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López Nicolás, Rubén

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López Nicolás, Rubén
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Universidad de Murcia. Departamento de Tecnología de los Alimentos,Nutrición y Bromatología
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    Effect of adding different thickening agents on the viscosity properties and in vitro mineral availability of infant formula
    (Elsevier, 2014-03-12) González Bermúdez, Carlos Alberto; Frontela Saseta, María del Carmen; López Nicolás, Rubén; Ros Berruezo, Gaspar; Martínez Gracia, Carmen; Tecnología de Alimentos, Nutrición y Bromatología
    The effect of adding different thickening agents (locust bean gum (LBG), modified corn and rice starches (MCS, MRS)) to an infant formula on both in vitro mineral availability (Ca, Fe and Zn), quantified by atomic absorption spectrophotometry (AAS), and formula viscosity, after in vitro gastrointestinal digestion, was investigated. LBG was the most effective agent to increase formula thickness. However, it showed a negative effect on Ca, Fe and Zn in vitro solubility and dialysability. MCS and MRS only affected calcium solubility and dialysability when they were used at P50% of the maximum legal limit. No negative effect was observed for Fe and Zn when modified starches were added at the different concentrations assessed. The phytate content in the thickening ingredients was also analysed. Despite finding a considerable amount of phytic acid in the raw ingredients, its final concentration in the infant formula was insufficient to decrease in vitro mineral availability.
  • Publication
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    In vitro effect of green tea and turmeric extracts on GLP-1 and CCK secretion: the effect of gastrointestinal digestion
    (Royal Society of Chemistry, 2018-09-18) Planes Muñoz, David; López Nicolás, Rubén; González Bermúdez, Carlos Alberto; Ros Berruezo, Gaspar; Frontela Saseta, María del Carmen; Tecnología de Alimentos, Nutrición y Bromatología
    Plant extract activity can be modified by the digestion process. In order to assess the satiety effect of green tea and turmeric extracts, an in vitro gastrointestinal digestion process was performed and the STC-1 cell line was used. The enteroendocrine cell line was incubated (for 30, 60 and 120 minutes) with the digested and non-digested extracts measuring the secretion of cholecystokinin (CCK) and glucagon-like peptide-1 (GLP-1) by enzyme-linked immunosorbent assay (ELISA). The release of satiety hormones by the STC-1 cells showed similar or higher results for plant extracts compared to the positive controls reported as satiatogenic (proteins and short chain fatty acids). For the non-digested samples, the largest amount of CCK and GLP-1 was found for turmeric, with 379 ± 46 pg ml−1 (60 min) and 347 ± 125 pg ml−1 (120 min) respectively. For the digested samples, the highest level of CCK was found for turmeric at 30 minutes (43.3 ± 11) and for GLP-1 by green tea at 120 minutes (165.7 ± 52). The in vitro gastrointestinal digestion process affects the satiety of plant extracts, increasing for green tea and decreasing for turmeric. Green tea showed the most stable satiating capacity after the in vitro digestion process and this may be useful for using it as a stable food supplement to reduce hunger associated with overweight and obesity.
  • Publication
    Open Access
    Comparison of bioavailability and transporters gene expression of four iron fortificants added to infant cereals
    (Elsevier, 2022-09-08) Caballero Valcárcel, Ana M.; López Nicolás, Rubén; Frontela Saseta, María del Carmen; Martínez Gracia, Carmen; Santaella-Pascual, Marina; González Bermúdez, Carlos Alberto; Tecnología de Alimentos, Nutrición y Bromatología
    Iron deficiency is one of the most important nutritional disorders around the world. To reduce this health problem in infants, most countries have developed different iron fortification programs as a long-term strategy. However, it is necessary to select the best iron source to get the highest bioavailability with the lowest impact on the organoleptic properties of the foods. The aim of this research was to assess the in vitro bioavailability and intestinal cellular transport of four iron sources (electrolytic iron: EI, ferrous fumarate: FF, a micronized and dispersible ferric pyrophosphate: MDFP, and ferrous sulphate heptahydrated: FSH) used to fortify infant cereals. Fortified cereals were in vitro digested and soluble fractions were then incubated in Caco-2 cells to study iron retention, transport and uptake. Moreover, mRNA expression of iron transporters and ferritin formation were also measured in cells incubated with the iron standard salts. Iron solubility, uptake percentage, transport and uptake efficiencies by the Caco-2 cells were significantly higher in cereals fortified with FSH than with EI, obtaining intermediate values for the other two iron fortificants. MDFP induced higher expression of iron transporters Zip-14 and HEPH than other iron sources. FSH promoted the highest iron storage protein ferritin, followed by FF and MDFP, while EI presented the lowest in vitro bioavailability due to its low solubility. This work demonstrated that iron absorption, storage, and gene expression of transporters depend on the source of iron. These are important challenges to be taken into consideration when assessing the potential of iron fortificants.
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    Influence of in vitro gastrointestinal digestion of fruit juices enriched with pine bark extract on intestinal microflora
    (Elsevier, 2014-02-02) López Nicolás, Rubén; González Bermúdez, Carlos Alberto; Ros Berruezo, Gaspar; Frontela Saseta, María del Carmen; Tecnología de Alimentos, Nutrición y Bromatología
    The selective antimicrobial effect of fruit juices enriched with pine bark extract (PBE) (0.5 g/L) has been studied before and after in vitro gastrointestinal digestion. PBE (a concentrate of water-soluble bioflavonoids, mainly including phenolic compounds) has been proven to have high stability to the digestion process. Pure phenolic compounds such as gallic acid had a high antimicrobial effect on Staphylococcus aureus and Escherichia coli, maintaining the lactic acid bacteria population ( 100%). Otherwise, E. coli O157:H7 only growth 50% when PBE was added to the culture media, while a slight increase on the growth of lactobacilli and bifidobacteria was observed after exposition to the bark extract. Fresh fruit juices enriched with PBE showed the highest inhibitory effect on pathogenic intestinal bacterial growth, mainly E. coli and Enterococcus faecalis. The in vitro digestion process reduced the antibacterial effect of juices against most pathogenic bacteria in approximately 10%. However, the beneficial effect of fruit juices enriched with PBE (0.5 g/L) on gut microbiota is still considerable after digestion.
  • Publication
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    Effect of soaking and inositol phosphate content on in vitro mineral availability in edible seaweeds
    (Springer, 2018-11-05) Sánchez Moya, Teresa; Martínez-Hernández, Valerie M.; López Nicolás, Rubén; Ros Berruezo, Gaspar; Frontela Saseta, María del Carmen; González Bermúdez, Carlos Alberto; Tecnología de Alimentos, Nutrición y Bromatología; Facultad de Veterinaria
    Seaweeds are an ideal food-safe natural source of minerals with a potential use in human nutrition. However, the presence of phytate and different treatments before consumption could modify mineral availability. The content and in vitro mineral availability after a simulated gastrointestinal digestion of wakame (Undaria pinnatifida), nori (Porphyra spp.), sea salad (Ulva lactuca, Palmaria palmata, Undaria pinnatifida, Porphyra spp., Laminaria spp.), and sea spaghetti (Himanthalia elongata) were studied. Experiments were assessed after a soaking treatment of seaweeds with cold (20 °C) or hot (70 °C) water, as usually processing before eating. Moreover, inositol phosphate content was determined in the edible macroalgae and the molar ratio phytate/mineral was used as a predictor of the relative availability of minerals. Overall, edible analyzed seaweeds showed a high Ca, Fe, P, and K contents, highlighting wakame for all the studied minerals. In all cases, soaking in cold water showed the highest soluble and dialyzable mineral fractions. High content of phytic acid (IP6) was observed in sea salad (≈ 25 mg (100 g)−1); meanwhile, sea spaghetti showed the lowest IP6 content (3.9 mg (100 g)−1). The low molar ratios Phy/Ca and Phy/Zn obtained in seaweeds could indicate an adequate availability. However, ratios Phy/Fe could compromise the iron availability in wakame, nori, and sea spaghetti. Results obtained confirm that external factor such as soaking, gastrointestinal digestion, and inositol phosphates can affect the mineral availability. Consumption of edible seaweeds can be recommended for the necessary intake of available minerals and trace elements.
  • Publication
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    Anti-inflammatory properties of fruit juices enriched with pine bark extract in an in vitro model of inflamed human intestinal epithelium: The effect of gastrointestinal digestion
    (Elsevier, 2012-12-05) Frontela Saseta, María del Carmen; López Nicolás, Rubén; Martínez Gracia, Carmen; Ros Berruezo, Gaspar; González Bermúdez, Carlos Alberto; Tecnología de Alimentos, Nutrición y Bromatología
    Enrichment of fruit juices with pine bark extract (PBE) could be a strategy to compensate for phenolic losses during the gastrointestinal digestion. A coculture system with Caco-2 cells and RAW 264.7 macrophages was established as an in vitro model of inflamed human intestinal epithelium for evaluating the anti-inflammatory capacity of fruit juices enriched with PBE (0.5 g L 1) before and after in vitro digestion. The digestion of both PBE-enriched pineapple and red fruit juice led to significant changes in most of the analysed phenolic compounds. The in vitro inflammatory state showed cell barrier dysfunction and overproduction of IL-8, nitric oxide (NO) and reactive oxygen species (ROS). In the inflamed cells, incubation with nondigested samples reduced (P < 0.05) the production of IL-8 and NO compared with digested samples. ROS production increased in the inflamed cells exposed to digested commercial red fruit juice (86.8 ± 1.3%) compared with fresh juice (77.4 ± 0.8%) and increased in the inflamed cells exposed to digested enriched red fruit juice (82.6 ± 1.6%) compared with the fresh enriched juice (55.8 ± 6%). The anti-inflammatory properties of PBE-enriched fruit juices decreased after digestion; further research on the bioavailability of the assayed compounds is needed to properly assess their usefulness for the treatment of gut inflammation.
  • Publication
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    Effects of different thickening agents on infant gut microbiota
    (Royal Society of Chemistry, 2018-03-06) González Bermúdez, Carlos Alberto; López Nicolás, Rubén; Peso Echarri, Patricia; Frontela Saseta, María del Carmen; Martínez Gracia, Carmen; Tecnología de Alimentos, Nutrición y Bromatología
    Infant microbiota has to progress from an almost sterile to a complex and varied community, so the main objective of this work was to evaluate the effect of three thickening ingredients on infant microbiota, as well as their in vitro gut fermentability. Experiments were performed using fresh faecal samples from healthy donors of 2–3 months of age. Stabilised stool samples were injected into Wheaton serum bottles containing pre-reduced MBM and 1% (w/v) fermentation substrates (locust bean gum, LBG; maize hydroxypropylated distarch phosphate, Mhdp; and pre-gelatinized rice starch, gRS). Samples were taken during fermentation, and pH, gas pressure, SCFA and bacterial population were analysed. The addition of thickeners resulted in a significant negative correlation (p < 0.05) between time and pH, showing significantly lower (p < 0.01) pH values for Mhdp and gRS than for LBG. Modified starches showed significantly higher values (p < 0.05) of total gas production than did LBG. Total SCFA molar concentrations for LBG, as well as propionate production, were significantly higher (p < 0.05) than for Mhdp and gRS. Regarding bacterial population, LBG promoted a more varied microbiota enhancing the growth of Atopobium and Bacteroidetes, whereas Mhdp and gRS induced higher Lactobacillus and Bifidobacteria at the beginning of fermentation. LBG induced moderate gas production and a slow drop of pH, and caused a decreasing acetate : propionate ratio, enhancing the development of a varied faecal microbiota. In contrast, Mhdp and gRS induced high gas production, a sudden drop of pH and a greater production of acetate, which promoted a less varied faecal microbiota.
  • Publication
    Open Access
    In vitro modulation of gut microbiota by whey protein to preserve intestinal health
    (Royal Society of Chemistry, 2017-06-21) Sánchez Moya, Teresa; López Nicolás, Rubén; Planes Muñoz, David; Ros Berruezo, Gaspar; Frontela Saseta, María del Carmen; González Bermúdez, Carlos Alberto; Tecnología de Alimentos, Nutrición y Bromatología; Facultad de Veterinaria
    The effect of several types of whey milk – cow, sheep, goat and a mixture of them (60 : 20 : 20, respectively) – was assessed in the human gut microbiota. The prebiotic potential of these substrates was evaluated through in vitro gastrointestinal digestion following faecal batch culture fermentations (mimicking colonic fermentation) for 48 hours, using faeces from normal-weight (NW) and obese (OB) donors. Throughout the fermentation process, pH, gas production, short chain and branched fatty acids (SCFA-BCFA) were measured, as well as the changes of microbiota using qPCR. The pH decreased in all whey samples during the fermentation process. Gas production was higher in all whey samples than in controls, especially at 12 hours (p < 0.05). The diversity of SCFA and BCFA production was significantly different between the donors, in particular cow and mixed whey. Whey milk had a strong prebiotic effect on the gut microbiota of NW and OB donors, showing a significant increase of Bifidobacterium (p < 0.05) with cow, sheep and mixed whey and increase in the Lactobacillus group, particularly in OB donors. Bacteria associated with obesity did not show an increase in any of the groups of donors. Therefore, supplementing a diet with these types of whey can selectively stimulate the growth of probiotic bacteria, enhancing SCFA production, which could improve intestinal disorders. In addition, it may be an interesting approach to the prevention of overweight and obesity and related diseases. Whey milk has a potent prebiotic effect. It can selectively stimulate desirable bacteria and SCFA profile, in both OB and NW donors, contributing to improved intestinal health and reducing obesity. The effect of several types of whey milk – cow, sheep, goat and a mixture of them (60 : 20 : 20, respectively) – was assessed in the human gut microbiota. The prebiotic potential of these substrates was evaluated through in vitro gastrointestinal digestion following faecal batch culture fermentations (mimicking colonic fermentation) for 48 hours, using faeces from normal-weight (NW) and obese (OB) donors. Throughout the fermentation process, pH, gas production, short chain and branched fatty acids (SCFA-BCFA) were measured, as well as the changes of microbiota using qPCR. The pH decreased in all whey samples during the fermentation process. Gas production was higher in all whey samples than in controls, especially at 12 hours (p < 0.05). The diversity of SCFA and BCFA production was significantly different between the donors, in particular cow and mixed whey. Whey milk had a strong prebiotic effect on the gut microbiota of NW and OB donors, showing a significant increase of Bifidobacterium (p < 0.05) with cow, sheep and mixed whey and increase in the Lactobacillus group, particularly in OB donors. Bacteria associated with obesity did not show an increase in any of the groups of donors. Therefore, supplementing a diet with these types of whey can selectively stimulate the growth of probiotic bacteria, enhancing SCFA production, which could improve intestinal disorders. In addition, it may be an interesting approach to the prevention of overweight and obesity and related diseases. Whey milk has a potent prebiotic effect. It can selectively stimulate desirable bacteria and SCFA profile, in both OB and NW donors, contributing to improved intestinal health and reducing obesity.
  • Publication
    Open Access
    Effect of pine bark extract and its phenolic compounds on selected pathogenic and probiotic bacterial strains
    (Frontiers, 2024-03-27) Sánchez Moya, Teresa; López Nicolás, Rubén; Peso Echarri, Patricia; Frontela-Saseta, Carmen; González Bermúdez, Carlos Alberto; Tecnología de Alimentos, Nutrición y Bromatología
    Introduction: Inflammatory bowel disease (IBD) comprises a heterogeneous group of chronic diseases as ulcerative colitis (UC) and Crohn’s disease (CD). IBD is the result of a dysregulation of intestinal homeostasis with a host’s loss of tolerance toward normal enteric microflora. Plant-based extracts as phenolic compounds can play a role by modulating the intestinal inflammation response. Methods: The in vitro antimicrobial activity of French maritime pine bark extract (PBE) and its phenolic constituents has been investigated in this study. Furthermore, the ability of PBE and phenolic compounds (caffeic acid, chlorogenic acid, ferulic acid, gallic acid and taxifolin) to modulate the microbiota has been assessed. Results: Phenolic compounds and PBE showed a great inhibitory effect on the pathogens growth at the highest concentration assessed (1.25 mg/mL). The growth of E. sakazakii and E. faecalis were affected by the effect of caffeic acid and ferulic acid. Taxifolin showed a very strong activity against Listeria sp. (with a reduction ~98%). Gallic acid revealed antibacterial effect on S. aureus at different concentrations. The inhibitory effect of PBE was highly significant on the growth of E. coli O157:H7. PBE, caffeic acid and chlorogenic acid seem to provide the greatest beneficial effect on the probiotic bacteria. However, the highest concentrations of taxifolin may have impaired the growth of beneficial microbiota. Conclusion: Present findings could be of interest for considering PBE and/or its phenolic constituents as protectors against gastrointestinal disturbances which lead to ulcerative colitis and Crohn’s disease.