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Bioactivity and chemical characterization in hydrophilic and lipophilic compounds of Chenopodium ambrosioides L

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TLDR
The studied plant proved to be a good source of natural antioxidants and other bioactive compounds, which may have industrial use, and is the first detailed chemical characterization and bioactivity evaluation of C. ambrosioides methanolic extract and infusion.
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This article is published in Journal of Functional Foods.The article was published on 2013-10-01 and is currently open access. It has received 257 citations till now. The article focuses on the topics: Chenopodium ambrosioides.

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The effect of probiotics, phytobiotics and their combination as feed additives in the diet of dairy calves on performance, rumen fermentation and blood metabolites during the preweaning period

TL;DR: Incorporation of the combination of probiotics and phytobiotics as feed additive had significant beneficial effects on average daily gain, starter intake and total dry matter intake over the experimental period.
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Scientific validation of synergistic antioxidant effects in commercialised mixtures of Cymbopogon citratus and Pterospartum tridentatum or Gomphrena globosa for infusions preparation.

TL;DR: The present study validates the commercialisation of the studied plants combined in specific proportions and determines the antioxidant activity and phenolic compounds in the infusions prepared from the individual plants, and from mixtures of these plants in different proportions.
Journal ArticleDOI

Ocimum basilicum var. purpurascens leaves (red rubin basil): a source of bioactive compounds and natural pigments for the food industry

TL;DR: This basil variety could be considered a good source of value added molecules for the food industry because of the antimicrobial activity and hepatotoxicity of their hydroethanolic extract.
Journal ArticleDOI

Chemical composition and in vitro biological activities of cardoon (Cynara cardunculus L. var. altilis DC.) seeds as influenced by viability.

TL;DR: While viable seeds contained antioxidant phytochemicals and an energy and carbon source for germination, unavailable seeds stood out for their potential to be used in the development of bio-based antibacterial ingredients.
Journal ArticleDOI

Hydroethanolic extract of Juglans regia L. green husks: A source of bioactive phytochemicals.

TL;DR: The results obtained represent a stepping stone for the development of future applications using walnut green husks as a source of added value compounds with bioactive potential.
References
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Journal ArticleDOI

Free radicals and antioxidants in normal physiological functions and human disease

TL;DR: Attention is focussed on the ROS/RNS-linked pathogenesis of cancer, cardiovascular disease, atherosclerosis, hypertension, ischemia/reperfusion injury, diabetes mellitus, neurodegenerative diseases, rheumatoid arthritis, and ageing.
Journal ArticleDOI

Phenols, proanthocyanidins, flavones and flavonols in some plant materials and their antioxidant activities

TL;DR: In this paper, the contents of free flavones (apigenin and luteolin) and flavonols (kaempferol, myricetin and quercetin) were determined by HPLC analysis.
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Free radicals and antioxidants: updating a personal view.

TL;DR: This article looks back to the antioxidant/free radical field in 1994 and discusses how it has progressed in the past 18 years and suggests that increasing endogenous antioxidant levels (e.g., by supplying "pro-oxidants") may be a better approach to therapeutics and disease prevention than consuming large doses of "dietary antioxidants."
Journal ArticleDOI

Comparison of antioxidative and synergistic effects of rosemary extract with α-tocopherol, ascorbyl palmitate and citric acid in sunflower oil

TL;DR: In this paper, the antioxidative activities of four natural antioxidants: rosemary extract (ROSCON), α-tocopherol (TOC), ascorbyl palmitate (AP), and citric acid (CA) were studied in sunflower oil stored at 60° C.
Journal ArticleDOI

Evaluation of Chenopodium ambrosioides oil as a potential source of antifungal, antiaflatoxigenic and antioxidant activity.

TL;DR: The possible exploitation of the Chenopodium oil as potential botanical fungitoxicant in ecofriendly control of post harvest biodeterioration of food commodities from storage fungi is suggested.
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Frequently Asked Questions (13)
Q1. What contributions have the authors mentioned in the paper "Bioactivity and chemical characterization in hydrophilic and lipophilic compounds of chenopodium ambrosioides l" ?

In this paper, the authors characterized the chemical composition of C. ambrosioides in hydrophilic ( sugars, organic acids and phenolic compounds ) and lipophilic ( fatty acids and tocopherols ) molecules, as well as some bioactive properties ( antioxidant and antitumour activities, and hepatotoxicity ) of its infusion and methanolic extract. 

They act as antioxidants through various mechanisms, including hydrogen donating reactions, metal chelation, and up-regulation or protection of antioxidant defenses (e.g. intracellular glutathione levels) (Pereira et al.,2013). 

Flavonoids were the major phenolic compounds present in this sample (768 mg/100 g dw), being quercetin (46.98%) and kaempferol derivatives (45.91%) the most abundant. 

Five human tumour cell lines were used: MCF-7 (breast adenocarcinoma), NCI-H460 (non-small cell lung cancer), HCT-15 (colon carcinoma), HeLa (cervical carcinoma) and HepG2 (hepatocellular carcinoma). 

Linoleic acid is the most prominent PUFA in the Western diet and previous studies showed health benefits under the prevention of cancer diseases (Whelan, 2008). 

Trolox and ellipticine were used as positive controls of antioxidant and antitumour activities evaluation assays, respectively, but comparison with the samples should be avoided, because they are individual compounds and not mixtures. 

Relevant diseases such as cancer, diabetes, cirrhosis, heart disease or dementia disorders, as well as aging process have been associated with the uncontrolled production of free radicals (Valko et al., 2007; Halliwell, 2012). 

The MS detector was programmed for recording in two consecutive modes: Enhanced MS (EMS) and enhanced product ion (EPI) analysis. 

Among them, five compounds (peaks 1-3, 5 and 9) were p-coumaric acid derivatives identified according to their UV spectra and pseudomolecular ion. 

Phenolic acids were 6.58% of the total phenolic compounds in this sample and trans p-coumaric acid was the most abundant one (25.65 mg/100 g dw, peak 9). 

The analysis was carried out with a DANI model GC 1000 instrument equipped with a split/splitless injector, a flame ionization detector (FID at 260 ºC) and a Macherey– Nagel (Düren, Germany) column (50% cyanopropyl-methyl-50% phenylmethylpolysiloxane, 30 m × 0.32 mm i.d. × 0.25 μm df). 

The fragments ions at m/z 447 and 285 would correspond to the respective losses of the pentosyl and hexosyl moieties, respectively. 

Peak 4 was associated to a feruloyl pentoside acid based on its molecular ion fragmentation pattern similar to peak 1, whereas no precise identity could be established for peak 6.