Literature DB >> 30737612

Germination in Optimal Conditions as Effective Strategy to Improve Nutritional and Nutraceutical Value of Underutilized Mexican Blue Maize Seeds.

Christian Denisse Chavarín-Martínez1, Roberto Gutiérrez-Dorado1,2, Janitzio Xiomara Korina Perales-Sánchez1,2, Edith Oliva Cuevas-Rodríguez1,2, Jorge Milán-Carrillo1,2, Cuauhtémoc Reyes-Moreno3,4,5.   

Abstract

Germination of grains is a bioprocess of emerging interest to improve nutritional and nutraceutical profile of cereals in a natural way. The aim of this work was to identify optimal germination conditions (temperature/duration) for producing a functional blue maize flour with maximum values of protein content (PC), antioxidant activity (AoxA), and total phenolic and anthocyanin contents (TPC, TAC). A central composite rotatable experimental design (response surface methodology) with two factors [Germination temperature (Gtemp, 20-40 °C) / Germination duration (Gdur, 12-220 h)] in five levels was used (13 treatments). Blue maize seeds were soaked in distilled water (25 °C / 12 h) before germination. The sprouts were dried, tempered (25 °C), and ground to obtain germinated blue maize flours (GBMF). The prediction models developed for each response variable showed high coefficients of determination, demonstrating their adequacy to explain the variations in experimental data. Maximum values of PC, AoxA, TPC, and TAC were attained at Gtemp = 26.9 °C / Gdur = 207.7 h. Optimized germinated blue maize flour (OGBMF) presented higher PC (+38.48%), AoxA (ABTS: +192%, ORAC: +160%, DPPH: +148%), TPC (+79%), and TAC (+9.9%) than unprocessed blue maize flour (UBMF). Germination at optimal conditions is an effective strategy to increase the nutritional/nutraceutical quality of blue maize seeds, thus the flour of these germinated seeds could be used for the development of functional foods.

Entities:  

Keywords:  Anthocyanins; Antioxidant activity; Blue maize seeds; Germination; Phenolics compounds

Mesh:

Substances:

Year:  2019        PMID: 30737612     DOI: 10.1007/s11130-019-00717-x

Source DB:  PubMed          Journal:  Plant Foods Hum Nutr        ISSN: 0921-9668            Impact factor:   3.921


  10 in total

1.  Microsatellite-based genetic diversity among accessions of maize landraces from Sinaloa in México.

Authors:  Karen V Pineda-Hidalgo; Karla P Méndez-Marroquín; Elthon Vega Alvarez; Jeanett Chávez-Ontiveros; Pedro Sánchez-Peña; Jose A Garzón-Tiznado; Misael O Vega-García; Jose A López-Valenzuela
Journal:  Hereditas       Date:  2013-12-10       Impact factor: 3.271

2.  Increasing the antioxidant activity, total phenolic and flavonoid contents by optimizing the germination conditions of amaranth seeds.

Authors:  Janitzio X K Perales-Sánchez; Cuauhtémoc Reyes-Moreno; Mario A Gómez-Favela; Jorge Milán-Carrillo; Edith O Cuevas-Rodríguez; Angel Valdez-Ortiz; Roberto Gutiérrez-Dorado
Journal:  Plant Foods Hum Nutr       Date:  2014-09       Impact factor: 3.921

3.  Genetic regulation and photocontrol of anthocyanin accumulation in maize seedlings.

Authors:  L P Taylor; W R Briggs
Journal:  Plant Cell       Date:  1990-02       Impact factor: 11.277

4.  Anthocyanins and Phenolic Acids of Hybrid and Native Blue Maize (Zea mays L.) Extracts and Their Antiproliferative Activity in Mammary (MCF7), Liver (HepG2), Colon (Caco2 and HT29) and Prostate (PC3) Cancer Cells.

Authors:  D A Urias-Lugo; J B Heredia; M D Muy-Rangel; J B Valdez-Torres; S O Serna-Saldívar; J A Gutiérrez-Uribe
Journal:  Plant Foods Hum Nutr       Date:  2015-06       Impact factor: 3.921

5.  Improvement of Chia Seeds with Antioxidant Activity, GABA, Essential Amino Acids, and Dietary Fiber by Controlled Germination Bioprocess.

Authors:  Mario Armando Gómez-Favela; Roberto Gutiérrez-Dorado; Edith Oliva Cuevas-Rodríguez; Vicente Adrián Canizalez-Román; Claudia Del Rosario León-Sicairos; Jorge Milán-Carrillo; Cuauhtémoc Reyes-Moreno
Journal:  Plant Foods Hum Nutr       Date:  2017-12       Impact factor: 3.921

6.  Phenolic Acids Profiles and Cellular Antioxidant Activity in Tortillas Produced from Mexican Maize Landrace Processed by Nixtamalization and Lime Extrusion Cooking.

Authors:  Nallely Gaxiola-Cuevas; Saraid Mora-Rochín; Edith Oliva Cuevas-Rodriguez; Liliana León-López; Cuauhtémoc Reyes-Moreno; Alvaro Montoya-Rodríguez; Jorge Milán-Carrillo
Journal:  Plant Foods Hum Nutr       Date:  2017-09       Impact factor: 3.921

7.  Germination induces accumulation of specific proteins and antifungal activities in corn kernels.

Authors:  B Z Guo; Z Y Chen; R L Brown; A R Lax; T E Cleveland; J S Russin; A D Mehta; C P Selitrennikoff; N W Widstrom
Journal:  Phytopathology       Date:  1997-11       Impact factor: 4.025

8.  Effects of high temperature on the germination of maize (Zea mays L.).

Authors:  G J Riley
Journal:  Planta       Date:  1981-01       Impact factor: 4.116

Review 9.  Phenolic Compounds of Cereals and Their Antioxidant Capacity.

Authors:  Pham Van Hung
Journal:  Crit Rev Food Sci Nutr       Date:  2016       Impact factor: 11.176

Review 10.  Effects of dietary fiber and its components on metabolic health.

Authors:  James M Lattimer; Mark D Haub
Journal:  Nutrients       Date:  2010-12-15       Impact factor: 5.717

  10 in total
  1 in total

Review 1.  The Use of Sprouts to Improve the Nutritional Value of Food Products: A Brief Review.

Authors:  Roberta Fontanive Miyahira; Jean de Oliveira Lopes; Adriane Elisabete Costa Antunes
Journal:  Plant Foods Hum Nutr       Date:  2021-03-15       Impact factor: 3.921

  1 in total

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