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Article
Publication date: 19 October 2018

Ljubica Ivanović, Ivana Milašević, Ana Topalović, Dijana Ðurović, Boban Mugoša, Mirko Knežević and Miroslav Vrvić

The purpose of this paper is to evaluate both nutrient and phytochemical content of Swiss chard grown under different fertilization and irrigation treatments and the effect of…

Abstract

Purpose

The purpose of this paper is to evaluate both nutrient and phytochemical content of Swiss chard grown under different fertilization and irrigation treatments and the effect of these treatments on the tested parameters.

Design/methodology/approach

Samples of fresh Swiss chard were collected from the experimental field of Ljeskopolje, Montenegro, where chard was grown under different fertilization and irrigation treatments. Swiss chard samples were analyzed for nutritional and antioxidant parameters.

Findings

In this study, the authors found that 100 g of Swiss chard is a good source of total chlorophyll (47.13 mg), carotenoids (9.85 mg), minerals as well as vitamin C (26.88 mg) expressed as mean values. Total phenol and flavonoid compounds content were (138.59 µg gallic acid equivalent (GAE) and 11.91 µg catechin equivalent (CAE) per mg of water extract, respectively), also expressed as mean values. The total antioxidant capacity (IC50 values) determined by 1,1-diphenyl-2-picrylhydrazyl assay ranged from 2.93 to 4.44 mg/mL of aquatic water extract. Different fertilization regimes affected the following parameters: phosphorous, protein content, chlorophyll a, chlorophyll b and vitamin C (p<0.05), while different irrigation regimes did not have any effect on the tested parameters (p>0.05), while interaction effect between fertilization and irrigation was found only for sodium and copper (p<0.05).

Originality/value

Swiss chard produced in Montenegro on a sandy clay loam soil with acid reaction contains appreciable amount of minerals, crude fibers, vitamin C, chlorophylls, carotenoids and polyphenols. The nutrient and phytochemical content of chard is equal or superior to other green leafy vegetables which are considered as functional food. It was identified as a potentially rich source of essential nutrients and phytochemical compounds. The promotion of higher consumption and production of Swiss chard may represent a natural and sustainable alternative for improving human health.

Details

British Food Journal, vol. 121 no. 2
Type: Research Article
ISSN: 0007-070X

Keywords

Article
Publication date: 24 February 2021

Ljubica Ivanović, Ana Topalović, Višnja Bogdanović, Dijana Đurović, Boban Mugoša, Milka Jadranin, Vele Tešević and Vladimir Beškoski

The purpose of this paper is to determine the polyphenol content, antioxidative potential and antiproliferative activity of Swiss chard from Montenegro, grown under different…

Abstract

Purpose

The purpose of this paper is to determine the polyphenol content, antioxidative potential and antiproliferative activity of Swiss chard from Montenegro, grown under different irrigation and fertilization regimes.

Design/methodology/approach

Swiss chard was grown in the open field (Lješkopolje, Montenegro) where it was subjected to different fertilization and irrigation regimes. Chard samples were analyzed for previously identified polyphenols and for antioxidant parameters. Additionally, in order to complete the biological activities, chard extracts were tested for antiproliferative activity against MFC-7 and HT-29 tumor cell lines.

Findings

The polyphenols identified in Swiss chard were flavonoids: vitexin-2?-O-xyloside, vitexin-6?-O-acetyl-2?-O-xyloside, vitexin-6?-O-malonyl-2?-O-xyloside and isorhamnetin-3,7-diglucoside. In the antioxidant tests, DPPH (2,2-diphenyl-1-picrylhydrazyl), and ABTS (2,2'-azino-bis (3-ethylbenzothiazoline-6-sulfonic acid)), chard extract had values of 7.00 and 8.50 (mean values) µmol Trolox (6-hydroxy-2,5,7,8-tetramethylchroman-2-carboxylic acid) equ/d.w., respectively. The tested chard extracts inhibited cell proliferation at different concentrations (3.125–50.0 µg/mL) against the MCF-7 cell line, after 24 and 48 h of incubation. The antiproliferative activity, expressed in terms of IC50, was 32.97 and 86.45 µg/mL after 24 h of incubation and 20.76 and 23.33 µg/mL after 48 h of incubation, for treated and untreated chard extracts, respectively.

Originality/value

These data suggest Montenegrin Swiss chard grown under different irrigation and fertilization treatments can be considered as a functional food and should be included in an everyday diet. The collected data could help in the growth improvement of chard with functional food properties.

Details

British Food Journal, vol. 123 no. 7
Type: Research Article
ISSN: 0007-070X

Keywords

Article
Publication date: 1 December 2004

George K. Stylios

Examines the tenth published year of the ITCRR. Runs the whole gamut of textile innovation, research and testing, some of which investigates hitherto untouched aspects. Subjects…

3556

Abstract

Examines the tenth published year of the ITCRR. Runs the whole gamut of textile innovation, research and testing, some of which investigates hitherto untouched aspects. Subjects discussed include cotton fabric processing, asbestos substitutes, textile adjuncts to cardiovascular surgery, wet textile processes, hand evaluation, nanotechnology, thermoplastic composites, robotic ironing, protective clothing (agricultural and industrial), ecological aspects of fibre properties – to name but a few! There would appear to be no limit to the future potential for textile applications.

Details

International Journal of Clothing Science and Technology, vol. 16 no. 6
Type: Research Article
ISSN: 0955-6222

Keywords

Article
Publication date: 1 December 2003

George K. Stylios

Examines the ninth published year of the ITCRR. Runs the whole gamut of textile innovation, research and testing, some of which investigates hitherto untouched aspects. Subjects…

1197

Abstract

Examines the ninth published year of the ITCRR. Runs the whole gamut of textile innovation, research and testing, some of which investigates hitherto untouched aspects. Subjects discussed include cotton fabric processing, asbestos substitutes, textile adjuncts to cardiovascular surgery, wet textile processes, hand evaluation, nanotechnology, thermoplastic composites, robotic ironing, protective clothing (agricultural and industrial), ecological aspects of fibre properties – to name but a few! There would appear to be no limit to the future potential for textile applications.

Details

International Journal of Clothing Science and Technology, vol. 15 no. 6
Type: Research Article
ISSN: 0955-6222

Keywords

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