This study evaluates the nutritional and bioactive properties and the in vitro antidiabetic activity of fine and coarse flours derived from several common and tartary buckwheat (Fagopyrum esculentum Moench and Fagopyrum tataricum (L.) Gaertn, respectively) varieties. Fine flours were a good source of protein (8.9-13.3 g/100 g), starch (55.9-65.6 g/100 g), riboflavin (117-172 mu g/100 g) and had low phytic acid content (0.10-1.04 g/ 100g), with high differences among varieties. Tartary buckwheat showed the highest riboflavin content and dipeptidyl-peptidase (DPP-IV) inhibitory activity and stood out for its high protein content. Coarse flours, in general, exhibited lower nutritional value than fine flours. Fine flours from all buckwheat varieties had a moderate glycemic index (45.6-60.7 %) and inhibited DPP-IV, alpha-glucosidase, and alpha-amylase activities. The findings of this work evidenced the potential of buckwheat to boost the nutritional content of gluten-free diets offering additional health benefits.
Background: Cow’s milk is the most frequent cause of food allergies in children, with caseins and β-lactoglobulin being considered the main allergens. Concerningly, numerous international agencies have highlighted a growing risk of allergic reactions in milk-allergic individuals after the consumption of products labelled as “vegan”. Objectives: We describe the case of a 3.5-year-old boy with a history of a food allergy to milk who complained of anaphylactic clinical symptoms after eating a vegan Easter egg. The aim of this study was to confirm the cause of the clinical symptoms, searching for the possible presence of milk proteins in the vegan chocolate. Methods: An experimental approach based on electrophoretic (SDS-PAGE) and immunoenzymatic techniques (ELISA) was applied. Results: SDS-PAGE indicated the presence of milk proteins, which was confirmed and quantified via ELISA (3034 ± 115 mg/kg). Conclusions: The data obtained demonstrate that the severe clinical symptoms were due to the unexpected presence of milk proteins in a vegan product, underlining the critical need for rigorous allergen quality control throughout the food industry.
Fagopyrum esculentum Moench (common buckwheat) is the predominant type of buckwheat currently cultivated. Tartary buckwheat (Fagopyrum tataricum (L.) Gaertn.), which is a promising minor variety of buckwheat, could contribute to biodiversity and sustainable agricultural and food production. This paper evaluates and characterizes the soluble phenolic profile and antioxidant capacity of nine common buckwheat varieties (Fagopyrum esculentum Moench) and one tartary buckwheat variety (Fagopyrum tataricum (L.) Gaertn.), analyzed in both flour (<250 mu m) and semi-finished product (>250 mu m) forms. Several different in vitro methods were employed: Folin-Ciocalteu assay, DPPH assay, TEAC assay, ORAC assay, HPTLC, HPLC-DAD and LC-HRMS. The results revealed that compared to the common buckwheat varieties, tartary buckwheat showed the highest content of soluble phenolic compounds (10.99 +/- 1.35 mg GAE/g d.m.) and the highest antioxidant capacity (respectively 3.44 +/- 0.33 mg GAE/g d.m. for the DPPH assay, 21.46 +/- 1.74 mg TE/g d.m. for the TEAC assay and 139.14 +/- 4.16 mg TE/g d.m. for the ORAC assay). These preliminary findings suggest that tartary buckwheat, with its rich phenolic content and potent antioxidant activity, holds considerable promise as a functional food ingredient which could offer health benefits to consumers.
The European Circular Economy Action Plan outlines a forward-looking strategy that emphasizes waste reduction and the acquisition of high-quality secondary resources. Previous research has shown that cocoa processing by-products contain compounds of interest for various industrial areas, making them an attractive matrix for reuse. However, a gap remains in our understanding of the safety of these by-products intended for feed. In this study, theobromine and caffeine were quantified by High-Performance Liquid Chromatography (HPLC-UV) in cocoa hulls for safety considerations, evaluating theobromine compliance with toxicological and safety levels, and considering their potential application as an ingredient in animal feed. In addition, the identification of phenolic components and associated antioxidant activity was conducted through High-Performance Thin-Layer Chromatography (HPTLC). This preliminary study indicates that theobromine content is a limiting factor for the inclusion of cocoa hulls in animal diets, as it restricts inclusion levels to remain within current regulatory limits. Examples of general estimates of dietary theobromine exposure at inclusion levels based on regulatory limits for dairy cows and veal calves confirmed a low risk for animal health. Furthermore, the detection of antioxidant activity linked to the presence of polyphenols highlights the potential of cocoa hulls as a sustainable food by-product for feed formulation.
By conducting a narrative review of the scientific literature, the authors of this study sought to verify whether there were sufficient data to answer the following question: “Can wine positively or negatively influence the incidence and severity of disorders associated with gastrointestinal (GI) diseases?”. In this review, most of the studies considered tested different alcoholic beverages (other than wine), not always reporting in the conclusions the possible difference in the extent of symptoms. Although alcohol certainly plays a central role in influencing the oesophageal and gastric environment, no studies evaluating the role of alcohol as such were included, since the aim of the review was to understand whether wine can be moderately consumed by patients with gastrointestinal diseases. The analysis of studies selected from the main reference databases indicates that even moderate wine consumption can be a source of discomfort in subjects with the GI diseases included in this review (gastritis and gastroesophageal disease, gastrointestinal motility, inflammatory bowel disease, irritable bowel syndrome, and microscopic colitis). This does not mean that a certain percentage of patients cannot tolerate moderate amounts of alcoholic beverages; however, discussion with the family doctor or specialist is essential to identify the correct diet in which to include or exclude the consumption of wine. One of the limitations of this review is the low number of studies available, at least for some of the pathologies considered. It is important to emphasise, however, that some selected epidemiological studies, which include many subjects (even over 100,000), can provide useful information from a scientific point of view.
Pigmented rice bran is under-researched for human nutrition. This study investigated milling and cooking effects on the physicochemical and nutritional quality of pigmented and non-pigmented rice. Raw rice properties, cooking behavior and nutritional in-vitro quality were evaluated. Samples were cooked following a "risotto" preparation method. Bran removal by milling reduced kernel dimension (15%) and hardness (8%). Pigmented rice had higher total phenolic content (TPC; >41%) and higher antioxidant activity (AOA; >24%) than Carnaroli but milling significantly (p <= 0.05) reduced them. The bran was fractionated and (re)added during rice cooking as a new strategy to preserve nutritional compounds at their best. Compared with brown rice, milled samples exhibited greater geometric expansion and shorter cooking times (>47%), confirming that removal of the outer layer facilitated water penetration. Cooking affected the TPC differently depending on the rice variety (e.g., -15.5% for Violet and +7.8% for Orange brown samples). The incorporation of rice bran during cooking improved the "risotto" color and its nutritional value (TPC > 53% and AOA > 60%). Results evidenced the impact of different processing methods on rice quality, suggesting the potential use of rice co-product (i.e., bran) as new ingredient for healthier and more sustainable foods.
A high number of varieties from corn (Zea mays L.) have been consumed for long time all over the world, however pigmented varieties are recently gaining renewed attention due to their beneficial effects and polyphenolic content. The natural lack of gluten makes corn suitable for consumption by celiac population, who need to control their inflammatory state through an appropriate gluten-free diet. The biological effects of polyphenols from pigmented corn are poorly investigated in the context of celiac disease. In this work, we analyzed through HPLC-DAD the phenolic composition of two Italian purple and red varieties ("Scagliolo Rosso" and "Rostrato di Rovetta", respectively) comparing their effects in human intestinal epithelial cells (CaCo-2 cells). The possible impact of gastro-intestinal digestion following oral consumption was assessed as well. The phenolic profile showed the presence of phenolic acids in both varieties, while anthocyanins were identified in Scagliolo Rosso only. After simulated digestion, the level of polyphenols did not significantly change and paralleled with an increased scavenging activity. In CaCo-2 cells, stimulated by a proinflammatory cocktail containing gliadin-derived peptides (IL-1β, IFN-γ, digested gliadin), pigmented corn extracts inhibited the release of CXCL-10 and sICAM-1, with mechanisms partially ascribed to NF-κB impairment. At the same concentration (200 μg/mL), ROS production and catalase depletion were reverted through Nrf-2-independent mechanisms. Our data suggest that polyphenols from pigmented corns might help in controlling the inflammatory and oxidative state of people with celiac disease at intestinal level, at concentrations potentially achievable through a gluten-free diet.
This review critically assesses scientific literature in order to determine whether alcoholic beverages can positively or negatively affect the incidence and severity of immune-mediated disorders, including autoimmune diseases. Few scientific studies explore the association between alcoholic beverages and the immune system, in contrast to the extensive literature dedicated to the cardiovascular system. Because wine is the most investigated product in this review, it does not take into account studies that evaluate the role of alcohol itself without specifying the beverages included (e.g., wine, spirits and beer). The analysis of the data regarding the diseases reviewed here (allergies, celiac disease, the common cold and COVID-19, chronic inflammation bowel diseases, type 1 diabetes, dermatitis herpetiformis, multiple sclerosis, psoriasis, rheumatoid arthritis, systemic lupus erythematosus and thyroid disorders) revealed that, in principle (although with differences between the various pathologies), moderate consumption of wine does not negatively affect the risk of development or the progression of immune-mediated diseases. In some cases, the effect is mainly attributable to the alcohol itself, in others the wine is responsible for a more favourable trend compared to other alcoholic beverages. This review was limited by the scarcity of available papers, so that new prospective studies on the association between wine consumption and immune-mediated diseases should also be specifically designed to draw more solid conclusions.
Pigmented rice varieties are rich in antioxidant and anti-inflammatory compounds (e.g. anthocyanins and proanthocyanidins). Therefore, their consumption could exert beneficial effects, particularly in people suffering from chronic diseases (e.g., celiac disease). Pigmented rice is commonly consumed as brown rice, but technological treatments could be applied to reduce its cooking time and improve its nutritional value (vitamins and minerals). In this study, two relatively new pigmented varieties (Violet and Orange) were characterized in terms of phenolic content and antioxidant capacity and the impact of two technological treatments (e.g., milling and parboiling) on their phytochemical composition was evaluated. Two pigmented and one non-pigmented Italian varieties were included for comparison. Both technological processes affected the concentration of phenolic compounds and their relative antioxidant property. Although milling mainly reduced the phenolic content and the antioxidant activity, anthocyanins seem to be more affected by parboiling (reduction of 91.5%). Despite the effects of technological treatments on active compounds, pigmented varieties still represent an interesting antioxidant source when compared to the non-pigmented ones.
Celiac disease (CD) is an autoimmune disease. To date, the only universally recognized treatment for CD is the gluten-free diet (GFD). Despite the GFD, a state of inflammation and oxidative stress could remain at the intestinal level of celiac patients. Several components of the diet, such as phenolic compounds with known antioxidant properties, could play a protective role in the inflammatory state of patients with CD. The objective of this study was the characterization of the phenolic profile and the antioxidant capacity of pigmented cereals (rice and corn) from the Italian market and farms. Different in vitro methods were applied: Folin–Ciocalteu assay, pH differential method, DPPH assay, TEAC assay, and High-Performance Thin Layer Chromatography technique. According to the results, pigmented varieties are possible valuable sources of phenolic compounds and anthocyanins with high antioxidant activity. They could be used as alternative ingredients for the formulation of gluten-free products.
Inflammation and oxidative stress are two mechanisms involved in the pathogenesis of celiac disease (CD). Since the direct effect of gliadin on the intestinal epithelia is less studied, the aims of this study were the development of a specific cellular model based on the use of gliadin as a pro-inflammatory stimulus and the evaluation of the potential antioxidant and anti-inflammatory properties of extracts from different black rice in the framework of CD. The rice extracts were in vitro digested, characterized in terms of phenolic compounds and antioxidant capacity, and tested on Caco-2 cells to investigate their inhibitory effect on Reactive Oxygen Species, the NF-κB transcription and the CXC chemokines (sICAM-1, IL-8, and CXCL-10). In addition, the role of the extracts in modulating the activation of epithelial cells in CD was confirmed by applying the K562(S) agglutination test. The black rice extracts showed inhibitory effects on the production of the oxidative and the inflammatory mediators considered, with particular reference to lymphocyte-attracting CXCL-10 both before and after digestion. The presence of anthocyanins and their digestion metabolites may account for the observed anti-inflammatory activity after in vitro digestion. This work provided preliminary data supporting the use of black rice as a healthy food or ingredient of food supplements for celiacs.
In the last years, the importance of food waste management and recovery is emphasized by the international guidelines to promote a circular economy approach. Wine industry is one of the sectors with the highest waste production, with a potential negative environmental impact. Winemaking by-products are mainly used to produce distillates, fertilizers and livestock feed, but alternative approaches for their management could be the formulation of healthy products. The aim of this study was the application of in vitro methods for a preliminary evaluation of the phenolic pattern and the associated biological properties of winemaking by-products from different red grape varieties. The methods were: 1) Folin-Cocalteau's assay for the assessment of total polyphenol content; 2) the vanillin assay for the quantification of total procyanidin content; 3) the pH differential method for the determination of total anthocyanin content; 4) DPPH and FRAP assays for the measurement of total antioxidant activity; 4) High Performance Thin Layer Chromatography for separation of phenolic substances and assessment of their antioxidant capacity; 5) dipeptidyl peptidase (DPPIV) inhibition assay to evaluate possible effects on glucose homeostasis. The results showed that grape pomace, particularly when including seeds, was a valuable source of polyphenols with significant antioxidant potential and promising activity on DPPIV, supporting its use in formulating healthy foods/food supplements.
In the last years, the international guidelines encourage the reduction of food waste or processing by-products to promote a circular economy approach. Winemaking represents one of the sectors with the highest by-products generation, with several potential negative impact on the environment. Winemaking by-products are mainly used to produce distillates or fertilizers, but the interest in grape pomaceas a potential source of phenolic compounds has considerably increased. The aim of this study was the application ofin vitromethods for the characterization of the phenolic fraction of winemaking by-products from different red grape varieties, and, in parallel, the evaluation of their antioxidant activity. The methods were: 1) Folin-Cocalteau's assay for the quantification of total polyphenol content; 2) the vanillin assay for the assessment of total flavan-3-ols (proanthocyanidins) content; 3) the pH differential method for the quantification of total anthocyanin content; 4) DPPH assay for the measurement of total antioxidant activity; 5) High Performance Thin Layer Chromatography for separation of phenolic substances and assessment of their antioxidant activity. Although a significant differences among varieties, grape pomace, particularly when containing seeds, are generally a good source of polyphenols with a significant antioxidant activity supporting itsuse in formulating healthy products.
Considering the increasing incidence of hyperuricemia and oxidative stress-related diseases, quantification of uric acid has become essential. Therefore, the evolution on sensing devices being favorable, these questions are more often addressed to the field of medical researchers. As for many metabolites, (bio)sensors provide a reliable method for screening and evaluation of uric acid status. Due to the numerous categories of (bio)sensors available, choosing the appropriate one is a challenge. This study reviews the scientific information concerning the most suitable (bio)sensors for quantification of uric acid, presenting a list of sensors from the last decade, categorized by configurations and materials. In addition, this review includes a comparison of sensors according to their interference behavior and sensitivity, offering an objective perspective for identifying devices that are suitable for clinical applications.
Although diet has contributed significantly to the evolution of human beings, the composition of the diet that has most affected this phenomenon is still an open issue. Diet has undoubtedly participated in the acquisition of the skills that underlie the differentiation of humans from other animal species and in this context the development of the nervous system has played a primary role. This paper aimed to: (1) outline the relationship between diet and human evolution; (2) evaluate how a variation in food consumption may have contributed to the enhancement of cognitive and adaptive capacities. The most widespread diet among the ancient populations that showed the highest levels of civilization (that is well-organized societies, using advanced technical tools, and promoting art and science) was very close to what is now defined as the Mediterranean diet. This suggests that a dietary approach typical of the Mediterranean basin (little meat and some fish; abundant cereals, legumes, fruit, vegetables and wine) significantly increased the intake of antioxidant molecules, including polyphenols, which along with other factors may have modulated the cognitive evolution of humans.
Celiac disease is an autoimmune disorder that occurs in genetically predisposed individuals after consuming prolamins from some cereals. Although the products available for celiac subjects have increased significantly in quality and quantity over the last few decades, research still focuses on identifying new ingredients to improve the nutritional, sensorial and functional qualities of gluten-free products. In terms of toxicity for people with celiac disease, there is a wide variability between ancient and modern grains. The most contradictory results are related to the role of oats in the gluten-free diet. In order to clarify the role of minor cereals (such as oat) and ancient grains in the diets of celiac patients, this review discusses recent in vitro and in vivo studies performed on those cereals for which the toxicity for celiac subjects is still controversial. According to in vivo studies, selected oat varieties could be tolerated by celiac patients. On the other hands, although some wheat-ancient grains (Triticum monococcum, Triticum aestivum ssp. spelta and Kamut®) showed a reduced in vitro toxicity, to date, these grains are still considered toxic for celiac patients. Contradictory results underline the importance of studying the safety of “unusual” cereals in more detail.
Although the detrimental effects of heavy drinking in terms of health are well-documented in the literature, there are inconsistent findings regarding the safety of light-to-moderate alcohol consumption. In particular, little is still known about the consumption of specific alcoholic beverages in combination with dietary habits and lifestyle, which in turn could influence health status. Thus, the aim of this review is to summarise and critically evaluate the evidence of a relationship between preference for alcoholic beverages and consumer dietary and lifestyle habits. A literature search retrieved 3,887 articles. By removing duplicates and articles which were not relevant, the final number of articles was 26. The adherence to a healthier diet and lifestyle was generally observed in light-to-moderate alcohol consumers, especially when wine was the preferred beverage. Considering the potentially strong impact of drinking patterns on health and the risk of developing chronic diseases, the data summarised in this review highlight that alcoholic beverage preferences, drinking patterns, dietary patterns and lifestyle should be studied together. Any future epidemiological studies should analyse the relationship between alcohol consumption and the abovementioned correlations with respect to impact on health.
Polyphenols are a group of phytochemicals with potential health-promoting effects. They are classified as flavonoid (flavonols, flavanols, flavones, flavanones, isoflavones, and anthocyanins) and non-flavonoid molecules (phenolic acids, hydroxycinnamic acids, lignans, stilbenes, and tannins). Although an increasing number of trials have shown a correlation among polyphenol consumption and a reduction in risk factors for chronic diseases, discrepancies in explaining their positive effects have been found in terms of the bioavailability. In fact, polyphenols show a low bioavailability due to several factors: interaction with the food matrix, the metabolic processes mediated by the liver (phase I and II metabolism), intestine and microbiota. On the other hand, the biological activities of phenol compounds may be mediated by their metabolites, which are produced in vivo, and recent studies have confirmed that these molecules may have antioxidant and anti-phlogistic properties. This review discusses the studies performed in vivo, which consider the polyphenol bioavailability and their different food sources. Factors influencing the biological effects of the main classes of polyphenols are also considered.
The importance of the impact of the food system not only on human health but also on planet health is gaining growing attention, and there is now an urgent call to action for developing multi-stakeholder strategies able to end poverty and maintain prosperity and health for people and for the planet. To provide a better understanding of the complex relationships between food, well-being and environment, it is pivotal to generate multidisciplinary knowledge on the promotion of human well-being in relation to multiple interconnected factors such as diet and nutrition, environment, economic, social, and legal aspects. Based on these premises, the present paper aims at describing the proposed role of the Joint Research Center “Innovation for Well-Being and Environment” (CRC I-WE) that was brought to light in 2019 with a strong interdisciplinary nature at the University of Milan, Italy. In 2021, the Center hosted its first annual conference aimed at identifying case studies from the food, health, and sustainability fields particularly deserving an interdisciplinary approach, and which may provide the basis for opening a wider discussion with the scientific community.