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1.
J Food Sci ; 88(8): 3422-3434, 2023 Aug.
Article in English | MEDLINE | ID: mdl-37326342

ABSTRACT

Garambullo (Myrtillocactus geometrizans) is endemic in México, and although popularly consumed locally, its nutritional characteristics and value have not been studied in details. The objective of this work was to investigate the bioactive compounds and antioxidant activity in garambullo fruit from different sites at three ripening stages. Fruit from the three ripening stages (red, purple, and dark purple) were investigated for their physicochemical characteristics, hydrophilic (phenolic compounds, betalains, and ascorbic acid), and lipophilic (carotenoids, tocopherols, and fatty acids) bioactive compounds, using spectrophotometry, gas chromatography (GC-FID), and high-pressure liquid chromatography coupled to mass spectrometry (HPLC/DAD-ESI-MS). The antioxidant capacity was measured with the 2,2'-diphenyl-1-picrylhydrazyl and the ferric-ion-reducing antioxidant power assays. The color components of the fruit, chroma and a* values increased, whereas lightness (L*) and b* significantly decreased during ripening. Five betacyanins and four betaxanthins were tentatively identified with HPLC/DAD-ESI-MS, and betacyanins were more abundant than betaxanthins. Betalains content and antioxidant capacity of hydrophilic extracts significantly increased during ripening. Ten phenolic compounds were identified, with ferulic acid being the most abundant. Tocopherols were low (0.023-0.033 mg/100 g fw). Five fatty acids were abundant, and linoleic acid was the most important. Phenolic compounds, ascorbic acid, total carotenoids, and fatty acids decreased during fruit ripening. Garambullo fruit is rich in phytochemical compounds of importance for human nutrition and health. PRACTICAL APPLICATION: The physicochemical and bioactive compounds characterization in garambullo fruit is important to establish maturation and harvesting indices, postharvest strategies to preserve fruit quality and prolong postharvest life, promote the consumption and utilization of the fruit, and the designing of proper functional foods. In addition, the knowledge on the bioactive components might be useful to include this fruit in personalized nutritional approaches for patients with risks of certain chronic diseases. The methodology used in this study could be useful for the study of other fruits, especially those from the Cactaceae family.


Subject(s)
Antioxidants , Cactaceae , Humans , Antioxidants/analysis , Fruit/chemistry , Betacyanins/analysis , Betaxanthins/analysis , Gas Chromatography-Mass Spectrometry , Cactaceae/chemistry , Betalains/analysis , Ascorbic Acid/analysis , Phenols/analysis , Tocopherols/analysis , Carotenoids/analysis , Plant Extracts/chemistry
2.
Biotechnol Bioeng ; 120(5): 1357-1365, 2023 05.
Article in English | MEDLINE | ID: mdl-36702621

ABSTRACT

Betalains, which consist of the subgroups betaxanthins and betacyanins, are hydrophilic pigments that have classically been used for food colorants. Owing to their strong antioxidant property, their usefulness for application for therapeutic use is also expected. In addition, as betalains are mainly naturally available from plants of the order Caryophyllales, including beet (Beta vulgaris), metabolic engineering for betalain production in crops such as vegetables, fruits and cereals may provide new food resources useful for healthcare. Here we conducted metabolic engineering of betacyanins in tomato fruits and potato tubers. The transgenic tomato fruits and potato tubers with coexpression of betacyanin biosynthesis genes, CYP76AD1 from B. vulgaris, DOD (DOPA 4,5-dioxygenase) and 5GT (cyclo-DOPA 5-O-glucosyltransferase) from Mirabilis jalapa, under control of suitable specific promoters, possessed dark red tissues with enriched accumulation of betacyanins (betanin and isobetanin). The anti-inflammatory activity of transgenic tomato fruit extract was superior to that of wild-type fruit extract on macrophage RAW264.7 cells stimulated with lipopolysaccharide (LPS), as a result of decreased LPS-stimulated transcript levels of proinflammatory genes. These findings were in accord with the observation that administration of the transgenic tomato fruits ameliorated dextran sulfate sodium (DSS)-induced colitis as well as body weight loss and disease activity index in mice, via suppression of DSS-stimulated transcript levels of pro-inflammatory genes, including Tnf (encoding TNF-alpha), Il6, and Ptgs2 (encoding cyclooxygenae 2). Intriguingly, given the fact that the transgenic potato tuber extract failed to enrich the anti-inflammatory activity of macrophage cells, it is likely that metabolic engineering of betacyanins will be a powerful way of increasing the anti-inflammatory property of ordinary foods such as tomato.


Subject(s)
Betacyanins , Mirabilis , Animals , Mice , Betacyanins/analysis , Betacyanins/metabolism , Vegetables/metabolism , Metabolic Engineering , Mirabilis/metabolism , Lipopolysaccharides , Betalains/analysis , Betalains/metabolism , Plant Extracts
3.
J Food Sci ; 88(1): 161-174, 2023 Jan.
Article in English | MEDLINE | ID: mdl-36524774

ABSTRACT

Betalains are plant pigments with biological properties and can be used instead of synthetic colorants to confer color and functional properties to foods. The objective of this work was to carry out the chemical characterization of two varieties of prickly pear of Opuntia ficus-indica, one of yellow-orange coloration (Mandarina) and the other of purple coloration (Vigor), through measurements of chemical parameters and color in pulp, antioxidant activity, total phenolic compounds, and betalain content. Considering the thermolability of betalains and their potential applications in food, the thermal stability and activation energy of betacyanins from Vigor variety and betaxanthins from the Mandarina variety were also evaluated and compared with those from beetroot, the main source of betalains. Results for chemical characterization agreed with previous prickly pear reports of other regions, while the thermal degradation kinetics of betalains showed a first-order degradation pattern with respect to time and temperature treatment. Betacyanins from Vigor prickly pear showed similar thermal stability to those from beetroot, which was reflected in similar values of activation energy, while betaxanthins from Mandarina prickly pear showed a higher stability, and therefore a higher activation energy, than those from beetroot. Based on the results, the prickly pear varieties used in this study can be considered as a good source of betalains with potential applications in food and, in addition, the methodology for the evaluation of thermostability can be used to compare the stability of betalains from different sources in a temperature range of 50-90°C. PRACTICAL APPLICATION: The varieties of prickly pear used in this study can be considered a good source of red-purple and yellow-orange easily extractable pigments. In addition, we report a methodology that can be used for the evaluation of the thermal stability of these pigments and to compare this stability between different plant sources. Gaining knowledge on betalain thermal stability will make it possible to propose specific applications, for example, in processed foods requiring different pigment stabilities.


Subject(s)
Betalains , Opuntia , Betalains/analysis , Betalains/chemistry , Fruit/chemistry , Betacyanins/analysis , Opuntia/chemistry , Betaxanthins/analysis , Pigments, Biological/analysis , Plant Extracts/chemistry , Vegetables
4.
Nat Prod Res ; 37(10): 1746-1765, 2023 May.
Article in English | MEDLINE | ID: mdl-35921318

ABSTRACT

In the last years, the use of natural phytochemical compounds as protective agents in the prevention and treatment of obesity and the related-metabolic syndrome has gained much attention worldwide. Different studies have shown health benefits for many vegetables such Opuntia ficus-indica and Beta vulgaris and their pigments collectively referred as betalains. Betalains exert antioxidative, anti-inflammation, lipid lowering, antidiabetic and anti-obesity effects. This review summarizes findings in the literature and highlights the therapeutic potential of betalains and their natural source as valid alternative for supplementation in obesity-related disorders treatment. Further research is needed to establish the mechanisms through which these natural pigments exert their beneficial effects and to translate the promising findings from animal models to humans.


Subject(s)
Betalains , Opuntia , Animals , Humans , Betalains/pharmacology , Betalains/therapeutic use , Betalains/analysis , Color , Plant Extracts/chemistry , Antioxidants/pharmacology , Antioxidants/therapeutic use , Antioxidants/analysis , Opuntia/chemistry , Fruit/chemistry
5.
Food Res Int ; 158: 111556, 2022 08.
Article in English | MEDLINE | ID: mdl-35840248

ABSTRACT

Beetroot (Beta vulgaris) is the most well-known and commonly cultivated fruit from the Chenopodiaceae family. Beetroot is a rich source of nutrients including vitamins (B complex and C), minerals, fibre, proteins, and a variety of bioactive phenolic substances, which are chiefly composed of betalains, and other components possessing antioxidant activity, such as coumarins, carotenoids, sesquiterpenoids, triterpenes, and flavonoids (astragalin, tiliroside, rhamnocitrin, kaempferol, rhamnetin). Beetroot and its value-added products provide a variety of health advantages and may help prevent and manage various ailments and diseases due to bioactive components. Beetroot's phytochemical diversity makes them potential sources of nutraceutical chemicals that can be used to build functional foods. Pharmacologically, beetroot has the potential to be an antioxidant, antimicrobial, anticancerous, hypocholesterolemic, and anti-inflammatory agent. In a comprehensive analysis, this review first provides an overview of the bioactive compounds present in beetroot and its parts, followed by a specific description of the current evidence on this bioactive potential of beetroot and its parts, highlighting the biochemical mechanisms involved. Additionally, the factors affecting the concentration and activity of the beetroot bioactives and the best possible method to conserve its bioactivity has also been discussed in this review.


Subject(s)
Beta vulgaris , Antioxidants/analysis , Beta vulgaris/chemistry , Betalains/analysis , Betalains/pharmacology , Phytochemicals/analysis , Phytochemicals/pharmacology , Vegetables
6.
Plant Foods Hum Nutr ; 77(1): 90-97, 2022 Mar.
Article in English | MEDLINE | ID: mdl-35088214

ABSTRACT

Betalain pigments are mainly produced by plants belonging to the order of Caryophyllales. Betalains exhibit strong antioxidant activity and responds to environmental stimuli and stress in plants. Recent reports of antioxidant, anti-inflammatory and anti-cancer properties of betalain pigments have piqued interest in understanding their biological functions. We investigated the effects of betalain pigments (betanin and isobetanin) derived from red-beet on amyloid-ß (Aß) aggregation, which causes Alzheimer's disease. Non-specific inhibition of Aß aggregation against Aß40 and Aß42 by red-beet betalain pigments, in vitro was demonstrated using the thioflavin t fluorescence assay, circular dichroism spectroscopy analysis, transmission electron microscopy and nuclear magnetic resonance (NMR) analysis. Furthermore, we examined the ability of red-beet betalain pigments to interfere with Aß toxicity by using the transgenic Caenorhabditis elegans model, which expresses the human Aß42 protein intracellularly within the body wall muscle. It responds to Aß-toxicity with paralysis and treatment with 50 µM red-beet betalain pigments significantly delayed the paralysis of C. elegans. These results suggest that betalain pigments reduce Aß-induced toxicity.


Subject(s)
Beta vulgaris , Betalains , Amyloid beta-Peptides/chemistry , Amyloid beta-Peptides/metabolism , Amyloid beta-Peptides/toxicity , Animals , Antioxidants/pharmacology , Beta vulgaris/chemistry , Betalains/analysis , Betalains/chemistry , Betalains/pharmacology , Caenorhabditis elegans/metabolism , Paralysis/chemically induced
7.
Molecules ; 26(21)2021 Oct 20.
Article in English | MEDLINE | ID: mdl-34770751

ABSTRACT

Deep eutectic solvents (DES) using magnesium chloride hexahydrate [MgCl2·6H2O] and urea [U] proportions (1:1) and (2:1), were prepared for their use as extracting and stabilizer agents for red and violet betalains from beetroot (Beta vulgaris) waste. The synthetized DES [MgCl2·6H2O] [U] showed similar properties to eutectic mixtures, such as, liquid phase, low melting points and conductivity, thermal stability, and variable viscosity. In turn, betalain DES extracts (2:1) exhibited compatibility in the extraction and recovery of betalains from beetroot wastes, showing a betalain content comparable to that of betalain extracts. Betalain stability was determined by degradation tests; the exposure conditions were visible light (12 h), molecular oxygen from atmospheric air and environmental temperature (20-27 °C) for 40 days. The kinetic curves of the betalain degradation of water samples depicted a first-order model, indicating the alteration of a violet colouration of betalains from beetroot waste for 5-7 days. However, betalains from DES extracts were kept under visible light for 150 days, and for 340 days in storage (amber vessels), achieving a stability of 75% in comparison with initial beet extracts.


Subject(s)
Beta vulgaris/chemistry , Betalains/chemistry , Betalains/isolation & purification , Plant Extracts/chemistry , Solvents/chemistry , Betalains/analysis , Chemical Fractionation , Chemical Phenomena , Environment , Molecular Structure , Spectrum Analysis , Vegetables , Viscosity
8.
Molecules ; 26(16)2021 Aug 18.
Article in English | MEDLINE | ID: mdl-34443599

ABSTRACT

Natural food items and the additional benefits they provide have received considerable attention in recent years. Betalains are nutritious pigments which have valuable biological properties, e.g., antioxidant and free radical scavenging activity. In this study, aqueous betalain extracts were obtained from different coloured cactus pears (purple, red/pink, and orange), amaranth, and beetroot, with and without the addition of ascorbic acid, microwave-heated, and freeze-dried and subsequently analysed by thin layer chromatography (TLC). Beetroot samples without the addition of ascorbic acid (AA) had lower phenols, flavonoids, and ascorbic acid content than beetroot samples extracted with the addition of AA. Amaranth had significantly higher contents of antioxidants than all the other plants. Results for phenolic compounds showed that there were no significant differences between cactus pear cultivars, however, significant differences were seen between the two beetroot samples (microwave-heated with and without AA) as well as amaranth. For flavonoid compounds, amaranth had significantly higher values than all other samples. The lowest flavonoid content was found in beetroot without AA (0.49 mgCE/g). For ascorbic acid, significant differences were noticed between amaranth (71.71 mg/100 g) and samples from cactus pear and beetroot. TLC results showed that purple and red cactus pear samples had the most vivid colours, a reflection of the high betacyanin and betaxanthin contents in the cultivars. Moreover, extracts from cactus pear, beetroot, and amaranth were classified according to a decision tree which was designed by the Code of Federal Regulations/Food Additives Regulation of the EU. The classification of betalain pigment extracts as colouring foods was achieved through enrichment factor calculations and the colourant decision tree. The results showed that the betalain pigment extraction method used is inexpensive, time-saving, energy-saving, non-toxic, and chemical solvent free and yields high concentrations of betalains.


Subject(s)
Beta vulgaris/chemistry , Betalains/analysis , Betalains/isolation & purification , Fruit/chemistry , Opuntia/chemistry , Plant Leaves/chemistry , Plant Tubers/chemistry
9.
Food Chem ; 362: 130132, 2021 Nov 15.
Article in English | MEDLINE | ID: mdl-34082297

ABSTRACT

This study presents methods that can be used to assess the health quality of products containing betalains. The paper compares and verifies data on the phytochemical composition of three different pigmented beetroot cultivars using spectrophotometric, HPLC-DAD, HPTLC and LC-Q-Orbitrap-HRMS techniques. Additionally, we compared the total antioxidant activity in both the cell-free and cellular systems. Betalain contribution to antioxidant activity was also determined using post-column derivatization and it was found that in the case of red beetroot it is about 50%. Photometric measurements are recommended for a simple and inexpensive analysis of the total betacyanin and betaxanthin content. Liquid chromatography techniques produced more precise information on phytochemical composition in the tested samples. The combination of liquid chromatography with high-resolution mass spectrometry produced the largest amount of quantitative and qualitative data; in beetroot samples sixty-four phytochemicals have been identified therefore, this approach is recommended for more detailed metabolomics studies.


Subject(s)
Antioxidants/chemistry , Beta vulgaris/chemistry , Betalains/analysis , Mass Spectrometry/methods , Antioxidants/analysis , Antioxidants/pharmacology , Betacyanins/analysis , Betalains/chemistry , Chromatography, High Pressure Liquid/methods , Chromatography, Liquid/methods , Food Analysis/methods , HT29 Cells , Humans , Phytochemicals/analysis , Phytochemicals/isolation & purification , Picolinic Acids/analysis , Plant Extracts/chemistry , Plant Extracts/pharmacology , Software
10.
Food Chem ; 342: 128087, 2021 Apr 16.
Article in English | MEDLINE | ID: mdl-33077279

ABSTRACT

Cactus berry (Myrtillocactus geometrizans) is a scarcely studied Mexican wild fruit. These fruits could contribute to reduce the risk of degenerative chronic diseases due to their bioactive profile. The aim of this work was to study the betalains and phenolic profile in cactus berry, their in vitro biological activities and gastrointestinal digestive stability and bioaccessibility. 43 metabolites were identified by HPLC-DAD-ESI-QTOF (8 betaxanthins, 8 betacyanins, 13 flavonoids, 6 phenolic acids). Phyllocactin and Isorhamnetin rhamnosyl-rutinoside (IG2) were the most abundant metabolites (5876 and 396 µg/g dw) which were also bioaccessible (16 and 21%, respectively). Pulps showed higher (p ≤ 0.05) antioxidant activity by the Oxygen Radical Absorbance Capacity (27 mM Trolox equivalents). The anti-hyperglycemic activity was highest (p ≤ 0.05) in peel and pulp tissues (85% α-glucosidase and 8% α-amylase inhibition). An 83% inhibition of hyaluronidase showed high anti-inflammatory activity. Cactus berry fruit should be considered a promising fruit candidate for a sustainable healthy diet.


Subject(s)
Betalains/chemistry , Cactaceae/chemistry , Phenols/chemistry , Anti-Inflammatory Agents/chemistry , Antioxidants/chemistry , Betalains/analysis , Betalains/metabolism , Cactaceae/metabolism , Chromatography, High Pressure Liquid , Digestion , Flavonoids/analysis , Flavonoids/chemistry , Flavonoids/metabolism , Fruit/chemistry , Fruit/metabolism , Glycoside Hydrolase Inhibitors/chemistry , Glycoside Hydrolase Inhibitors/metabolism , Phenols/analysis , Phenols/metabolism , Plant Extracts/chemistry , Spectrometry, Mass, Electrospray Ionization , alpha-Glucosidases/chemistry , alpha-Glucosidases/metabolism
11.
J Sci Food Agric ; 101(5): 1989-1997, 2021 Mar 30.
Article in English | MEDLINE | ID: mdl-32914436

ABSTRACT

BACKGROUND: Red beet plants are cultivated worldwide for the consumption of their roots, generating large amounts of unexploited by-products. In particular, beet leaves (BLs) represent about 50% of the whole plant and are usually discarded as waste. This constitutes not only an economic issue, since multiple resources invested in the production will be wasted, but also an environmental problem because of the pollution associated with their disposal. However, BLs comprise an important source of functional compounds (polyphenols and betalains) that could be recovered from the raw material, representing a sustainable solution for the underutilization of this by-product. This study proposes the recovery of polyphenols and betalains using an aqueous ultrasound-assisted extraction (UAE) process at different powers (35, 50, and 100 W) that was characterized and optimized. RESULTS: UAE significantly enhanced the recovery of bioactive compounds and shortened the time required for extraction in comparison with traditional macerations (35 < 50 < 100 W). During UAE, the temperature of the systems increased as a function of the power applied, favouring the recovery of these phytochemicals. Additionally, a Box-Behnken design and response surface methodology were employed to optimize UAE conditions (90 W ultrasound power, 1:20 solid:liquid ratio, 16 min extraction time), under which the yields were 14.9 mg g-1 (polyphenols), 949.1 µg g-1 (betaxanthins), and 562.2 µg g-1 (betacyanins), consistent with the values predicted by the models. CONCLUSION: This study enabled the development of a green-solvent UAE process that constitutes an effective post-harvest by-products strategy to minimize losses and increase biomass utilization through the recovery of bioactive compounds from BLs, promoting sustainability in the agri-food chain. © 2020 Society of Chemical Industry.


Subject(s)
Beta vulgaris/chemistry , Chemical Fractionation/methods , Plant Extracts/isolation & purification , Antioxidants/analysis , Antioxidants/isolation & purification , Betalains/analysis , Betalains/isolation & purification , Chemical Fractionation/instrumentation , Plant Extracts/analysis , Plant Leaves/chemistry , Polyphenols/analysis , Polyphenols/isolation & purification , Ultrasonics
12.
Molecules ; 25(22)2020 Nov 18.
Article in English | MEDLINE | ID: mdl-33218115

ABSTRACT

There are 11 different varieties of Beta vulgaris L. that are used in the food industry, including sugar beets, beetroots, Swiss chard, and fodder beets. The typical red coloration of their tissues is caused by the indole-derived glycosides known as betalains that were analyzed in hypocotyl extracts by UV/Vis spectrophotometry to determine the content of betacyanins (betanin) and of betaxanthins (vulgaxanthin I) as constituents of the total betalain content. Fields of beet crops use to be also infested by wild beets, hybrids related to B. vulgaris subsp. maritima or B. macrocarpa Guss., which significantly decrease the quality and quantity of sugar beet yield; additionally, these plants produce betalains at an early stage. All tested B. vulgaris varieties could be distinguished from weed beets according to betacyanins, betaxanthins or total betalain content. The highest values of betacyanins were found in beetroots 'Monorubra' (9.69 mg/100 mL) and 'Libero' (8.42 mg/100 mL). Other beet varieties contained less betacyanins: Sugar beet 'Labonita' 0.11 mg/100 mL; Swiss chard 'Lucullus,' 0.09 mg/100 mL; fodder beet 'Monro' 0.15 mg/100 mL. In contrast with weed beets and beetroots, these varieties have a ratio of betacyanins to betaxanthins under 1.0, but the betaxanthin content was higher in beetcrops than in wild beet and can be used as an alternative to non-red varieties. Stability tests of selected varieties showed that storage at 22 °C for 6 h, or at 7 °C for 24 h, did not significantly reduce the betalain content in the samples.


Subject(s)
Beta vulgaris/chemistry , Betacyanins/analysis , Betaxanthins/analysis , Plant Weeds/chemistry , Beta vulgaris/genetics , Betacyanins/chemistry , Betalains/analysis , Genotype , Hypocotyl/chemistry , Plant Extracts/chemistry
13.
Molecules ; 25(15)2020 Jul 31.
Article in English | MEDLINE | ID: mdl-32751910

ABSTRACT

Over the past decade, consumers have demanded natural, completely biodegradable active packaging serving as food containers. Bioactive plant compounds can be added to biopolymer-based films to improve their functionality, as they not only act as barriers against oxidation, microbiological, and physical damage, they also offer functionality to the food they contain. A water-in-oil (W/O) nanoemulsion was produced by applying ultrasound to xoconostle extract and orange oil, and was incorporated into gelatine films in different proportions 1:0 (control), 1:0.10, 1:0.25, 1:0.50, 1:0.75, and 1:1 (gelatine:nanoemulsion). The nanoemulsions had an average size of 118.80 ± 5.50 nm with a Z-potential of -69.9 ± 9.93 mV. The presence of bioactive compounds such as phenols, flavonoids, and betalains in the films was evaluated. The 1:1 treatment showed the highest presence of bioactive compounds, 41.31 ± 3.71 mg of gallic acid equivalent per 100 g (GAE)/100g for phenols, 28.03 ± 3.25 mg of quercetin equivalent per 100 g (EQ)/100g flavonoids and 0.014 mg/g betalains. Radical inhibition reached 72.13% for 2,20-azino-bis-3-ethylbenzothiazoline-6-sulphonic acid (ABTS), and 82.23% for 1,1-diphenyl-2-picrylhydrazyl (DPPH). The color of the films was influenced by the incorporation of nanoemulsions, showing that it was significantly different (p < 0.05) to the control. Mechanical properties, such as tensile strength, Young's modulus, and percentage elongation, were affected by the incorporation of nanoemulsified bioactive compounds into gelatine films. The obtained films presented changes in strength and flexibility. These characteristics could be favorable as packaging material.


Subject(s)
Biodegradable Plastics/chemistry , Food Packaging , Gelatin/chemistry , Nanostructures/chemistry , Opuntia/chemistry , Plant Extracts/chemistry , Plant Oils/chemistry , Antioxidants/analysis , Antioxidants/chemistry , Betalains/analysis , Betalains/chemistry , Color , Emulsions/chemical synthesis , Emulsions/chemistry , Flavonoids/analysis , Flavonoids/chemistry , Gelatin/chemical synthesis , Phenols/analysis , Phenols/chemistry
14.
Molecules ; 25(9)2020 May 10.
Article in English | MEDLINE | ID: mdl-32397593

ABSTRACT

The possibility of obtaining a carmine or pink color on ordinary cooked ham by applying natural dyes from three plant species, namely red radish (Raphanus sativus L.), hibiscus (Roselle sabdariffa L.) and red beetroot (Beta vulgaris L.), was investigated. The extracts were evaluated for the stability at physical-chemical parameters and subjected to cytotoxicity assays in the gastric cell line AGS Encapsulation of the extracts in soybean lecithin liposomes and maltodextrin microcapsules was performed. Lyophilized extracts before and after encapsulation in maltodextrin were applied in the formulation of ordinary cooked ham and used in a pilot scale of production. The color of cooked ham samples from different assays was evaluated visually and by colorimetry. The results suggest that the coloration of ordinary cooked ham obtained with extracts of red beetroot is very promising for future applications in this type of meat product.


Subject(s)
Beta vulgaris/chemistry , Betalains/analysis , Cooking/methods , Meat Products/standards , Plant Extracts/analysis , Pork Meat/standards , Betacyanins/analysis , Betacyanins/chemistry , Betacyanins/toxicity , Betalains/chemistry , Betalains/isolation & purification , Betalains/toxicity , Capsules/chemistry , Cell Line , Color , Colorimetry , Coloring Agents/chemistry , Coloring Agents/isolation & purification , Hibiscus/chemistry , Humans , Lecithins/chemistry , Liposomes/chemistry , Mass Spectrometry , Plant Extracts/chemistry , Plant Extracts/isolation & purification , Plant Extracts/toxicity , Polysaccharides/chemistry , Raphanus/chemistry , Glycine max/chemistry
15.
Food Chem ; 312: 126073, 2020 May 15.
Article in English | MEDLINE | ID: mdl-31901824

ABSTRACT

The Mexican drylands possess enormous biotic and cultural wealth, representing 65% of the national territory. Approximately 50% of Mexican dryland flora is endemic and accompanied by ample local and traditional knowledge. There are certain types of cactus fruits that are being technologically produced. However, there are other cactus fruit that are underutilized and understudied that could be promoted for their sustainable use. Evidence indicates that the genera of Escontria, Myrtilocactus, Hylocereus, and Stenocereus contain bioactive compounds such as betalains and phenols. Opuntia, the most abundant cactus in Mexico, produces fruit known as prickly pears with bioactive compounds that are associated with health benefits. The purpose of this review is to compile the nutritional and functional properties of selected cactus fruits from the Mexican drylands, as well as their use in the health, food, cosmetic, and agricultural industries in order to establish knowledge gaps and well-supported future research directions.


Subject(s)
Cactaceae/chemistry , Betalains/analysis , Fruit/chemistry , Mexico , Phenols/analysis
16.
Food Chem ; 310: 125637, 2020 Apr 25.
Article in English | MEDLINE | ID: mdl-31791727

ABSTRACT

Reduction of bioactive compounds sensitive to heat, light and oxygen could be attributed to drying. The effectiveness of microwave pretreatment at 525 or 420 W and the ohmic heating at 17.5 V/cm over the properties of beetroot powder were compared. This study aimed to develop novel hybrid drying methods. The effects of microwave and ohmic heating pre-treatment and subsequent microwave-convection drying were studied. Several investigations were performed, such as phenolic content, antioxidant activity, betalains content and color. The samples pretreated by microwave have registered higher polyphenols content and antioxidant capacity than those ohmically heated. The ohmic heating pretreated samples registered highest values for ΔL = 7.33-7.65 and ΔH = 8.18-10.02. Confocal microscopy reveals that the MW heating favors cellular lysis and cell content agglutinates. In conclusion, even if the MW preheating has certain disadvantages, in some cases it provides increased bioavailability generated by the vegetal cell disruption and the release of the bioactive compounds.


Subject(s)
Beta vulgaris/chemistry , Desiccation/methods , Powders/chemistry , Antioxidants/analysis , Antioxidants/chemistry , Betacyanins/analysis , Betalains/analysis , Betalains/chemistry , Color , Convection , Hot Temperature , Microwaves , Picolinic Acids/analysis , Polyphenols/analysis , Polyphenols/chemistry
17.
Food Chem ; 286: 600-607, 2019 Jul 15.
Article in English | MEDLINE | ID: mdl-30827652

ABSTRACT

This study investigated the effectiveness of cysteine in conservation of bioactive compounds and the antioxidant capacity of minimally processed red beet. After red beet minimal processing increasing cysteine concentrations were applied, corresponding to control, 2 mM, 4 mM, 8 mM and 16 mM. Assay was performed over 15 d to evaluate the polyphenols, betalains, antioxidant capacity and enzymatic activity of polyphenol oxidase (PPO) and phenylalanine ammonia lyase (PAL). Cysteine enhanced the gallic acid, caffeic acid, chlorogenic acid, kaempferol and betalain contents until 6 d of storage. Subsequently, dosages of cysteine above 4 mM maintained gallic acid, kaempferol and betalains contents. Cysteine appears to influence the phenylpropanoid pathway, favoring the accumulation of polyphenols and betalains. In red beet, cysteine did not inhibit PPO activity but enhanced PAL activity. Betalains contribute more than phenolics to the antioxidant capacity, and their relationship with cysteine has not been thoroughly elucidated to date.


Subject(s)
Beta vulgaris/chemistry , Betalains/analysis , Cysteine/pharmacology , Food Preservation/methods , Polyphenols/analysis , Antioxidants/analysis , Beta vulgaris/drug effects , Beta vulgaris/metabolism , Caffeic Acids/analysis , Caffeic Acids/metabolism , Catechol Oxidase/analysis , Catechol Oxidase/metabolism , Gallic Acid/analysis , Gallic Acid/metabolism , Phenylalanine Ammonia-Lyase/analysis , Phenylalanine Ammonia-Lyase/metabolism , Plant Proteins/analysis , Plant Proteins/metabolism
18.
Int J Food Sci Nutr ; 70(4): 442-452, 2019 Jun.
Article in English | MEDLINE | ID: mdl-30632828

ABSTRACT

Betalains are a group of plant originated pigments with chemopreventive potential. The aim of this study was to relate the composition of betalains and chosen biological activities (antioxidant, cytotoxic, anti-genotoxic and influence on enzymatic activities) for extracts from differently pigmented varieties of prickly pear (yellow, orange and red) and beetroot (white and red). The assumption was that phytocomplexes of tested varieties of the same plant species would exhibit generally similar chemical composition differing mostly in betalain content, which will be reflected by their biological activity. Betalain composition analysis and antioxidant profiles confirmed that the content and composition of these pigments is strongly correlated with the antioxidant activity of tested plant extracts measured by spectrophotometric methods and CAA test. However, the results of determinations of other biological activities showed that in the case of actual plant foods, there was no simple relationship between betalain content or composition and chemopreventive potential.


Subject(s)
Beta vulgaris/chemistry , Betalains/analysis , Opuntia/chemistry , Pigments, Biological/analysis , Antioxidants/analysis , DNA Damage , Fruit/chemistry , HT29 Cells , Humans , Oxidative Stress , Plant Extracts/chemistry
19.
Food Res Int ; 115: 241-250, 2019 01.
Article in English | MEDLINE | ID: mdl-30599938

ABSTRACT

Alternanthera sessilis (red) (ASR) is an edible herbal plant with many beneficial health effects. This study aimed to investigate the antioxidant components and antioxidant activities of the edible leaves and stems of ASR extracted using solvent of varying polarities namely water, ethanol, ethyl acetate and hexane. ASR leaf extracts showed higher in both antioxidant components and activities than the stem extracts. Among the antioxidant components, the ethanol leaf extract showed higher phenolic (77.29 ±â€¯1.02 mg GAE/g extract) content while the ethyl acetate leaf extract was rich in flavonoids (157.44 ±â€¯10.19 mg RE/g extract), carotenoids (782.97 ±â€¯10.78 mg BE/g extract) and betalains (betanin: 67.08 ±â€¯0.49 mg/g extract; amaranthin: 93.94 ±â€¯0.68 mg/g extract and betaxanthin: 53.92 ±â€¯0.88 mg/g extract). Nevertheless, the ethanol leaf extract showed the highest DPPH radical scavenging activity and ABTS radical cation scavenging activity. It also exhibited highest ferric reducing activity among all the extracts. Four polyphenolic compounds from ASR leaf, namely ferulic acid, rutin, quercetin and apigenin, were identified and quantified using ultra high performance liquid chromatography. The existence of these compounds was further verified using tandem mass spectrometry. These current results indicate that ASR leaf particularly the ethanol extract has the potential to be exploited as a source of natural antioxidants.


Subject(s)
Amaranthaceae/chemistry , Antioxidants/analysis , Chromatography, High Pressure Liquid/methods , Phytochemicals/analysis , Polyphenols/analysis , Tandem Mass Spectrometry/methods , Apigenin/analysis , Betalains/analysis , Carotenoids/analysis , Coumaric Acids/analysis , Flavonoids/analysis , Phenols/analysis , Plant Extracts/analysis , Plant Leaves/chemistry , Quercetin/analysis , Rutin/analysis , Solvents
20.
Food Chem ; 272: 715-722, 2019 Jan 30.
Article in English | MEDLINE | ID: mdl-30309603

ABSTRACT

In this work the capacity of Opuntia ficus indica mucilage as a wall agent in the microencapsulation of Escontria chiotilla and Stenocereus queretaroensis pulp and skin pigments through a spray drying process was studied. The acidified mucilage was used as an extracting medium for betalains present in the skin of these fruits. The shear-thinning behavior of the mucilage-betalain solutions was suitable for spray drying, wherein microcapsules with smooth and spherical morphologies were observed by SEM and characterized by FTIR. Additionally, microcapsules of mucilage achieved the retention of betalains at more than 90% after three months of storage. The colors obtained from the redissolution of the powders from skin and pulp samples do not present significant differences; therefore, the use of skin fruits can be a source of colorants, taking advantage of waste from other processes, promoting a culture of the use of environmentally-friendly technologies.


Subject(s)
Betalains/chemistry , Plant Extracts/chemistry , Betalains/analysis , Cactaceae/chemistry , Cactaceae/metabolism , Color , Drug Compounding , Fruit/chemistry , Fruit/metabolism , Microscopy, Electron, Scanning , Rheology , Spectrophotometry , Spectroscopy, Fourier Transform Infrared
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