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1.
Sci Rep ; 14(1): 17224, 2024 Jul 26.
Article in English | MEDLINE | ID: mdl-39060334

ABSTRACT

In this work, a multivariate analysis was carried out, using a Plackett-Burman (PB) design involving seventeen growth parameters, on carotenoids production of Pavlova gyrans (p < 0.10). Each assay was analysed regarding its content (mg g-1) of fucoxanthin (Fx), diatoxanthin, diadinoxanthin, ß-carotene (ßCar), α-carotene, and the sum of all carotenoids analysed individually (TCar). According to the statistical analysis, modified medium formulations were developed for the particular cases of Fx, ßCar, and TCar. The study showed that Fx content was positively affected by nitrogen supplementation and lower light intensities. Higher concentrations of nitrogen and iron increased the final content of ßCar as well. Similarly, salinity, light intensity, nitrogen, iron, and cobalt were identified as key factors in TCar production. The PB-based formulations showed significant improvements (p < 0.05) for TCar (11.794 mg g-1) and Fx (6.153 mg g-1) when compared to the control conditions (Walne's medium-2.010 mg g-1). Furthermore, effective control of key variables (e.g., light intensity) throughout P. gyrans growth proved successful (p < 0.05), increasing the productivity of Fx (0.759 mg L-1 d-1) and TCar (1.615 mg L-1 d-1).


Subject(s)
Carotenoids , Microalgae , Xanthophylls , Carotenoids/metabolism , Microalgae/growth & development , Microalgae/metabolism , Xanthophylls/metabolism , beta Carotene/biosynthesis , beta Carotene/metabolism , Nitrogen/metabolism , Culture Media/chemistry , Light
2.
Int J Mol Sci ; 25(14)2024 Jul 20.
Article in English | MEDLINE | ID: mdl-39063190

ABSTRACT

As a critical step in advancing the simulation of photosynthetic complexes, we present the Martini 3 coarse-grained (CG) models of key cofactors associated with light harvesting (LHCII) proteins and the photosystem II (PSII) core complex. Our work focuses on the parametrization of beta-carotene, plastoquinone/quinol, violaxanthin, lutein, neoxanthin, chlorophyll A, chlorophyll B, and heme. We derived the CG parameters to match the all-atom reference simulations, while structural and thermodynamic properties of the cofactors were compared to experimental values when available. To further assess the reliability of the parameterization, we tested the behavior of these cofactors within their physiological environments, specifically in a lipid bilayer and bound to photosynthetic complexes. The results demonstrate that our CG models maintain the essential features required for realistic simulations. This work lays the groundwork for detailed simulations of the PSII-LHCII super-complex, providing a robust parameter set for future studies.


Subject(s)
Light-Harvesting Protein Complexes , Molecular Dynamics Simulation , Photosynthesis , Photosystem II Protein Complex , Photosystem II Protein Complex/metabolism , Photosystem II Protein Complex/chemistry , Light-Harvesting Protein Complexes/chemistry , Light-Harvesting Protein Complexes/metabolism , Chlorophyll/metabolism , Chlorophyll/chemistry , Thermodynamics , beta Carotene/chemistry , beta Carotene/metabolism , Lipid Bilayers/chemistry , Lipid Bilayers/metabolism , Heme/chemistry , Heme/metabolism , Chlorophyll A/chemistry , Chlorophyll A/metabolism
3.
Reprod Domest Anim ; 59(7): e14660, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38962998

ABSTRACT

The objectives of this experiment were to evaluate the effects of supplementation of Nellore (Bos indicus) cows with ß-carotene + vitamins A + D3 + E + biotin on body condition score (BCS), oestrus, pregnancy, and foetal morphometry. Lactating cows (n = 497) from two herds were balanced for BCS and calving period [early calving (EC); late calving (LC)] and were assigned randomly to: Control (n = 251)-supplementation with a mineral supplement; and SUP (n = 246)-supplementation with the mineral supplement fed to control + ß-carotene (150 mg/day) + vitamin A (40,000 IU/day) + vitamin D3 (5000 IU/day) + vitamin E (300 mg/day) + biotin (20 mg/day). Cows were supplemented from Days -30 to 30 (Day 0 = timed artificial insemination; TAI). Pregnancy was diagnosed 30 days after TAI and foetal crown-rump distance and thoracic diameter were measured at 30 and 77 days of gestation. Cows in the SUP treatment were more likely to have BCS ≥3.0 on Day 0 (63.0 ± 3.1 vs. 60.2 ± 3.1; p < .01) and were more likely to gain BCS from Days -30 to 30 (57.7 ± 3.3 vs. 44.1 ± 3.3%; p < .01). Fewer LC cows in the SUP treatment were detected in oestrus at the time of the first TAI (Control: LC: 75.4 ± 4.4 vs. SUP: LC: 64.0 ± 5.2 vs. Control: EC: 65.3 ± 4.0 vs. SUP: EC: 71.8 ± 3.7; p = .04). There was a tendency for the SUP treatment to increase pregnancy to the first TAI (64.2 ± 3.0 vs. 56.6 ± 3.1%; p = .08). A greater percentage of SUP cows was detected in oestrus at the time of the second TAI (70.1 ± 5.0 vs. 52.3 ± 4.8%; p = .01). The SUP treatment increased pregnancy to the second TAI among LC cows (SUP: LC: 75.9 ± 8.0% vs. Control: LC: 50.0 ± 8.3% vs. Control: EC: 52.0 ± 5.9% vs. SUP: EC: 41.4 ± 6.5%; p = .02). The SUP treatment increased foetal size (crown-rump; p = .04 and thoracic diameter; p < .01) at 30 days of gestation and, despite decreasing crow-rump length at 77 days after the first TAI among EC cows (p < .01), it increased the thoracic diameter at 77 days after the first TAI independent of calving season. Our results support that pregnancy establishment and foetal growth can be improved when grazing Nellore cows are supplemented with ß-carotene and vitamins A + D3 + E + biotin.


Subject(s)
Biotin , Dietary Supplements , Estrus , Vitamin A , Vitamin E , beta Carotene , Animals , Cattle , Female , Pregnancy , Vitamin A/administration & dosage , Vitamin A/pharmacology , beta Carotene/administration & dosage , beta Carotene/pharmacology , Vitamin E/administration & dosage , Vitamin E/pharmacology , Estrus/drug effects , Biotin/administration & dosage , Biotin/pharmacology , Cholecalciferol/pharmacology , Cholecalciferol/administration & dosage , Ovarian Follicle/drug effects , Diet/veterinary , Vitamins/administration & dosage , Vitamins/pharmacology , Animal Feed , Lactation , Fetus/drug effects
4.
Carbohydr Polym ; 342: 122430, 2024 Oct 15.
Article in English | MEDLINE | ID: mdl-39048210

ABSTRACT

Although protein-polysaccharide complexes with different phase behaviors all show potential for stabilizing high internal phase Pickering emulsions (HIPPEs), it is not clarified which aggregation state is more stable and age-friendly. In this study, we investigated and compared the stability and age friendliness of HIPPEs stabilized with egg yolk and carboxymethyl cellulose (EYCMC) in different phase behaviors. The results revealed differences in particle size, aggregation state, charge potential, and stability of secondary and tertiary structures of EYCMC. The behavior of EYCMC at the oil-water interface was mainly divided into three phases: rapid diffusion, permeation, and reorganization. The electrostatic interaction, kinetic hindrance, and depletion attraction were the mechanisms primarily involved in stabilizing HIPPEs by EYCMC. Rheological analysis results indicated that HIPPEs had excellent viscoelasticity, structural recovery properties and yield stress. HIPPEs were used in 3D printing, electronic nose testing, IDDSI testing and in vitro digestive simulations for the elderly, demonstrating a fine appearance, safe consumption and bioaccessibility of ß-carotene. Soluble complexes showed the best stability and age friendliness compared to other aggregated forms. This study serves as a foundational source of information for developing innovative foods utilizing HIPPEs.


Subject(s)
Carboxymethylcellulose Sodium , Egg Yolk , Emulsions , Emulsions/chemistry , Carboxymethylcellulose Sodium/chemistry , Egg Yolk/chemistry , Solubility , Particle Size , Humans , Rheology , Viscosity , beta Carotene/chemistry
5.
Int J Mol Sci ; 25(11)2024 May 21.
Article in English | MEDLINE | ID: mdl-38891781

ABSTRACT

Carotenoid cleavage oxygenases can cleave carotenoids into a range of biologically important products. Carotenoid isomerooxygenase (NinaB) and ß, ß-carotene 15, 15'-monooxygenase (BCO1) are two important oxygenases. In order to understand the roles that both oxygenases exert in crustaceans, we first investigated NinaB-like (EsNinaBl) and BCO1-like (EsBCO1l) within the genome of Chinese mitten crab (Eriocheir sinensis). Their functions were then deciphered through an analysis of their expression patterns, an in vitro ß-carotene degradation assay, and RNA interference. The results showed that both EsNinaBl and EsBCO1l contain an RPE65 domain and exhibit high levels of expression in the hepatopancreas. During the molting stage, EsNinaBl exhibited significant upregulation in stage C, whereas EsBCO1l showed significantly higher expression levels at stage AB. Moreover, dietary supplementation with ß-carotene resulted in a notable increase in the expression of EsNinaBl and EsBCO1l in the hepatopancreas. Further functional assays showed that the EsNinaBl expressed in E. coli underwent significant changes in its color, from orange to light; in addition, its ß-carotene cleavage was higher than that of EsBCO1l. After the knockdown of EsNinaBl or EsBCO1l in juvenile E. sinensis, the expression levels of both genes were significantly decreased in the hepatopancreas, accompanied by a notable increase in the redness (a*) values. Furthermore, a significant increase in the ß-carotene content was observed in the hepatopancreas when EsNinaBl-mRNA was suppressed, which suggests that EsNinaBl plays an important role in carotenoid cleavage, specifically ß-carotene. In conclusion, our findings suggest that EsNinaBl and EsBCO1l may exhibit functional co-expression and play a crucial role in carotenoid cleavage in crabs.


Subject(s)
Brachyura , Hepatopancreas , beta Carotene , beta-Carotene 15,15'-Monooxygenase , Animals , beta Carotene/metabolism , Brachyura/metabolism , Brachyura/genetics , beta-Carotene 15,15'-Monooxygenase/metabolism , beta-Carotene 15,15'-Monooxygenase/genetics , Hepatopancreas/metabolism , Molting/genetics , Oxygenases/metabolism , Oxygenases/genetics , Phylogeny , Arthropod Proteins/genetics , Arthropod Proteins/metabolism
6.
World J Microbiol Biotechnol ; 40(7): 227, 2024 Jun 01.
Article in English | MEDLINE | ID: mdl-38822932

ABSTRACT

In yeast metabolic engineering, there is a need for technologies that simultaneously suppress and regulate the expression of multiple genes and improve the production of target chemicals. In this study, we aimed to develop a novel technology that simultaneously suppresses the expression of multiple genes by combining RNA interference with global metabolic engineering strategy. Furthermore, using ß-carotene as the target chemical, we attempted to improve its production by using the technology. First, we developed a technology to suppress the expression of the target genes with various strengths using RNA interference. Using this technology, total carotenoid production was successfully improved by suppressing the expression of a single gene out of 10 candidate genes. Then, using this technology, RNA interference strain targeting 10 candidate genes for simultaneous suppression was constructed. The total carotenoid production of the constructed RNA interference strain was 1.7 times compared with the parental strain. In the constructed strain, the expression of eight out of the 10 candidate genes was suppressed. We developed a novel technology that can simultaneously suppress the expression of multiple genes at various intensities and succeeded in improving carotenoid production in yeast. Because this technology can suppress the expression of any gene, even essential genes, using only gene sequence information, it is considered a useful technology that can suppress the formation of by-products during the production of various target chemicals by yeast.


Subject(s)
Carotenoids , Gene Expression Regulation, Fungal , Metabolic Engineering , Saccharomyces cerevisiae , beta Carotene , Metabolic Engineering/methods , Saccharomyces cerevisiae/genetics , Saccharomyces cerevisiae/metabolism , Carotenoids/metabolism , beta Carotene/metabolism , beta Carotene/biosynthesis , RNA Interference
7.
J Anim Sci ; 1022024 Jan 03.
Article in English | MEDLINE | ID: mdl-38828917

ABSTRACT

Alpha-tocopherol (vitamin E) is an antioxidant that is largely involved in immune defense and enhancing the ability of biological systems to respond to oxidative stress. During the process of free radical scavenging, vitamin C supports the regeneration of vitamin E. Although the functions of antioxidants and their importance have been widely studied, the intricate interplay between antioxidants has yet to be fully elucidated, especially in dogs and cats. As such, the objective of the present study was to determine the effect of a combination of dietary antioxidants on DNA damage and antioxidant status in dogs and cats. Forty adult mixed-breed dogs and 40 adult domestic shorthair cats were randomly assigned to one of four treatment groups per species. Dogs and cats remained in these groups for the 84-d duration of the study. The food differed in antioxidant supplementation with the control food meeting all of the Association of American Feed Control Officials requirements for complete and balanced nutrition, including sufficient vitamin E to exceed the published minimum. The treatment diets were targeted to include either 500, 1,000, or 1,500 IU vitamin E/kg as well as 100 ppm of vitamin C and 1.5 ppm of ß-carotene in the food. The effect of vitamin E supplementation level on serum vitamin E concentration, DNA damage, and total antioxidant power was evaluated. Feeding diets enriched with antioxidants resulted in an increased (P < 0.05) circulating vitamin E concentration, increased (P < 0.05) immune cell protection, reduced (P < 0.05) DNA damage in dogs, and an improved (P < 0.05) antioxidant status. Overall, these data demonstrated that feeding a dry kibble with an antioxidant blend inclusive of vitamin E, vitamin C, and ß-carotene enhanced cell protection and improved antioxidant status in dogs and cats.


Animals have an impressive array of defenses to excessive reactive oxygen species in the body. The antioxidant defense system is complex and sophisticated. vitamin E, vitamin C, and ß-carotene are known to scavenge free radicals that are created during times of oxidative stress. To evaluate the effect of the various antioxidants, dogs and cats were fed one of four diets for 84 d. Diets included a control group that had vitamin E concentrations that exceeded regulatory minimums and four treatment groups that were targeted to include 500, 1,000, or 1,500 IU vitamin E/kg as well as 100 ppm of vitamin C and 1.5 ppm of ß-carotene in the food. To assess the effectiveness of the different vitamin E concentrations provided in the foods, circulating vitamin E, DNA damage, and total antioxidant power were assessed. Results from the parameters assessed showed that dogs and cats benefit from supplementing their diet with a blend of antioxidants targeted to include 100 ppm of vitamin C, 1.5 ppm of ß-carotene, and have varying benefits to increased vitamin E/kg in the food.


Subject(s)
Animal Feed , Antioxidants , Ascorbic Acid , DNA Damage , Diet , Dietary Supplements , Vitamin E , Animals , Dogs , Cats , Antioxidants/pharmacology , DNA Damage/drug effects , Diet/veterinary , Animal Feed/analysis , Dietary Supplements/analysis , Male , Ascorbic Acid/pharmacology , Ascorbic Acid/administration & dosage , Female , Vitamin E/pharmacology , Vitamin E/administration & dosage , Free Radicals/metabolism , Oxidative Stress/drug effects , beta Carotene/pharmacology , beta Carotene/administration & dosage
8.
World J Microbiol Biotechnol ; 40(7): 230, 2024 Jun 03.
Article in English | MEDLINE | ID: mdl-38829459

ABSTRACT

ß-Carotene is an attractive compound and that its biotechnological production can be achieved by using engineered Saccharomyces cerevisiae. In a previous study, we developed a technique for the efficient establishment of diverse mutants through the introduction of point and structural mutations into the yeast genome. In this study, we aimed to improve ß-carotene production by applying this mutagenesis technique to S. cerevisiae strain that had been genetically engineered for ß-carotene production. Point and structural mutations were introduced into ß-carotene-producing engineered yeast. The resulting mutants showed higher ß-carotene production capacity than the parental strain. The top-performing mutant, HP100_74, produced 37.6 mg/L of ß-carotene, a value 1.9 times higher than that of the parental strain (20.1 mg/L). Gene expression analysis confirmed an increased expression of multiple genes in the glycolysis, mevalonate, and ß-carotene synthesis pathways. In contrast, expression of ERG9, which functions in the ergosterol pathway competing with ß-carotene production, was decreased in the mutant strain. The introduction of point and structural mutations represents a simple yet effective method for achieving mutagenesis in yeasts. This technique is expected to be widely applied in the future to produce chemicals via metabolic engineering of S. cerevisiae.


Subject(s)
Metabolic Engineering , Saccharomyces cerevisiae Proteins , Saccharomyces cerevisiae , beta Carotene , Saccharomyces cerevisiae/genetics , Saccharomyces cerevisiae/metabolism , beta Carotene/biosynthesis , beta Carotene/metabolism , Metabolic Engineering/methods , Saccharomyces cerevisiae Proteins/genetics , Saccharomyces cerevisiae Proteins/metabolism , Mutation , Gene Expression Regulation, Fungal , Carotenoids/metabolism , Mutagenesis , Point Mutation , Mevalonic Acid/metabolism , Biosynthetic Pathways/genetics , Farnesyl-Diphosphate Farnesyltransferase
9.
Reprod Domest Anim ; 59(6): e14634, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38860761

ABSTRACT

The impact of beta-carotene on cattle fertility has been investigated in various studies; however, consensus on this issue has not been reached. In the present study, we systematically reviewed and meta-analysed 29 publications conducted between 1984 and 2022, focusing on seven fertility measures, clinical mastitis and milk yield in cows. We did not find statistically significant results in 8 out of 11 parameters (p > .05). Statistically significant results were observed for milk yield (MD: 216.25 kg in 305 days, p = .01, CI: 50.73-381.77), pregnancy at first service (OR: 1.38 CI: 1.08-1.76, p = .01) and clinical mastitis (OR: 0.59, CI: 0.44-0.80, p = .006) in favour of beta-carotene supplementation. The meta-regression revealed significant effects of 'plasma beta-carotene levels' on 'service to per pregnancy' and dose on 'milk yield' (p = .04 and p = 0). In binary outcomes, 'dose × day' and 'plasma beta-carotene concentration in the control group' positively influenced pregnancy at first service (p = .02 and .03). In conclusion, given the positive point direction observed for some variables and insignificant results for others, there is a need for more studies. We note the very high heterogeneity of outcomes and suggest caution in interpreting results.


Subject(s)
Lactation , Mastitis, Bovine , Milk , beta Carotene , Animals , beta Carotene/administration & dosage , Female , Cattle , Milk/chemistry , Pregnancy , Dietary Supplements , Fertility
10.
Genes (Basel) ; 15(6)2024 Jun 08.
Article in English | MEDLINE | ID: mdl-38927690

ABSTRACT

Climate change has resulted in an increased demand for Japanese bunching onions (Allium fistulosum L., genomes FF) with drought resistance. A complete set of alien monosomic addition lines of A. fistulosum with extra chromosomes from shallot (A. cepa L. Aggregatum group, AA), represented as FF + 1A-FF + 8A, displays a variety of phenotypes that significantly differ from those of the recipient species. In this study, we investigated the impact of drought stress on abscisic acid (ABA) and its precursor, ß-carotene, utilizing this complete set. In addition, we analyzed the expression levels of genes related to ABA biosynthesis, catabolism, and drought stress signal transduction in FF + 1A and FF + 6A, which show characteristic variations in ABA accumulation. A number of unigenes related to ABA were selected through a database using Allium TDB. Under drought conditions, FF + 1A exhibited significantly higher ABA and ß-carotene content compared with FF. Additionally, the expression levels of all ABA-related genes in FF + 1A were higher than those in FF. These results indicate that the addition of chromosome 1A from shallot caused the high expression of ABA biosynthesis genes, leading to increased levels of ABA accumulation. Therefore, it is expected that the introduction of alien genes from the shallot will upwardly modify ABA content, which is directly related to stomatal closure, leading to drought stress tolerance in FF.


Subject(s)
Abscisic Acid , Droughts , Gene Expression Regulation, Plant , Stress, Physiological , Abscisic Acid/metabolism , Stress, Physiological/genetics , Onions/genetics , Onions/metabolism , Monosomy/genetics , beta Carotene/metabolism , Allium/genetics , Allium/metabolism
11.
Food Chem ; 456: 139978, 2024 Oct 30.
Article in English | MEDLINE | ID: mdl-38870810

ABSTRACT

This study explored how co-oleogelator type, concentration, and water addition affect lipid digestion and ß-carotene (ßC) bioaccessibility in corn oil oleogels. Oleogels containing 0.1% ßC, 20% glyceryl stearate (GS), with lecithin (L) or hydrogenated lecithin (HL) (at 0, 0.5, or 2.5%) and their water-filled counterparts (1% water) were examined. In vitro intestinal digestion revealed HL-oleogels experienced higher lipolysis due to their smaller crystal size enhancing surface area for lipase action, whereas L-oleogels presented lower digestibility, attributed to larger oil droplets and a minimized surface area. Water addition didn't significantly change lipid digestibility. ßC bioaccessibility was inversely related to co-oleogelator concentration, with L-oleogels demonstrating the largest decrease, likely due to less free fatty acids released for micelle formation. However, water-filled oleogels enhanced ßC bioaccessibility. These findings highlight that tailored microstructure in oleogels can control lipid digestion and ßC bioaccessibility, paving the way for designing efficient delivery systems for targeted nutrient delivery.


Subject(s)
Biological Availability , Digestion , Organic Chemicals , beta Carotene , beta Carotene/chemistry , beta Carotene/metabolism , Organic Chemicals/chemistry , Organic Chemicals/metabolism , Humans , Models, Biological , Lipids/chemistry , Lipid Metabolism , Corn Oil/chemistry , Corn Oil/metabolism
12.
Int J Pharm ; 660: 124307, 2024 Jul 20.
Article in English | MEDLINE | ID: mdl-38852748

ABSTRACT

Red fruit (Pandanus conoideus Lam.) boasts high ß-carotene (BC) content, often consumed orally. However, absorption issues and low bioavailability due to food matrix interaction have led to transdermal delivery exploration. Nevertheless, BC has a short skin retention time. To address these limitations, this study formulates a ß-carotene solid dispersion (SD-BC) loaded thermoresponsive gel combined with polymeric solid microneedles (PSM) to enhance in vivo skin bioavailability. Characterization of SD-BC includes saturation solubility, X-ray diffraction (XRD), Fourier-transform infrared spectroscopy (FTIR), and in vitro release. Characterization of SD-BC thermoresponsive gel includes gelation temperature, viscosity, rheological behaviour, pH, bio-adhesiveness, spreadability, and extrudability. PSM's mechanical properties and insertion capability were assessed. Ex vivo and in vivo dermato-pharmacokinetic studies, drug content, hemolysis, and skin irritation assessments were conducted to evaluate overall performance. Results confirm amorphous SD-BC formation, enhancing solubility. Both SD-BC thermoresponsive gel and PSM exhibit favourable characteristics, including rheological properties and mechanical strength. In vitro release studies showed a seven-fold increase in BC release compared to plain hydrogel. SD-BC thermoresponsive gel combined with PSM achieves superior ex vivo permeation (Cmax = 305.43 ± 32.07 µg.mL-1) and enhances in vivo dermato-pharmacokinetic parameters by 200-400 %. Drug content, hemolysis, and skin irritation studies confirmed its safety and non-toxicity.


Subject(s)
Administration, Cutaneous , Fruit , Gels , Needles , Skin Absorption , Skin , beta Carotene , Animals , beta Carotene/administration & dosage , beta Carotene/pharmacokinetics , beta Carotene/chemistry , Fruit/chemistry , Skin/metabolism , Temperature , Drug Liberation , Drug Delivery Systems , Biological Availability , Solubility , Polymers/chemistry , Male , Rheology , Viscosity
13.
Poult Sci ; 103(8): 103945, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38905758

ABSTRACT

The late stage of embryo development is a crucial period of metabolic changes, with rapid organ development requiring a substantial supply of nutrients. During this phase, maternal nutritional levels play a vital role in the growth, development, and metabolism of the offspring. In this study, we added 2 doses of ß-carotene (ßc) (120 mg/kg and 240 mg/kg) to the daily diet of Hailan Brown laying hens to investigate the impact of maternal nutritional enrichment on embryo development. Maternal nutrition supplementation significantly increased the expression of chicken embryo liver index, growth hormone (GH), insulin-like growth factor-1 (IGF-1), and hepatocyte growth factor (HGF) in serum. At the same time, the expression of GH/growth hormone receptor (GHR), IGF-1 mRNA, and Proliferating Cell Nuclear Antigen (PCNA) protein in the liver was upregulated, indicating that maternal nutrition intervention may promote chicken embryo liver development through the GH-IGF-1 axis. Transcriptome sequencing results showed that differential genes in liver after maternal nutritional supplementation with ß-carotene were enriched in pathways related to cell proliferation and metabolism. Consequently, we postulated that maternal ß-carotene supplementation might operate via the GH-IGF-1 axis to regulate the expression of genes involved in growth and development, thereby promoting liver development. These results contribute to formulating more effective poultry feeding strategies to promote offspring growth and development.


Subject(s)
Animal Feed , Animal Nutritional Physiological Phenomena , Chickens , Diet , Dietary Supplements , Embryonic Development , Growth Hormone , Animals , Chickens/growth & development , Dietary Supplements/analysis , Female , Animal Feed/analysis , Diet/veterinary , Growth Hormone/metabolism , Chick Embryo , Embryonic Development/drug effects , Insulin-Like Growth Factor I/metabolism , Insulin-Like Growth Factor I/genetics , beta Carotene/administration & dosage , beta Carotene/pharmacology , Maternal Nutritional Physiological Phenomena , Insulin-Like Peptides
14.
Medicine (Baltimore) ; 103(24): e38426, 2024 Jun 14.
Article in English | MEDLINE | ID: mdl-38875426

ABSTRACT

Previous observational studies revealed controversy about the effect of circulating antioxidants on risk of alopecia. In the present study, we investigated the causal relationships between diet-derived circulating antioxidants and 2 non-scarring alopecia using Mendelian randomization (MR). Instrumental variables for antioxidants (lycopene, retinol, ascorbate, ß-carotene, α-tocopherol, and γ-tocopherol) were selected from published studies. Data for alopecia areata (AA) and androgenetic alopecia (AGA) was obtained from the FinnGen study project (R9 released in 2023), including 195 cases and 201,019 controls for AGA and 682 cases and 361,140 controls for AA. We used the inverse variance weighted method as the primary MR method. Three additional methods were used as sensitivity analysis to validate the robustness of the results. We found a causal relationship between absolute ß-carotene levels and AGA risk (P = .039), but not with AA (P = .283). The results of Wald ratio showed a protective effect of absolute ß-carotene levels against AGA, with per 0.1 ln-transformed ß-carotene being associated with a 76% lower risk of AGA (OR: 0.24, 95% CI: 0.06-0.93). Based on the fixed effects inverse variance weighting results, we found that α-tocopherol was protective against both AGA (P = .026) and AA (P = .018). For each unit increase in α-tocopherol, the effects of change in AGA and AA were 0.02 (95% CI: 0.00-0.61) and 0.10 (95% CI: 0.01-0.67), respectively. The results did not reveal any other causal relationships. Our study identified 3 causal associations of antioxidants with the risk of non-scarring alopecia. These results provide new insights into the prevention of non-scarring alopecia through diet.


Subject(s)
Alopecia , Antioxidants , Diet , Mendelian Randomization Analysis , beta Carotene , Humans , Antioxidants/metabolism , beta Carotene/blood , Alopecia/genetics , Alopecia/blood , alpha-Tocopherol/blood , Female , Male , Alopecia Areata/blood , Alopecia Areata/genetics , Alopecia Areata/epidemiology , Risk Factors
15.
Nutrients ; 16(12)2024 Jun 14.
Article in English | MEDLINE | ID: mdl-38931221

ABSTRACT

Cardiovascular diseases (CVD) are the leading cause of death worldwide, influenced by the interaction of factors, including age, sex, genetic conditions, overweight/obesity, hypertension, an abnormal lipid profile, vitamin deficiencies, diabetes, and psychological factors. This study aimed to assess the relationships between psychosocial and nutritional factors in a group of 61 patients with CVD (i.e., atherosclerosis, hypertension, ischemic heart disease, and myocardial infarction) and their possible impact on the course of the disease. The plasma concentrations of vitamins A, E, D, and ß-carotene were determined using validated HPLC-MS/MS, while the lipid profile was analyzed enzymatically. Psychosocial factors and nutritional behaviors were assessed using author-designed questionnaires. Over 50% of patients had 25-OH-D3 and retinol deficiencies, while >85% of patients exhibited significant deficiencies in α-tocopherol and ß-carotene. The lipid profile showed no specific relationship with any particular CVD. Dietary behavior minimally impacted biochemical parameters except for higher ß-carotene concentrations in the group with higher fruit and vegetable intake. The negative impact of the CVD on selected parameters of quality of life was noticed. To increase the effectiveness of the prevention and treatment of CVD, the need for interdisciplinary cooperation observed between doctors, psychologists, and specialists in human nutrition seems to be justified.


Subject(s)
Cardiovascular Diseases , Vitamins , Humans , Female , Male , Middle Aged , Cardiovascular Diseases/blood , Cardiovascular Diseases/prevention & control , Aged , Vitamins/blood , Nutritional Status , beta Carotene/blood , Quality of Life , Adult , Vitamin A/blood , Feeding Behavior/psychology , Diet , Lipids/blood , Vitamin E/blood
16.
Int J Biol Macromol ; 274(Pt 2): 133431, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38936573

ABSTRACT

High internal phase Pickering emulsions (HIPEs) constitute a significant research domain within colloid interface chemistry, addressing the demand for robust emulsion systems across various applications. An innovative nanoparticle, synthesized from a cyclodextrin metal-organic framework encapsulated with a composite of resveratrol and soy isolate protein (RCS), was employed to fortify a high internal phase emulsion. The emulsion's three-dimensional printing capabilities, alongside the encapsulated delivery efficacy for ß-carotene, were thoroughly examined. Cyclodextrin metal-organic frameworks (CD-MOFs), facilitated by cellulose nanofibrils, were synthesized to yield particles at the nanoscale, maintaining a remarkable 97.67 % cellular viability at an elevated concentration of 1000 µg/ml. The RCS nanoparticles demonstrated thermal stability and antioxidant capacities surpassing those of CD-MOF. The integration of soybean isolate protein augmented both the hydrophobicity (from 21.95 ± 0.64° to 59.15 ± 0.78°) and the interfacial tension (from 14.36 ± 0.46 mN/m to 5.34 ± 0.81 mN/m) of the CD-MOF encapsulated with resveratrol, thereby enhancing the RCS nanoparticles' adsorption at the oil-water interface with greater stability. The durability of the RCS-stabilized high internal phase emulsions was contingent upon the RCS concentration. Emulsions stabilized with 5 wt%-RCS exhibited optimal physical and chemical robustness, demonstrating superior performance in emulsion 3D printing and ß-carotene encapsulation delivery. This investigation furnishes a novel perspective on the amalgamation of food customization and precision nutrition.


Subject(s)
Cyclodextrins , Emulsions , Metal-Organic Frameworks , Resveratrol , Soybean Proteins , beta Carotene , Soybean Proteins/chemistry , Resveratrol/chemistry , Resveratrol/pharmacology , beta Carotene/chemistry , Emulsions/chemistry , Metal-Organic Frameworks/chemistry , Cyclodextrins/chemistry , Humans , Biocompatible Materials/chemistry , Antioxidants/chemistry , Antioxidants/pharmacology , Nanoparticles/chemistry , Drug Carriers/chemistry
17.
Int J Food Sci Nutr ; 75(5): 496-508, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38828549

ABSTRACT

The association between dietary carotenoids and breast cancer (BC) risks were inconsistent. Therefore, this study investigated the association between dietary carotenoid and BC risks among Korean women. We recruited participants from the National Cancer Centre of Korea. Odds ratios and 95% confidence intervals were calculated with a logistic regression model. There was an inverse association between dietary carotenoid subclasses and BC risks; in particular, a higher intake of ß-carotene and lutein/zeaxanthin was associated with reduced BC risks. After subgroup analysis with estrogen receptor (ER)/progesterone receptor (PR) status, there was similar trend among ER-/PR- women. We further investigated which foods contribute to the carotenoid intake. A higher intake of radish leaves, kale, and bracken was associated with lowered BC risks. Accordingly, dietary carotenoid, particularly ß-carotene and lutein/zeaxanthin, appears to be associated with a lower risk of BC among Korean women.


Subject(s)
Breast Neoplasms , Carotenoids , Diet , Humans , Female , Breast Neoplasms/epidemiology , Breast Neoplasms/etiology , Republic of Korea/epidemiology , Carotenoids/administration & dosage , Middle Aged , Case-Control Studies , Adult , Risk Factors , beta Carotene/administration & dosage , Lutein/administration & dosage , Zeaxanthins/administration & dosage , Receptors, Progesterone/metabolism , Receptors, Estrogen/metabolism , Odds Ratio , Aged
18.
Trop Anim Health Prod ; 56(4): 149, 2024 May 01.
Article in English | MEDLINE | ID: mdl-38691179

ABSTRACT

Egg preference as a source of protein also provides beneficial fatty acids, vital for human consumption. However, rich in lipid products are prone to oxidative damage. The study aims to determine the effect of supplementing biogenic selenium (Se) from Stenotrophomonas maltophilia, ADS18 (ADS18) in laying hens' diet on yolk lipid oxidation status (MDA), beta-carotene (ß-carotene) content, cholesterol, fatty acids, Se, and vitamin E (VE) level. A total of one hundred and twenty (120) laying hens of Lohmann Brown strains aged 50 weeks, weighing 1500 to 2000 g were reared individually in A-shape two-tier stainless-steel cages sized 30 cm x 50 cm x 40 cm (width, depth height). The hens were randomly allotted into four treatments with six replications in a complete randomised design for the period of 12 weeks. The basal diet contains 100 mg/kg VE. Treatment diets consist of basal diet as control, SS containing 0.3 mg/kg sodium selenite, Se-yeast containing 0.3 mg/kg selenised yeast, and VADS18 containing 0.3 mg/kg of ADS18. Forty-eight eggs were collected and freeze-dried biweekly for analysis. The results of the present study showed that hens supplemented ADS18 had significantly (P < 0.05) lower MDA and cholesterol levels while their egg yolks had higher levels of Se and mono-unsaturated fatty acids (MUFA). The control group had significantly (P < 0.05) higher saturated fatty acid (SFA) contents than the VE and dietary Se-supplemented groups, while the ADS18 group had the lowest SFA contents. Conversely, in comparison to the inorganic and control groups, the VE content of the egg yolk was significantly (P < 0.05) higher in organic Se-supplemented (Se-yeast and VADS18) groups. Hens with SS supplementation had significantly (P < 0.05) higher egg yolk ß-carotene content. When compared to other treatment groups, the control group had higher (P < 0.05) polyunsaturated fatty acids (PUFA) content. The ADS18 is therefore deemed comparable to other Se sources. To prevent Se toxicity, however, a better understanding of the levels of ADS18 incorporation in poultry diets is required.


Subject(s)
Animal Feed , Chickens , Diet , Dietary Supplements , Egg Yolk , Selenium , Vitamin E , Animals , Female , Dietary Supplements/analysis , Animal Feed/analysis , Selenium/administration & dosage , Selenium/analysis , Egg Yolk/chemistry , Vitamin E/administration & dosage , Vitamin E/analysis , Diet/veterinary , Random Allocation , Fatty Acids/analysis , Fatty Acids/metabolism , Lipids/analysis , beta Carotene/analysis , beta Carotene/administration & dosage , beta Carotene/metabolism
19.
J Food Sci ; 89(6): 3290-3305, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38767864

ABSTRACT

A better understanding of how emulsifier type could differently influence the behavior of nanostructured lipid carriers (NLC) under the gastrointestinal digestion process, as well as at the cellular level, is of utmost importance for the NLC-based formulations' optimization and risk assessment in the food field. In this study, NLC composed by fully hydrogenated soybean and high-oleic sunflower oils were prepared using soy lecithin (NLC Lß) or Tween 80 (NLC Tß) as an emulsifier. ß-Carotene was entrapped within NLC developed as a promising strategy to overcome ß-carotene's low bioavailability and stability. The effect of emulsifier type on the digestibility of ß-carotene-loaded NLC was evaluated using an in vitro dynamic digestion model mimicking peristalsis motion. The influence of ß-carotene-loaded NLC on cell viability was assessed using Caco-2 cells in vitro. NLC Tß remained stable in the gastric compartment, presenting particle size (PS) similar to the initial NLC (PS: 245.68 and 218.18 nm, respectively), while NLC Lß showed lower stability (PS > 1000 nm) in stomach and duodenum phases. NLC Tß also provided high ß-carotene protection and delivery capacity (i.e., ß-carotene bioaccessibility increased 10-fold). Based on the results of digestion studies, NLC Tß has shown better physical stability during the passage through the in vitro dynamic gastrointestinal system than NLC Lß. Moreover, the developed NLC did not compromise cell viability up to 25 µg/mL of ß-carotene. Thus, the NLC developed proved to be a biocompatible structure and able to incorporate and protect ß-carotene for further food applications. PRACTICAL APPLICATION: The findings of this study hold significant implications for industrial applications in terms of developing nanostructured lipid carriers from natural raw materials widely available and used to produce other lipid-based products in the food industry, as an alternative to synthetic ones. In this respect, the ß-carotene-loaded NLC developed in this study would find a great industrial application in the food industry, which is in constant search to develop functional foods capable of increasing the bioavailability of bioactive compounds.


Subject(s)
Digestion , Emulsifying Agents , Nanostructures , beta Carotene , beta Carotene/chemistry , beta Carotene/pharmacokinetics , Caco-2 Cells , Humans , Emulsifying Agents/chemistry , Nanostructures/chemistry , Biological Availability , Drug Carriers/chemistry , Particle Size , Lipids/chemistry , Polysorbates/chemistry , Lecithins/chemistry , Cell Survival/drug effects , Sunflower Oil/chemistry
20.
Arch Microbiol ; 206(6): 245, 2024 May 03.
Article in English | MEDLINE | ID: mdl-38702537

ABSTRACT

Production of carotenoids by yeast fermentation is an advantaged technology due to its easy scaling and safety. Nevertheless, carotenoid production needs an economic culture medium and other efficient yeast stains. The study aims to isolate and identify a yeast strain capable of producing carotenoids using a cost-effective substrate. A new strain was identified as Rhodotorula toruloides L/24-26-1, which can produce carotenoids at different pretreated and unpretreated sugarcane molasses concentrations (40 and 80 g/L). The highest biomass concentration (18.6 ± 0.6 g/L) was reached in the culture using 80 g/L of hydrolyzed molasses. On the other hand, the carotenoid accumulation reached the maximum value using pretreated molasses at 40 g/L (715.4 ± 15.1 µg/g d.w). In this case, the ß-carotene was 1.5 times higher than that on the control medium. The yeast growth in molasses was not correlated with carotenoid production. The most outstanding production of The DPPH, ABTS, and FRAP tests demonstrated the antioxidant activity of the obtained carotenogenic extracts. This research demonstrated the R. toruloides L/24-26-1 strain biotechnological potential for carotenoid compounds. The yeast produces carotenoids with antioxidant activity in an inexpensive medium, such as sulfuric acid pretreated and unpretreated molasses.


Subject(s)
Fermentation , Molasses , Rhodotorula , Saccharum , beta Carotene , Rhodotorula/metabolism , Rhodotorula/genetics , Rhodotorula/growth & development , Rhodotorula/isolation & purification , Rhodotorula/classification , Saccharum/metabolism , beta Carotene/metabolism , beta Carotene/biosynthesis , Carotenoids/metabolism , Antioxidants/metabolism , Biomass , Culture Media/chemistry , Phylogeny
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