g dry seaweed), while its HPLE ethanol/water extract showed the highest antioxidant activity (680.1 ± 11.6 μmol E Trolox/g dry seaweed). No extract affected cell viability significantly. Only cochayuyo produced extracts having relevant anti-enzymatic capacity on both studied enzymes, showing a much stronger inhibition to α-glucosidase (even almost 100% at 1000 µg/mL) than to α-amylase. In conclusion, from the Chilean seaweeds considered in this study, cochayuyo is the most suitable for developing functional ingredients to moderate postprandial glycemic response (starchy foods), since it showed a clear enzymatic inhibition capacity and selectivity.

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References
1.
Kajaria D, Ranjana , Tripathi J, Tripathi Y, Tiwari S . In-vitro α amylase and glycosidase inhibitory effect of ethanolic extract of antiasthmatic drug - Shirishadi. J Adv Pharm Technol Res. 2013; 4(4):206-9. PMC: 3853697. DOI: 10.4103/2231-4040.121415. View

2.
Sanz-Pintos N, Perez-Jimenez J, Buschmann A, Vergara-Salinas J, Perez-Correa J, Saura-Calixto F . Macromolecular Antioxidants and Dietary Fiber in Edible Seaweeds. J Food Sci. 2017; 82(2):289-295. DOI: 10.1111/1750-3841.13592. View

3.
Gulati V, Harding I, Palombo E . Enzyme inhibitory and antioxidant activities of traditional medicinal plants: potential application in the management of hyperglycemia. BMC Complement Altern Med. 2012; 12:77. PMC: 3502323. DOI: 10.1186/1472-6882-12-77. View

4.
Bischoff H . Pharmacology of alpha-glucosidase inhibition. Eur J Clin Invest. 1994; 24 Suppl 3:3-10. View

5.
Cao G, Prior R . Measurement of oxygen radical absorbance capacity in biological samples. Methods Enzymol. 1999; 299:50-62. DOI: 10.1016/s0076-6879(99)99008-0. View